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South American Living Metatherians: Physiological Ecology and Constraints

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A Brief History of South American Metatherians

Abstract

South American living metatherians are relatively inconspicuous and comprise ca. 10 % of the region’s mammal species richness. Most of them are small-sized (<150 g), with long tails and grasping hands and feet, and resemble one another in their general appearance. Individuals are solitary, nocturnal or crepuscular, and most of them are arboreal or scansorial. Two orders are exclusive of South America (Microbiotheria and Paucituberculata), while a third (Didelphimorphia) ranges from Patagonia (Argentina) to the border between USA and Canada. The ecology, physiology, and reproductive traits of living South American marsupials have been poorly studied. This chapter describes several aspects of their natural history and how they influence their recent distribution, as they probably did so throughout the Cenozoic. Physiological constraints include variable energetic costs for regulating metabolic processes, due to low rates of metabolism, the possibility to enter torpor/hibernation, and the storage of different types of fat tissues available for those varied processes. Reproduction, which can be characterized by a short gestation period and long, energy-demanding, breeding period, shows specific differences in strategies (e.g., semelparity, partial semelparity, iteroparity) and their main traits (e.g., litters per year and litter size, teat number). South American marsupials make a complete use of the habitat available to them and have a broad, generally opportunistic and omnivorous diet. These adaptations, combined with a general small size, small energy expenditure on foraging and other daily activities, limit their distribution. Despite these constraints, South American marsupials seem to thrive in environments where competition with other animals might be strong (e.g., tropical and subtropical climates), or where a few small mammals can survive (e.g., temperate and temperate-cold climates) due to several environmental limitations.

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References

  • Albuja L, Patterson BD (1996) A new species of northern shrew-opossum (Paucituberculata: Caenolestidae) from the Cordillera del Cóndor, Ecuador. J Mammal 77:41–53

    Article  Google Scholar 

  • Amico G, Aizen MA (2000) Mistletoe seed dispersal by a marsupial. Nature 408:929–930

    Google Scholar 

  • Amico G, Rodríguez-Cabal MA, Aizen MA (2009) The potential key seed-dispersing role of the arboreal marsupial Dromiciops gliroides. Acta Oecol 35:8–13

    Article  Google Scholar 

  • Argot C (2001) Functional-adaptive anatomy of the forelimb in the Didelphidae, and the paleobiology of the Paleocene marsupials Mayulestes ferox and Pucadelphys andinus. J Morphol 247:51–79

    Article  Google Scholar 

  • Argot C (2002) Functional-adaptive analysis of the hindlimb anatomy of extant marsupials, and the paleobiology of the Paleocene marsupials Mayulestes ferox and Pucadelphys andinus. J Morphol 253:76–108

    Article  Google Scholar 

  • Argot C (2003) Functional-adaptive anatomy of the axial skeleton of some extant marsupials and the paleobiology of the Paleocene marsupials Mayulestes ferox and Pucadelphys andinus. J Morphol 255:279–300

    Article  Google Scholar 

  • Astúa de Moraes D (2006) Range extension and first Brazilian record of the rare Hyladelphys kalinowskii (Hershkovitz, 1992) (Didelphimorphia, Didelphidae). Mammalia 70:174–176

    Google Scholar 

  • Astúa de Moraes D, Santori RT, Finotti R, Cerqueira R (2003) Nutritional and fibre contents of laboratory-established diets of neotropical opossums (Didelphidae). In: Jones M, Dickman C, Archer M (eds) Predators with pouches: The Biology of Carnivorous Marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Atramentowicz M (1986) Dynamique de population chez trois marsupiaux didelphidés de Guyane. Biotropica 18:136–149

    Article  Google Scholar 

  • Atramentowicz M (1988) La frugivorie opportuniste de trois marsupiaux didelphidés de Guyane. Rev Ecol (Terre et Vie) 43:47–57

    Google Scholar 

  • Barnes RD, Barthold SW (1969) Reproduction and breeding behavior in an experimental colony of Marmosa mitis Bangs (Didelphidae). J Reprod Fertility 6:477–482

    Google Scholar 

  • Bergallo HG, Cerqueira R (1994) Reproduction and growth of the opossum Monodelphis domestica (Mammalia: Didelphidae) in northeastern Brazil. J Zool 232:551–563

    Article  Google Scholar 

  • Bernarde PS, Machado RA (2008) Mammalia, Didelphimorphia, Didelphidae, Glironia venusta Thomas, 1912: Distribution extension to the state of Acre, Brazil. Checklist 4:151

    Google Scholar 

  • Biggers JD (1967) Notes on reproduction of the woolly opossum (Caluromys derbianus) in Nicaragua. J Mammal 48:678–680

    Article  Google Scholar 

  • Birney EC, Monjeau JA (2003) Latitudinal variation in South American marsupial biology. In: Jones M, Dickman C, Archer M (eds) Predators with pouches: the biology of carnivorous marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Bocchiglieri A, Mendonca AF, Campos JB (2010) Diet composition of Gracilinanus agilis (Didelphimorphia, Didelphidae) in dry woodland areas of Cerrado in central Brazil. Mammalia 74:225–227

    Article  Google Scholar 

  • Bozinovic F, Ruiz G, Rosenmann M (2004) Energetics and torpor of a South American “living fossil”, the microbiotheriid Dromiciops gliroides. J Comp Physiol (B) 174:293–297

    Article  Google Scholar 

  • Bozinovic F, Ruiz G, Cortés A, Rosenmann M (2005) Energetics, thermoregulation and torpor in the Chilean mouse-opossum Thylamys elegans (Didelphidae). Rev Chilena Hist Nat 78:199–206

    Google Scholar 

  • Bradley AJ (2003) Stress, hormones and mortality in small dasyurid marsupials. In: Jones M, Dickman C, Archer M (eds) Predators with pouches: the biology of carnivorous marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Braithwaite RW, Lee AK (1979) A mammalian example of semelparity. Amer Nat 113:151–155

    Article  Google Scholar 

  • Brown B (2004) Atlas of new world marsupials. Fieldiana Zool NS 102:1–308

    Google Scholar 

  • Bruch C (1917) La Comadrejita Marmosa elegans. Rev Jard Zool Buenos Aires 51(52):208–214

    Google Scholar 

  • Busch M, Kravetz FO (1991) Diet composition of Monodelphis dimidiata (Marsupialia, Didelphidae). Mammalia 55:619–621

    Google Scholar 

  • Cáceres NC (2000) Dieta, adaptações morfológicas à alimentação e dispersão de sementes por marsupiais do Sul do Brasil. PhD thesis, Univ Fed Paraná

    Google Scholar 

  • Cáceres NC (2006) O papel de marsupiais na dispersão de sementes. In: Cáceres NC, Monteiro Filho ELA (eds) Os Marsupiais do Brasil: Biologia, Ecologia e Evolução. UFMS Editora, Campo Grande

    Google Scholar 

  • Cáceres NC, Monteiro-Filho ELA (1997) Reproductive biology of the common opossum Didelphis marsupialis (Mammalia: Marsupialia), in southern Brazil. Brenesia 47–48:97–104

    Google Scholar 

  • Cáceres NC, Monteiro-Filho ELA (2000) The common opossum, Didelphis aurita, as a seed disperser of several plants in south Brazil. Ciência e Cultura 52:41–44

    Google Scholar 

  • Cáceres NC, Ghizoni-Jr IR, Graipel ME (2002) Diet of two marsupials, Lutreolina crassicaudata and Micoureus demerarae, in a coastal Atlantic Forest island of Brazil. Mammalia 66:331–340

    Article  Google Scholar 

  • Cantor M, Ferreira LA, Silva WR, Setzl EZF (2010) Potential seed dispersal by Didelphis albiventris (Marsupialia, Didelphidae) in highly disturbed environment. Biota Neotropical 10:45–51

    Article  Google Scholar 

  • Carlsson A (1903) Beitrage zur Anatomic der Marsupial Region bei den Beuteltherien. Zoologische Jahrbiicher, Abteilung Anatomic und Ontogenie der Thiere 80:489–505

    Google Scholar 

  • Carmignotto AP, Monfort T (2006) Taxonomy and distribution of the Brazilian species of Thylamys (Didelphimorphia, Didelphidae). Mammalia 70:126–144

    Article  Google Scholar 

  • Carvalho FMV, Fernandez FAS, Nessimian JL (1999) Diet of small mammals in Atlantic forest fragments in southeastern Brazil. Rev Brasilera Zoociências 1:91–101

    Google Scholar 

  • Carvalho RVC, Delciellos AC, Vieira MV (2000) Medidas externas dos membros de marsupiais didelfídeos: una comparção com medidas do esqueleto pós-craniano. Bol Mus Nac NS Zool 438:1–8

    Google Scholar 

  • Catzeflis F, Richard-Hansen C, Fournier-Chambrillon C, Lavergne A, Vié JC (1997) Biométrie, reproduction, et sympatrie chez Didelphis marsupialis et D. albiventris en Guyane française (Didelphidae: Marsupialia). Mammalia 61:231–243

    Article  Google Scholar 

  • Ceotto P, Finotti R, Santori R, Cerqueira R (2009) Diet variation of the marsupials Didelphis aurita and Philander frenatus (Didelphimorphia, Didelphidae) in a rural area of Rio de Janeiro State, Brazil. Mastozool Neotropical 16:49–58

    Google Scholar 

  • Cerqueira R (2004) Fatores ambientais e a reprodução de marsupiais e roedores no leste do Brasil1. Arqu Mus Nac 63:29–39

    Google Scholar 

  • Cerqueira R, Gentile R, Fernandez FAS, D’Andrea PS (1993) A five year study of an assemblage of small mammals in southeastern Brazil. Mammalia 57:507–517

    Article  Google Scholar 

  • Charles-Dominique P (1983) Ecology and social adaptations in didelphid marsupials: comparison with eutherians of similar ecology. Amer Soc Mammal Sp Publ 7:395–422

    Google Scholar 

  • Charles-Dominique P, Atramentowicz M, Charles-Dominique M, Gérard H, Hladik A, Hladir CM, Prévost MF (1981) Les memifères frugivores arboricols nocturnes d‘une forêt guyanaise: interrelations plantes-animaux. Rev Ecol (Terre et Vie) 35:341–435

    Google Scholar 

  • Cherem JJ, Graipel ME, Menezes ME, Soldateli M (1996) Observações sobre a biologia do gambá (Didelphis marsupialis) na Ilha de Ratones Grande, Estado de Santa Catarina, Brasil. Biotemas 9:47–56

    Google Scholar 

  • Clark CT, Smith KK (1993) Cranial Osteogenesis in Monodelphis domestica (Didelphidae) and Macropus eugenii (Macropodidae). J Morpholgy 215:119–149

    Article  Google Scholar 

  • Cockburn A (1997) Living slow and dying young: senescence in marsupials. In: Saunders NR, Hinds LA (eds) Marsupial biology: recent research, New perspectives. Univ New South Wales Ltd, Sydney

    Google Scholar 

  • Cockburn CN, Johnson A (1988) Patterns of Growth. In: Janssens PA (ed) Tyndale-Biscoe CH. The developing marsupial. Models for biomedical research. Springer, Berlin

    Google Scholar 

  • Cole LC (1954) The population consequences of life history phenomena. Quart Rev Biol 29:103–137

    Article  Google Scholar 

  • Cordero AG, Nicolas RA (1987) Feeding habits of the opossum (Didelphis marsupialis) in northern Venezuela. In: Patterson BD, Timm RM (eds) Studies in neotropical mammalogy, essays in honor of Philip Hershkovitz. Fieldiana Zool NS 39:125–131

    Google Scholar 

  • Corvalán VE (2004) Uso del hábitat y ecología poblacional de pequeños mamíferos del desierto del monte central, Mendoza, Argentina. PhD thesis, Univ Nacional de La Plata

    Google Scholar 

  • Crespo JA (1982) Ecología de la comunidad de mamíferos del parque Nacional Iguazú, Misiones. Rev Mus Arg Cs Nat “B. Rivadavia” Ecol 3:45–162

    Google Scholar 

  • D’Andrea PS, Gentile R, Cerqueira R, Grelle CEV, Horta C, Rey L (1999) Ecology of small mammals in a Brazilian rural area. Rev Bras Zool 16:611–620

    Article  Google Scholar 

  • Davis DE (1947) Notes on the life histories of some Brazilian mammals. Bol Mus Nac 76:1–8

    Google Scholar 

  • Dawson TJ, Dawson WR (1982) Metabolic scope and conductance in response to cold of some dasyurid marsupials and Australian rodents. Comp Biochem Physiol 71:59–64

    Article  Google Scholar 

  • Dawson TJ, Hulbert AJ (1970) Standard metabolism, body temperature, and surface areas of Australian marsupials. Am J Phys 218:1233–1238

    Google Scholar 

  • Dawson TJ, Olson JM (1987) Thermogenic capacities of the opossum Monodelphis domestica when warm and cold acclimated: similarities between American and Australian marsupials. Comp Biochem Physiol 89:85–91

    Article  Google Scholar 

  • Dawson TJ, Wolfers JM (1978) Metabolism, thermoregulation and torpor in shrew sized marsupials of the genus Planigale. Comp Biochem Phy A 59:305–309

    Google Scholar 

  • Delciellos AC, Vieira MV (2006) Arboreal walking performance in seven didelphid marsupials as an aspect of their fundamental niche. Austral Ecol 31:449–457

    Article  Google Scholar 

  • Díaz GB, Cortés A (2003) Pequeños mamíferos en ambientes desérticos: los problemas de conservación de agua. In: Bozinovic F (ed) Fisiología Ecológica y Evolutiva, Teoría y casos de estudio en animales. Univ Católica de Chile, Santiago

    Google Scholar 

  • Eisenberg JF (1980) The density and biomass of tropical mammals. In: Soulé ME, Wilcox BA (eds) Conservation biology. Sinauer Associates, Sunderland

    Google Scholar 

  • Eisenberg JF (1981) The mammalian radiations: an analysis of trends in evolution, adaptation and behavior. Univ Chicago Press, Chicago

    Google Scholar 

  • Eisenberg JF, Wilson D (1981) Relative brain size and demographic strategies in didelphid marsupials. Amer Nat 118:1–15

    Article  Google Scholar 

  • Emmons LH, Feer F (1997) Neotropical rainforest mammals: a field guide, 2nd edn. Univ Chicago Press, Chicago

    Google Scholar 

  • Enders AC (1966) Attachment, nursing, and survival of young in some Didelphids. In: Rowlands JW (ed) Comparative biology of reproduction in mammals. Academic Press, New York

    Google Scholar 

  • Enders RK (1935) Mammalian life-histories from Barro Colorado Island, Panama. Bull Mus Comp Zool 78:385–497

    Google Scholar 

  • Fernandes MEB, Andrade FAG, Silva Júnior JS (2006) Dieta de Micoureus demerarae (Thomas) (Mammalia, Didelphidae) associada às florestas contíguas de mangue e terra firme em Bragança, Pará, Brasil. Rev Bras Zool 23:1087–1092

    Article  Google Scholar 

  • Fish FE (1993) Comparison of swimming kinematics between terrestrial and semiaquatic opossums. J Mammal 74:275–284

    Article  Google Scholar 

  • Fleming TH (1973) The reproductive cycles of three species of opossum and other mammals in the Panamá Canal Zone. J Mammal 54:439–455

    Article  Google Scholar 

  • Fonseca GAB, Kierulff MCM (1989) Biology and natural history of Brazilian Atlantic forests of different sizes. Bull Florida Mus Nat Hist Biol Sci 34:99–152

    Google Scholar 

  • Freitas SR, Astúa de Moraes D, Santori RT, Cerqueira R (1997) Habitat preference and food use by Metachirus nudicaudatus and Didelphis aurita (Didelphimorphia, Didelphidae) in a restinga forest at Rio de Janeiro. Rev Bras Biol 57:93–98

    Google Scholar 

  • García D, Rodríguez-Cabal MA, Amico GC (2009) Seed dispersal by a frugivorous marsupial shapes the spatial scale of a mistletoe population. J Ecol 97:217–229

    Article  Google Scholar 

  • Gardner AL (1973) The systematics of the genus Didelphis (Marsupialia: Didelphidae) in North and Middle America. Spec Publ Mus Texas Tech Univ 4:1–81

    Google Scholar 

  • Gardner AL (2008) Mammals of South America, Volume 1: marsupials, xenarthrans, shrews, and bats. Univ Chicago Press, Chicago

    Google Scholar 

  • Gardner AL, Dagosto M (2008) Tribe Metachirini. In: Gardner AL (ed) Mammals of South America, Vol 1: marsupials, xenarthrans, shrews, and bats. Univ Chicago Press, Chicago

    Chapter  Google Scholar 

  • Geiser F (1994) Hibernation and daily torpor in marsupials: a review. Aus J Zool 42:1–16

    Article  Google Scholar 

  • Geiser F (2003) Thermal biology and energetics in carnivorous marsupials. In: Jones M, Dickman C, Archer M (eds), Predators with pouches: the biology of carnivorous marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Geiser F, Martin GM (2013) Torpor in the Patagonian opossum (Lestodelphys halli): implications for the evolution of daily torpor and hibernation

    Google Scholar 

  • Geiser F, Drury RL, McAllan BM, Wang DH (2003) Effects of temperature acclimation on maximum heat production, thermal tolerance, and torpor in a marsupial. J Comp Phyisiol 173:437–442

    Article  Google Scholar 

  • Geiser F, Christian N, Cooper CE, Körtner G, McAllan BM, Pavey CR, Turner JM, Warnecke L, Willis CKR, Brigham M (2008) Torpor in marsupials: recent advances. In: Lovegrove BG, McKechnie AE (eds) Hypometabolism in animals: hibernation, torpor and cryobiology. Univ KwaZulu-Natal, Pietermaritzburg

    Google Scholar 

  • Godfrey GK (1975) A study of oestrus and fecundity in a laboratory colony of mouse opossums (Marmosa robinsoni). J Zool 175:541–555

    Article  Google Scholar 

  • González EM, Claramunt S (2000) Behavior of captive short-tailed opossums, Monodelphis dimidiata (Wagner, 1847) (Didelphimorphia, Didelphidae). Mammalia 64:271–285

    Article  Google Scholar 

  • Gordon CL (2003) A first look at estimating body size in dentally conservative marsupials. J Mammal Evol 10(1–2):1–21

    Article  Google Scholar 

  • Grand TI (1983) Body weight: relationships to tissue composition, segmental distribution of mass, and motor function. III. The Didelphidae of French Guyana. Aust J Zool 31:299–312

    Article  Google Scholar 

  • Green B (1997) Field energetics and water fluxes in marsupials. In: Saunders NR, Hinds LA (eds) Marsupial biology: recent research, new perspectives. Univ New South Wales Ltd, Sydney

    Google Scholar 

  • Greer JK (1965) Mammals of Malleco Province, Chile. Publ Mus Mich State Univ Biol Ser 3:81–149

    Google Scholar 

  • Hamrick MW (2001) Morphological diversity in digital skin microstructure of didelphid marsupials. J Anatomy 198:683–688

    Article  Google Scholar 

  • Harder JD, Fleck DW (1997) Reproductive ecology of New World marsupials. In: Saunders NR, Hinds LA (eds) Marsupial biology: recent research, new perspectives. Univ New South Wales Ltd, Sydney

    Google Scholar 

  • Hayssen V, Lacy RC (1985) Basal metabolic rates in mammals: taxonomic differences in the allometry of and body mass. Comp Biochem Physiol 81:741–754

    Article  Google Scholar 

  • Hershkovitz P (1987) A history of the recent mammalogy of the Neotropical region from 1492 to 1850. In: Patterson BD, Timm RM (eds) Studies in neotropical mammalogy essays in honor of Philip Hershkovitz. Fieldiana Zool NS 39:11–98

    Google Scholar 

  • Hershkovitz P (1992a) The South American gracile mouse opossums, genus Gracilinanus Gardner and Creighton, 1989 (Marmosidae, Marsupialia): a taxonomic review with notes on general morphology and relationships. Fieldiana Zool NS 70:1–56

    Google Scholar 

  • Hershkovitz P (1992b) Ankle bones: the Chilean opossum Dromiciops gliroides Thomas, and marsupial phylogeny. Bonner Zool Beitr 43:181–213

    Google Scholar 

  • Hershkovizt P (1997) Composition of the family Didelphidae Gray, 1821 (Didelphoidea: Marsupialia), with a review of the morphology and behavior of the included four-eyed opossums of the genus Philander Tiedemann, 1808. Fieldiana Zool NS 86:1–103

    Google Scholar 

  • Hershkovitz P (1999) Dromiciops gliroidesThomas, 1894, last of the Microbiotheria (Marsupialia), with a Review of the family Microbiotheriidae. Fieldiana ZoolNS 93:1–60

    Google Scholar 

  • Hildebrand M (1995) Analysis of vertebrate structure. Wiley, New York

    Google Scholar 

  • Hill JP (1918) Some observations on the early development of Didelphis aurita (contributions to the embryology of the marsupialia V). Quart J Microsc Sci 63:93–139

    Google Scholar 

  • Hingst E, D’Andrea PS, Santori R, Cerqueira R (1998) Breeding of Philander frenata (Didelphimorphia, Didelphidae) in captivity. Lab Anim 32:434–438

    Article  Google Scholar 

  • Hope PJ, Pyle D, Daniels CB, Chapman I, Horowitz M, Morley JE, Trayhurn P, Kumaratilake J, Wittert G (1997) Identification of brown fat and mechanisms for energy balance in the marsupial, Sminthopsis crassicaudata. Am J Physiol 273:161–167

    Google Scholar 

  • Hulbert AJ, Dawson TJ (1974) Standard metabolism and body temperature of perameloid marsupials from different environments. Comp Biochem Phys A 47:583–590

    Google Scholar 

  • Hume ID (1999) Marsupial nutrition. Cambridge University Press, Cambridge

    Google Scholar 

  • Hume ID (2003) Nutrition of carnivorous marsupials. In: Jones M, Dickman C, Archer M (eds) Predators with pouches: the biology of carnivorous marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Hunsaker D (1977) Ecology of New World marsupials. In: Hunsaker D (ed) The biology of marsupials. Academic Press, New York

    Google Scholar 

  • Iodice OH, Cervino CO, Affanni JM (2010) Manejo y reproducción de Lutreolina crassicaudata (Marsupialia, didelphidae) en condiciones de bioterio. Rev Electrón Vet 11:1695–7504

    Google Scholar 

  • Jastroch M, Withers KW, Taudien S, Frappell PB, Helwig M, Fromme T, Hirschberg V, Heldmaier G, McAllan BM, Firth BT, Burmester T, Platzer M, Klingenspor M (2008) Marsupial uncoupling protein 1 sheds light on the evolution of mammalian nonshivering thermogenesis. Physiol Genomics 32:161–169

    Article  Google Scholar 

  • Julien-Laferrière D, Atramentowicz M (1990) Feeding and reproduction of three didelphid marsupials in two neotropical forests (French Guiana). Biotropica 22:404–415

    Article  Google Scholar 

  • Kirsch JAW, Waller PF (1979) Notes on the trapping and behavior of the Caenolestidae (Marsupialia). J Mammal 60:390–395

    Article  Google Scholar 

  • Kraus DB, Fadem BH (1987) Reproduction, development, and physiology of the gray short-tailed opossum (Monodelphis domestica). Lab Animal Sci 37:478–482

    Google Scholar 

  • Krause WJ, Krause WA (2006) The opossum: its amazing story. Department of Pathology and Anatomical Sciences, School of Medicine, University of Missouri

    Google Scholar 

  • Krieg H (1924) Biologische Reisestudien in Südamerika. III. Chilenische Beutelratten. Z Morphol Okol Tiere 3:169–176

    Article  Google Scholar 

  • Lee AK, Cockburn A (1987) Evolutionary ecology of marsupials. Monographs on marsupial biology. Cambridge University Press, Cambridge

    Google Scholar 

  • Lee AK, Wooley P, Braithwaite RW (1982) Life history strategies of dasyurid marsupials. In: Archer M (ed) Carnivorous Marsupials. Royal Zoological Society of New South Wales, Sydney

    Google Scholar 

  • Leiner NO, Silva WR (2007) Seasonal variation in the diet of the Brazilian slender opossum (Marmosops paulensis) in a montane Atlantic forest area, southeastern Brazil. J Mammal 88:158–164

    Article  Google Scholar 

  • Leiner NO, Setz EZF, Silva WR (2008) Semelparity and factors affecting the reproductive activity of the Brazilian slender-opossum (Marmosops paulensis) in southeastern Brazil. J Mammal 89:153–158

    Article  Google Scholar 

  • Lemelin P, Schmitt D, Cartmill M (2003) Footfall patterns and interlimb co-ordination in opossums (Family Didelphidae): evidence for the evolution of diagonal-sequence walking gaits in primates. J Zool 260:423–429

    Article  Google Scholar 

  • Loretto D, Vieira MV (2008) Use of space by the marsupial Marmosops incanus (Didelphimorphia, Didelphidae) in the Atlantic Forest, Brazil. Mamm Biol 73:255–261

    Article  Google Scholar 

  • Loretto D, Ramalho E, Vieira MV (2005) Defense behavior and nest architecture of Metachirus nudicaudatus Desmarest, 1817 (Marsupialia, Didelphidae). Mamm 69(3–4):417–419

    Google Scholar 

  • Lorini ML, Oliveira JA, Persson VG (1994) Annual age structure and reproductive patterns in Marmosa incana (Lund, 1841) (Didelphidae, Marsupialia). Z Sauegetierkunde 59:65–73

    Google Scholar 

  • Lovegrove BG (2000) The zoogeography of mammalian basal metabolic rate. Am Nat 156:201–219

    Google Scholar 

  • Macedo L, Fernandez FAS, Nessimian JL (2010) Feeding ecology of the marsupial Philander frenatus in a fragmented landscape in Southeastern Brazil. Mamm Biol 75:363–369

    Article  Google Scholar 

  • Mann G (1955) Monito del Monte. Dromiciops australis Philippi. Invest Zool Chilenas 2:159–166

    Google Scholar 

  • Mann G (1958) Reproducción de Dromiciops australis (Marsupialia, Didelphydae). Invest Zool Chilenas 4:209–213

    Google Scholar 

  • Marshall LG (1978a) Lutreolina crassicaudata. Mamm Sp 91:1–4

    Google Scholar 

  • Marshall LG (1978b) Chironectes minimus. Mamm Sp 109:1–6

    Google Scholar 

  • Martin GM (2008) Sistemática, Distribución y Adaptaciones de los Marsupiales Patagónicos. PhD thesis, Univ Nacional de La Plata

    Google Scholar 

  • Martin GM (2010) Geographic distribution and historical occurrence of Dromiciops gliroides Thomas (Marsupialia, Microbiotheria). J Mammal 91:1025–1035

    Article  Google Scholar 

  • Martin GM (2011) Geographic distribution of Rhyncholestes raphanurus Osgood, 1924 (Paucituberculata: Caenolestidae), an endemic marsupial of the Valdivian Temperate Rainforest. Aust J Zool 59:118–126

    Article  Google Scholar 

  • Martin GM (2012) Distribución geográfica de marsupiales americanos. II Congreso Latinoamericano de Mastozoología y XXV Jornadas Argentinas de Mastozoología, Buenos Aires

    Google Scholar 

  • Martin GM (in preparation) Living New World marsupials. What do we know? In: Goin FJ, Forasiepi A (eds) New World Marsupials and their Extinct Relatives: One Hundred Million Years of Metatherian Evolution. Springer, Berlin

    Google Scholar 

  • Martin GM, Udrizar Sauthier DE (2011) Observations on the captive behavior of the rare Patagonian opossum Lestodelphys halli (Thomas, 1921) (Marsupialia, Didelphimorphia, Didelphidae). Mammalia 75281–286

    Google Scholar 

  • Martins EG, Bonato V, da-Silva CQ, Reis SF (2006) Partial semelparity in the Neotropical didelphid marsupial Gracilinanus microtarsus. J Mammal 87:915–920

    Article  Google Scholar 

  • Massoia E, Fornes A (1972) Presencia y rasgos etoecológicos de Marmosa agilis chacoensis Tate en las provincias de Buenos Aires, Entre Ríos, y Misiones (Mammalia-Marsupialia-Didelphidae). Rev Invest Agropec, Ser 1. Biol Prod Animal 9:71–82

    Google Scholar 

  • McManus JJ (1970) Behavior of captive opposums, Didelphis marsupialis virginiana. Amer Midland Nat 84:144–169

    Article  Google Scholar 

  • McNab BK (1978) The comparative energetics of neotropical marsupials. J Comp Physiol 125:115–128

    Article  Google Scholar 

  • McNab BK (1982) The physiological ecology of South American mammals. In: Mares MA, Genoways HH (eds) Mammalian biology in South America. Pymatuning Lab of Ecol, Spec Publ Ser 6. Univ Pittsburgh

    Google Scholar 

  • McNab BK (1986) Food habits, energetics, and the reproduction of marsupials. J Zool 208:595–614

    Article  Google Scholar 

  • McNab BK (2005) Uniformity in the basal metabolic rate of marsupials: its causes and consequences. Rev Chilena Hist Nat 78:183–198

    Google Scholar 

  • Merritt JF (2010) The biology of small mammals. Johns Hopkins Press, Baltimore

    Google Scholar 

  • Monteiro-Filho ELA (1987) Biologia reprodutiva e espaço domiciliar de Didelphis albiventris em uma área perturbada na região de Campinas, Estado de São Paulo. Master thesis, Universidade Estadual de Campinas

    Google Scholar 

  • Monteiro-Filho ELA, Cáceres NC (2006) Biología Reproductiva de Fêmeas de Marsupiais Didelfídeos. In: Caceres NC, Monteiro-Filho ELA (eds) Os Marsupiais do Brasil: Biologia, Ecologia e Evolução. Ed Univ Federal do Paraná, Curitiba

    Google Scholar 

  • Monteiro-Filho ELA, Dias VS (1990) Observações sobre a biologia de Lutreolina crassicaudata (Mammalia: Marsupialia). Rev Bras Biol 50:393–399

    Google Scholar 

  • Morrison PR, McNab BK (1962) Daily torpor in a Brazilian murine opossum (Marmosa). Comp Physiol Biochem 6:57–68

    Article  Google Scholar 

  • Morrone JJ (2004) Panbiogeografía, componentes bióticos y zonas de transición. Rev Bras Entomol 48:149–162

    Article  Google Scholar 

  • Morrone JJ (2006) Biogeographic areas and transition zones of Latin America and the Caribbean Islands based on panbiogeographic and cladistic analyses of the entomofauna. Ann Rev Entomol 51:467–494

    Article  Google Scholar 

  • Morton SR (1980) Ecological correlates of caudal fat storage in small mammals. Aust Mammal 3:81–86

    Google Scholar 

  • Muizon C, Argot C (2003) Comparative anatomy of the didelphimorphs marsupials from the early Palaeocene of Bolivia (Pucadelphys, Andinodelphys, and Mayulestes). Palaeobiologic implications. In: Jones M, Dickman C, Archer M (eds) Predators with pouches: the biology of carnivorous marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Muñoz Pedreros A, Lang BK, Bretos M, Meserve PL (2005) Reproduction and development of Dromiciops gliroides (Marsupialia: Microbiotheria) in the temperate rainforests of Southern Chile. Gayana 69:225–233

    Google Scholar 

  • Myers P, Patton JL (2008) Genus Lestoros Oehser, 1934. In: Gardner A (ed) Mammals of South America, vol 1. Marsupials, Xenarthrans, Shrews, and Bats. Univ Chicago Press, Chicago

    Google Scholar 

  • Nickrent DL, Musselman LJ (2004) Introduction to parasitic flowering plants. The Plant Health Instruct. doi:10.1094/PHI-I-2004-0330-01

    Google Scholar 

  • Nowak RM (1999) Walker’s mammals of the World, 6 edn, 2 vols. The Johns Hopkins Univ Press, Baltimore

    Google Scholar 

  • O’Connel MA (1979) The ecology of didelphid marsupials from northern Venezuela. In: Eisenberg JF (ed) Vertebrate ecology in the northern neotropics. Smithsonian Inst Press, Washington

    Google Scholar 

  • Oakwood M, Bradley AJ, Cockburn A (2001) Semelparity in a large marsupial. Proc R Soc London 268:407–411

    Article  Google Scholar 

  • Olson DM, Dinerstein E, Wikramanayake ED, Burgess ND, Powell GVN, Underwood EC, D’Amico JA, Itoua I, Strand HE, Morrison JC, Loucks CJ, Allnutt TF, Ricketts TH, Kura Y, Lamoreux JF, Wettengel WW, Hedao P, Kassem KR (2001) Terrestrial ecoregions of the world: a new map of life on earth. Bioscience 51:933–938

    Article  Google Scholar 

  • Osgood WH (1921) A monographic study of the American marsupial Caenolestes. Field Mus Nat Hist Zool Ser 16:1–162

    Google Scholar 

  • Osgood WH (1924) Review of living caenolestids with description of a new genus from Chile. Field Mus Nat Hist Zool Ser 14:165–173

    Google Scholar 

  • Osgood WH (1943) The mammals of Chile. Field Mus Nat Hist Zool Ser 30:1–268

    Google Scholar 

  • Palma RE (1997) Thylamys elegans. Mammal Sp 572:1–4

    Article  Google Scholar 

  • Palma RE (2003) Evolution of American marsupials and their phylogenetic relationships with Australian metatherians. In: Jones M, Dickman C, Archer M (eds) Predators with pouches: the biology of carnivorous marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Patterson BD (2008) Genus Rhyncholestes Osgood, 1924. In: Gardner A (ed) Mammals of South America, Vol. 1: Marsupials, Xenarthrans, Shrews, and Bats. Univ Chicago Press, Chicago

    Google Scholar 

  • Patterson BD, Gallardo MH (1987) Rhyncholestes raphanurus. Mammal Sp 286:1–5

    Article  Google Scholar 

  • Patterson BD, Meserve PL, Lang BK (1990) Quantitative habitat associations of small mammals along an elevational transect in temperate rain-forests of Chile. J Mammal 71:620–633

    Article  Google Scholar 

  • Perret M, Atramentowicz M (1989) Plasma concentrations of progesterone and testosterone in captive woolly opossums (Caluromys philander). J Reprod Fert 85:31–41

    Article  Google Scholar 

  • Pfiegler JF, Cabana T (1996) The vestibular primary afferents and teh vestibulospinal projections in the developing and adult opossum, Monodelphis domestica. Anat Embryol 194:75–88

    Google Scholar 

  • Philippi F (1893) Un nuevo marsupial chileno. Anales de la Universidad de Chile 85:31–34

    Google Scholar 

  • Phillips CJ, Knox Jones J (1968) Additional comments on reproduction in the woolly opossum (Caluromys derbianus) in Nicaragua. J Mammal 49:320–321

    Article  Google Scholar 

  • Pine RH (1981) Reviews of the mouse opossums Marmosa parvidens Tate and Marmosa invicta Goldman (Mammalia: Marsupialia: Didelphidae) with description of a new species. Mammalia 45:55–70

    Article  Google Scholar 

  • Pine RH, Dalby PL, Matson JO (1985) Ecology, postnatal development, morphometrics, and taxonomic status of the short-tailed opossum, Monodelphis dimidiata, an apparently semelparous annual marsupial. Ann Carnegie Mus 54:195–231

    Google Scholar 

  • Pires AS, Fernandez FAS (1999) Use of space by the marsupial Micoureus demerarae in small Atlantic forest fragments in southeastern Brazilian. J Tropical Ecol 15:279–290

    Article  Google Scholar 

  • Pires MM, Cruz LD, Fernandes FR, Martins EG, dos Reis S (2009) Omnivory by Micoureus paraguayanus (Didelphimorphia: Didelphidae) in a Brazilian Cerrado remnant: diet composition and dietary seasonality. Ann, 3 Congr Latino Americano de Ecol, Sāo Lourenço, Minas Gerais

    Google Scholar 

  • Prevedello JA, Rodrigues RG, Monteiro-Filho ELA (2009) Vertical use of space by the marsupial Micoureus paraguayanus (Didelphimorphia, Didelphidae) in the Atlantic forest of Brazil. Acta Theriol 54:259–266

    Article  Google Scholar 

  • Pridmore PA (1992) Trunk movements during locomotion in the marsupial Monodelphis domestica (Didelphidae). J Morphol 211:137–146

    Article  Google Scholar 

  • Pridmore PA (1994) Locomotion in Dromiciops australis (Marsupialia: Microbiotheriidae). Aust J Zool 42:679–699

    Article  Google Scholar 

  • Rademaker V, Cerqueira R (2006) Variation in the latitudinal reproductive patterns of the genus Didelphis (Didelphimorphia: Didelphidae). Austral Ecol 31:337–342

    Article  Google Scholar 

  • Regidor HA, Gorostiague M (1996) Reproduction in the white-eared opossum (Didelphis albiventris) under temperate conditions in Argentina. Stud Neotropical Fauna Environ 31:133–136

    Google Scholar 

  • Regidor HA, Gorostiague M, Sühring S (1999) Reproduction and dental age classes of the little water opossum (Lutreolina crassicaudata) in Buenos Aires, Argentina. Rev Biol Tropical 47(1–2):271–272

    Google Scholar 

  • Ribeiro P, Bicudo EPW (2007) Oxygen consumption and thermoregulatory responses in three species of South American marsupials. Comp Biochem Physiol A 174:658–664

    Article  Google Scholar 

  • Riek A, Geiser F (2014) Allometry of thermal variables in mammals: consequences of body size and phylogeny. J Zool 292:74–85

    Google Scholar 

  • Rigueira SE, Valle CMC, Varejão JBN, Albuquerque PV, Nogueira JC (1987) Algumas observações sobre o ciclo reproductivo anual de fêmeas do gambá Didelphis albiventris (Lund, 1841) (Marsupialia, Didelphidae) em populações naturais no Estado de Minas Gerais, Brasil. Rev Bras Zool 4:129–137

    Article  Google Scholar 

  • Rodríguez-Cabal MA, Aizen MA, Novaro A (2007) Habitat fragmentation disrupts a plant–disperser mutualism in the temperate forest of South America. Biol Conservation 139:195–202

    Article  Google Scholar 

  • Rose RW, West AK, Ye JM, McCormack GH, Colquhoun EQ (1999) Nonshivering thermogenesis in a marsupial, the Tasmanian bettong (Bettongia gaimardi) is not attributable to brown adipose tissue. Physiol Biochem Zool 72:699–704

    Google Scholar 

  • Santori RT, Astúa de Moraes D (2006) Alimentação, nutrição e adaptações alimentares de marsupiais brasileiros. In: Caceres NC, Monteiro-Filho ELA (eds) Os Marsupiais do Brasil: Biologia, Ecologia e Evolução. Ed Univ Federal do Paraná, Curitiba

    Google Scholar 

  • Santori RT, Rocha-Barbosa O, Vieira MV, Magnan-Neto JA, Loguercio MFC (2005) Locomotion in aquatic, terrestrial, and arboreal habitat of the thick-tailed opossum, Lutreolina crassicaudata (Desmarest 1804). J Mammal 86:902–908

    Article  Google Scholar 

  • Schmidt-Nielsen K (1964) Animal physiology, 2nd edn. Prentice Hall Inc, London

    Google Scholar 

  • Solari SA (2003) Diversity and distribution of Thylamys (Didelphidae) in South America, with emphasis on species from the western side of the Andes. In: Jones M, Dickman C, Archer M (eds) Predators with pouches: the biology of carnivorous marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Strahan R (1991) Complete book of Australian mammals. Cornstalk Publishing, New South Wales

    Google Scholar 

  • Streilein KE (1982) Behavior, ecology, and distribution of South American marsupials. In: Mares MA, Genoways HH (eds) Mammalian biology in South America. Special Publications Series, Vol. 6. Pymatuning Laboratory of Ecology, Univ Pittsburgh

    Google Scholar 

  • Szalay FS (1982a) Phylogenetic relationships of the marsupials. In: Buffetant E, Janvier P, Rage JC, Tassy P (eds) Philogenie et palengeographie: livre jubilaire de Robert Hoffstetter. Géobios Mém Spéc 6:177–190

    Google Scholar 

  • Szalay FS (1982b) A new appraisal of marsupial phylogeny and clasification. In: Archer M (ed) Carnivorous marsupials. R Zool Soc of New South Wales, Sydney

    Google Scholar 

  • Szalay FS (1994) Evolutionary history of the marsupials and an analysis of osteological characters. Cambridge Univ Press, New York

    Google Scholar 

  • Szalay FS, Sargis EJ (2001) Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaborai (Brazil) and the phylogenetics and biogeography of Metatheria. Geodiversitas 23:139–302

    Google Scholar 

  • Tate GHH (1933) A systematic revision of the marsupial genus Marmosa, with a discussion of the adaptive radiation of the murine opossums (Marmosa). Bull Amer Mus Nat Hist 66:1–250

    Google Scholar 

  • Thielen DR, Arends A, Segnini S, Fariñas M (1997) Food availability and population dynamics of Marmosa xerophila Handley and Gordon 1979 (Marsupialia: Didelphidae). Zoocriaderos 2:1–15

    Google Scholar 

  • Thomas O (1888) Catalogue of the Marsupialia and Monotremata in the collection of the British Museum of Natural, History edn. Trustees of the British Museum, London

    Google Scholar 

  • Thompson SD (1988) Thermoregulation in the water opossum (Chironectes minimus): an exception that “proves” a rule. Physiol Zool 61:450–460

    Article  Google Scholar 

  • Timm RM, Patterson BD (2008) Genus Caenolestes O. Thomas, 1895. In: Gardner A (Ed), Mammals of South America, vol. 1. Marsupials, Xenarthrans, Shrews, and Bats. Univ Chicago Press, Chicago

    Google Scholar 

  • Townsend, CR, Hughes RN (1981) Maximizing net energy returns from foraging. In: Townsend CR, Calow P (eds) Physiological ecology: an evolutionary approach to resource use. Sinauer Associates, Sunderland Massachusetts

    Google Scholar 

  • Tyndale-Biscoe CH (1980) Observations on the biology of marsupials in Colombia and Venezuela. Nat Geogr Soc Res Report 12:711–720

    Google Scholar 

  • Tyndale-Biscoe CH (2005) Life of marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Tyndale-Biscoe CH, Janssens PA (1988) The developing marsupial. Models for biomedical research. Springer, Berlin

    Google Scholar 

  • Tyndale-Biscoe CH, MacKenzie RB (1976) Reproduction in Didelphis marsupialis and Didelphis albiventris in Colombia. J Mammal 57:249–265

    Article  Google Scholar 

  • Tyndale-Biscoe CH, Renfree MB (1987) Reproductive physiology of marsupials. Cambridge Univ Press, Cambridge

    Book  Google Scholar 

  • VandeBerg JL (1983) The gray short-tailed opossum: a new laboratory animal. Inst Lab Animal Resources News 26:9–12

    Google Scholar 

  • Vaughan TA, Ryan JM, Czaplewski NJ (2011) Mammalogy, 5th edn. Jones and Bartlett Publishers, Sudbury, Massachusetts

    Google Scholar 

  • Vieira MV (1997) Body size and form in two neotropical marsupials, Didelphis aurita and Philander opossum (Marsupialia: Didelphidae). Mammalia 61(2):245–254

    Article  Google Scholar 

  • Vieira EM (2006a) Padrões de Uso Vertical do Habitat por Marsupiais Brasileiros. In: Caceres NC, Monteiro-Filho ELA (eds) Os Marsupiais do Brasil: Biologia, Ecologia e Evolução. Ed Univ Federal do Paraná, Curitiba

    Google Scholar 

  • Vieira MV (2006b) Locomção, Morfologia e Uso do Habitat em Marsupiais Neotropicais: Uma Abordagem Ecomorfológica. In: Caceres NC, Monteiro-Filho ELA (eds) Os Marsupiais do Brasil: Biologia, Ecologia e Evolução. Ed Univ Federal do Paraná, Curitiba

    Google Scholar 

  • Vieira EM, Astúa de Moraes D (2003) Carnivory and insectivory in Neotropical marsupials. In: Jones M, Dickman C, Archer M (eds) Predators with pouches: the biology of carnivorous marsupials. CSIRO Publishing, Victoria

    Google Scholar 

  • Voss RS, Jansa SA (2003) Phylogenetic studies on didelphid marsupials II. Nonmolecular data and new IRBP sequences: separate and combined analyses of didelphine relationships with denser taxon sampling. Bull Am Mus Nat Hist 276:1–82

    Article  Google Scholar 

  • Voss RS, Jansa SA (2009) Phylogenetic relationship and classification of Didelphid marsupials an extant radiation of New World metatherian mammals. Bull Amer Mus Nat Hist 332:1–177

    Google Scholar 

  • Voss RS, Lunde DP, Simmons NB (2001) The mammals of Paracou, French Guina: a Neotropical lowland rainforest fauna. Part. 2 nonvolant species. Bull Amer Mus Nat Hist 263:1–236

    Article  Google Scholar 

  • Voss RS, Lunde DP, Jansa SA (2005) On the contents of Gracilinanus Gardner and Creighton, 1989, with the description of a previously unrecognized clade of small didelphid marsupials. Amer Mus Novit 3482:1–34

    Article  Google Scholar 

  • Wallis IR, Farrell DJ (1992) Energy metabolism in potorine marsupials. J Comp Physiol B 162:478–487

    Google Scholar 

  • Williams GC (1966) Adaptation and natural selection. Princeton Univ Press, Princeton

    Google Scholar 

  • Willig MR, Gannon MR (1997) Gradients of species density and turnover in marsupials: a hemispheric perspective. J Mammal 78:756–765

    Article  Google Scholar 

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Goin, F.J., Woodburne, M.O., Zimicz, A.N., Martin, G.M., Chornogubsky, L. (2016). South American Living Metatherians: Physiological Ecology and Constraints. In: A Brief History of South American Metatherians. Springer Earth System Sciences. Springer, Dordrecht. https://doi.org/10.1007/978-94-017-7420-8_2

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