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Selected References

  • Abdelmuti OMS (1991) Biochemical and nutritional evaluation of famine foods of the Sudan. Doctoral dissertation in Biochemistry and Nutrition, Faculty of Agriculture, University of Khartoum, Khartoum

    Google Scholar 

  • Adler LS, Wink M (2001) Transfer of quinolizidine alkaloids from hosts to hemiparasites in two Castilleja-Lupinus associations: analysis of floral and vegetative tissues. Biochem Syst Ecol 29:551–561

    PubMed  CAS  Google Scholar 

  • Aiyambo D (2010) Traditional uses of selected members of the Apocyanaceae family in Naminia. Spotlight on agriculture no 115. Ministry of Agriculture, Water and Forestry, Windhoek. http://www.nbri.org.na/fileadmin/user_upload/publications/Spotlight/Spotlight_115.pdf

  • Altschul SR (1973) Drugs and foods from Little known plants. Harvard University Press, Cambridge, MA

    Google Scholar 

  • Anonymous (2012a) Edible flowers guide. http://www.thompson-morgan.com/edible-flowers

  • Anonymous (2012b) Hwajeon. http://en.wikipedia.org/wiki/Hwajeon

  • Anonymous (2012c) Ox-eye daisy capers. http://www.wildfoods.ca/products-vegetables-ox-eyedaisycapers.html

  • Bailey LH (1949) Manual of cultivated plants most commonly grown in the continental United States and Canada, Revised edn. The Macmillan Co., New York, 1116pp

    Google Scholar 

  • Baker HG (1975) Sugar concentrations in nectars from hummingbird flowers. Biotropica 7:37–41

    Google Scholar 

  • Baker HG, Baker I (1973) Amino-acids in nectar and their evolutionary significance. Nature 241:543–545

    CAS  Google Scholar 

  • Baker HG, Baker I (1975) Studies of nectar-constitution and pollinator-plant coevolution. In: Gilbert LE, Raven PH (eds) Coevolution of animals and plants. University of Texas Press, Austin, pp 100–140

    Google Scholar 

  • Baker HG, Baker I (1977) Intraspecific constancy of floral nectar amino acid complements. Bot Gaz 138:183–191

    CAS  Google Scholar 

  • Baker HG, Baker I (1982a) Chemical constituents of nectar in relation to pollination mechanisms and phylogeny. In: Nitecki MH (ed) Biochemical aspects of evolutionary biology. University of Chicago Press, Chicago, pp 131–171

    Google Scholar 

  • Baker I, Baker HG (1982b) Some chemical constituents of floral nectars of Erythrina in relation to pollinators and systematics. Allertonia 3:25–37

    CAS  Google Scholar 

  • Baker HG, Baker I (1983) Floral nectar sugar constituents in relation to pollinator type. In: Jones CE, Little RJ (eds) Handbook of experimental pollination biology. Van Nostrand Reinhold, New York, pp 117–141

    Google Scholar 

  • Baker HG, Baker I (1986) The occurrence and significance of amino acids in floral nectar. Plant Syst Evol 151:175–186

    CAS  Google Scholar 

  • Balls EK (1962) Early uses of Californian plants. University of Californian Press, Berkeley, 104pp

    Google Scholar 

  • Barash CW (1997) Edible flowers desserts and drinks. Fulcrum Publishing, Colorado, 84pp

    Google Scholar 

  • Bell RR, Thornber EJ, Seet JLL, Groves MT, Ho NP, Bell DT (1983) Composition and protein quality of honeybee-collected pollen of Eucalyptus marginata and Eucalyptus calophylla. J Nutr 113:2479–2484

    PubMed  CAS  Google Scholar 

  • Bellakhdar J (1997) La pharmacopée traditionnelle marocaine. Médecine arabe ancienne et savoirs populaires. Ibis Press, Paris, 764pp

    Google Scholar 

  • Belsinger S (1990) Flowers in the kitchen: a bouquet of tasty recipes, 1st edn. Interweave Press, Loveland, 128pp

    Google Scholar 

  • Bergström G, Dobson HEM, Groth I (1995) Spatial fragrance patterns within the flowers of Ranunculus acris (Ranunculaceae). Plant Syst Evol 195:221–242

    Google Scholar 

  • Bernardello L, Galetto L, Forcone A (1999) Floral nectar chemical composition of some species from Patagonia. II. Biochem Syst Ecol 27:779–790

    CAS  Google Scholar 

  • Beutler R (1935) Nectar. Bee World 24:106–116, 128–136, 156–162

    Google Scholar 

  • Bhandari MM (1974) Famine foods in the Rajasthan Desert. Econ Bot 28:73–81

    Google Scholar 

  • Bird R (ed) (1990) Growing from seed, vol 4. Thompson and Morgan, Suffolk

    Google Scholar 

  • Bown D (1995) Encyclopaedia of herbs and their uses. Dorling Kindersley, London, 424pp

    Google Scholar 

  • Brotonegora S (2000) Matricaria recutita L. In: van der Vossen HAM, Wessel M (eds) Plant resources of South East Asia No. 16 stimulants. PROSEA Foundation, Bogor, pp 86–89

    Google Scholar 

  • Brown WH (1954) Useful plants of the Philippines, vol 2, Department of Agriculture and Natural Resources. Bureau of Printing, Manila, 513pp

    Google Scholar 

  • Brown K (2011) Edible flowers: from garden to plate: 25 recipes and an A–Z pictorial directory of culinary flora. Aquamarine Publishers, London, 186pp

    Google Scholar 

  • Bryan JE, Castle C (1975) The edible ornamental garden. Pungiun Books Australia, Ringwood, 192pp

    Google Scholar 

  • Burkill IH (1966) A dictionary of the economic products of the Malay Peninsula. Revised reprint, 2 vols. Ministry of Agriculture and Co-operatives, Kuala Lumpur, vol 1 (A–H), pp 1–1240, vol 2 (I–Z), pp 1241–2444

    Google Scholar 

  • Burnie G, Fenton-Smith J (1996) A grower’s guide to herbs. Murdoch Books, Sydney, 96pp

    Google Scholar 

  • Calvacante PB (1977) Edible palm fruits of the Brazilian Amazon. Principes 21:91–102

    Google Scholar 

  • Campbell C (2006) Fact sheet: Costus. http://www.abc.net.au/gardening/stories/s1659685.htm

  • Cantrill R (2004) Lutein from Tagetes erecta. Chemical and technical assessment. Paper prepared for the 63rd JECFA (Joint FAO/WHO Expert Committee on Food Additives) report – evaluation of certain food additives. WHO Tech Report Series 928, Geneva

    Google Scholar 

  • Carle A (1995) Costus flowers – a new delicacy? Helicon Soc Int Bull 7(4):1–2

    Google Scholar 

  • Carter C, Thornburg RW (2000) Tobacco nectarine I: purification and characterization as a germin-like, manganese superoxide dismutase implicated in the defense of floral reproductive tissues. J Biol Chem 275:36726–36733

    PubMed  CAS  Google Scholar 

  • Carter C, Thornburg RW (2004a) Tobacco nectarin III is a bifunctional enzyme with monodehydroascorbate reductase and carbonic anhydrase activities. Plant Mol Biol 54:415–425

    PubMed  CAS  Google Scholar 

  • Carter C, Thornburg RW (2004b) Tobacco nectarine V is a flavin-containing berberine bridge enzyme-like protein with glucose oxidase activity. Plant Physiol 134:460–469

    PubMed Central  PubMed  CAS  Google Scholar 

  • Chaikla P, Suwanthada C, Trisonthi C (2011) Morphological, anatomic and karyotypic characteristics of Peliosanthes teta Andrew. Afr J Agric Res 6(32):6698–6705

    Google Scholar 

  • Chan E (1998) Tropical plants of South East Asia. Tuttle Publishing, North Clarendon, 64pp

    Google Scholar 

  • Chiej R (1984) The Macdonald encyclopaedia of medicinal plants. Macdonald & Co, London, 447pp

    Google Scholar 

  • Clarke CB (1977) Edible and useful plants of California. University of California Press, Berkeley

    Google Scholar 

  • Coffey T (1993) The history and Folklore of North American wild flowers. Houghton Mifflin, Boston, 356pp

    Google Scholar 

  • Cotti T (1962) Ueber die quantitative messung der phosphataseaktivitaet in nektarien. Ber Schweiz Bot Ges 72:306–331 (in German)

    CAS  Google Scholar 

  • Crane E (1990) Bees and beekeeping: science, practice and world resources. Cornstock Publication, Ithaca, 593pp

    Google Scholar 

  • Cribb AB, Cribb JW (1987) Wild food in Australia, 2nd edn. Fontana Collins, Sydney, 240pp

    Google Scholar 

  • Crowhurst A (1972) The weed cookbook. Lancer Books, New York

    Google Scholar 

  • Daduang J, Vichitphan S, Daduang S, Hongdprabhas P, Boonsiri P (2011) High phenolics and antioxidants of some tropical vegetables related to antibacterial and anticancer activities. Afr J Pharm Pharmacol 5(5):608–615

    Google Scholar 

  • Dalziel JM (1937) The useful plants of West Tropical Africa, 3 vols. Crown Agent for the Colonies, London

    Google Scholar 

  • Darlington CD, Ammal EKJ (1945) Chromosome atlas of cultivated plants. G. Allen, London

    Google Scholar 

  • Dasuki UA, Van den Bergh MH (1994) Chrysanthemum coronarium L. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 140–142

    Google Scholar 

  • D’Cruz P (1998) Incredible edibles. http://www.angelfire.com/journal2/flowers/pcd13a.html

  • Deane G (2007–2012a) Agave, century plant. http://www.eattheweeds.com/century-plant/

  • Deane G (2007–2012b) Begonia Bonnanza. Eat the weed. http://www.eattheweeds.com/begonia-bonanza/

  • Deane G (2007–2012c) Coral bean: humming bird fast food. http://www.eattheweeds.com/coral-bean-humming-bird-fast-food/

  • Deane G (2007–2012d) Edible flowers: part one. http://www.eattheweeds.com/edible-flowers-part-one/

  • Deane G (2007–2012e) Edible flowers: part two. http://www.eattheweeds.com/edible-flowers-part-two/

  • Deane G (2007–2012f) Edible flowers: part three. http://www.eattheweeds.com/edible-flowers-part-three/

  • Deane G (2007–2012g) Edible flowers: part four. http://www.eattheweeds.com/edible-flowers-part-four/

  • Deane G (2007–2012h) Edible flowers: part five. http://www.eattheweeds.com/edible-flowers-part-five/

  • Deane G (2007–2012i) Edible flowers: part six. http://www.eattheweeds.com/edible-flowers-part-six/

  • Deane G (2007–2012j) Edible flowers: part seven. http://www.eattheweeds.com/edible-flowers-part-seven/

  • Deane G (2007–2012k) Edible flowers: part eight. http://www.eattheweeds.com/edible-flowers-part-eight/

  • Deane G (2007–2012l) Edible flowers: part nine. http://www.eattheweeds.com/edible-flowers-part-nine/

  • Deane G (2007–2012m) Edible flowers: part ten. http://www.eattheweeds.com/edible-flowers-part-ten/

  • Deane G (2007–2012n) Edible flowers: part eleven. http://www.eattheweeds.com/edible-flowers-part-eleven/

  • Deane G (2007–2012o) Edible flowers: part twelve. http://www.eattheweeds.com/edible-flowers-part-twelve/

  • Deane G (2007–2012p) Edible flowers: part thirteen. http://www.eattheweeds.com/edible-flowers-part-thirteen

  • Deane G (2007–2012q) Edible flowers: part fourteen. http://www.eattheweeds.com/edible-flowers-part-fourteen/

  • Deane G (2007–2012r) Edible flowers: part fifteen. http://www.eattheweeds.com/edible-flowers-part-fifteen/

  • Deane G (2007–2012s) Edible flowers: part sixteen. http://www.eattheweeds.com/edible-flowers-part-sixteen/

  • Deane G (2007–2012t) Edible flowers: part seventeen. http://www.eattheweeds.com/edible-flowers-part-seventeen/

  • Deane G (2007–2012u) Edible flowers: part eighteen. http://www.eattheweeds.com/edible-flowers-part-eighteen/

  • Deane G (2007–2012v) Edible flowers: part nineteen. http://www.eattheweeds.com/edible-flowers-part-nineteen/

  • Deane G (2007–2012w) Edible flowers: part twenty. http://www.eattheweeds.com/edible-flowers-part-twenty/

  • Deane G (2007–2012x) Edible wild flowers. http://www.eattheweeds.com/edible-wild-flowers/

  • Deane G (2007–2012y) Gorse of course. http://www.eattheweeds.com/ulex-europaeus-edible-gorse-or-furze-pas-2/

  • Deane G (2007–2012z) Kudzu Quickie. http://www.eattheweeds.com/kudzu-pueraria-montana-var-lobata-fried-2/

  • Deane G (2007–2012zb) Yucca’s not yucky. http://www.eattheweeds.com/yucca-yuca-which-is-edible-2/

  • Department of the Army (2009) The complete guide to edible wild plants. Skyhorse Publishing Inc, New York, 143pp

    Google Scholar 

  • Detzel A, Wink M (1993) Attraction, deterrence or intoxication of bees (Apis mellifera) by plant allelochemicals. Chemoecology 4:8–18

    CAS  Google Scholar 

  • Diraz E, Karaman S, Koca N (2012) Fatty acid and essential oil composition of Echinacea purpurea (L.) Moench, growing in Kahramanmaras – Turkey. In: International conference on environmental and biological sciences (ICEBS’2012), Bangkok, 21–22 Dec, 2012, pp 35–37

    Google Scholar 

  • Dobson HEM, Arroya J, Bergstrom G, Groth I (1997) Interspecific variation in floral fragrances within the genus Narcissus (Amaryllidaceae). Biochem Syst Ecol 25(8):685–706

    CAS  Google Scholar 

  • Douglas JS (1978) Alternative foods: a world guide to lesser-known edible plants, 1st edn. Transatlantic Arts, Levittown, 177pp

    Google Scholar 

  • Dudareva N, D’Auria JC, Hee Nam K, Raguso RA, Pichersky E (1998) AcetylCoA: benzylalcohol acetyltransferase—an enzyme involved in floral scent production in Clarkia breweri. Plant J 14:297–304

    PubMed  CAS  Google Scholar 

  • Elias TS, Dykeman PA (2009) Edible wild plants: a North American field guide to over 200 natural foods. Sterling Publishing Company, Inc, New York, 286pp

    Google Scholar 

  • Evans DE, Rothnie NE, Palmer MV, Burke DG, Sang JP, Knox RB, Williams EG, Hilliard EP, Salisbury PA (1987) Comparative analysis of fatty acids in pollen and seed of rapeseed. Phytochemistry 26:1895–1897

    CAS  Google Scholar 

  • Facciola S (1990) Cornucopia: a source book of edible plants. Kampong Publication, Vista, 677pp

    Google Scholar 

  • Falzari LM, Menary RC (2003) Chamomile for oil and dried flowers. Rural industries research and development corporation. Publication No. 02/156. Project No. UT-28A, Canberra

    Google Scholar 

  • Fern K (1992–2003) Plants for a future: the species database. Version 3 July 2003. CD Rom. PFAF Org

    Google Scholar 

  • Fernald ML, Kinsey AX, Rollins RC (1958) Wild plants of Eastern North America, 2nd edn. Harper & Row, New York

    Google Scholar 

  • Ferreres F, Andrade P, Gil MI, Tomás-Barberán FA (1996) Floral nectar phenolics as biochemical markers for the botanical origin of heather honey. Z Lebensm Unters Forsch 202:40–44

    CAS  Google Scholar 

  • Fox FW, Young MMN, Hallowes D (1982) Food from the veld: edible wild plants of southern Africa botanically identified and described. Delta Books, Johannesburg, 399pp

    Google Scholar 

  • Freedman R (2013) Famine foods. http://www.hort.purdue.edu/newcrop/faminefoods/ff_families/aristolochiaceae.html

  • Friedman H, Rot I, Agami Y, Vinokur Y, Reznick N, Umiel N, Dori I, Ganot L, Shmuel D, Matan E (2007) Edible flowers: new crops with potential health benefits. Acta Hort (ISHS) 755:283–289

    CAS  Google Scholar 

  • Gade DW (1975) Plants, man and the land in the Vilcanota Valey of Peru. Dr. W. Junk B.V., Publishers, The Hague

    Google Scholar 

  • Galetto L, Bernardello LM (1992) Extrafloral nectaries that attract ants in Bromeliaceae: structure and nectar composition. Can J Bot 70:1101–1106

    CAS  Google Scholar 

  • Gammie GA (1902) A note on plants used for food during famines and seasons of scarcity in the Bombay Presidency. India Bot Surv Rec 2(2):171–196

    Google Scholar 

  • Garland S (1993) The complete book of herbs & spices. Holder & Stoughton, Sydney, 288pp

    Google Scholar 

  • GIA (2012) Nutraceuticals: a global strategic business report. Global Industry Analyst Inc. http://www.prweb.com/releases/nutraceuticals/dietary_supplements/prweb4563164.htm

  • Gil MI, Ferreres F, Ortiz A, Subra E, Tomás-Barberán FA (1995) Plant phenolic metabolites and floral origin of rosemary honey. J Agric Food Chem 43:2833–2838

    CAS  Google Scholar 

  • Grieve M (1971) A modern herbal, 2 vols. Penguin/Dover Publications, New York, 919pp

    Google Scholar 

  • Groen LE, Siemonsma JS, Jansen PCM (1996) Minor species yielding non-seed carbohydrates. In: Flach M, Rumawas F (eds) Plant resources of South-East Asia no 9. Plants yielding non-seed carbohydrates. Prosea Foundation, Bogor, pp 165–186

    Google Scholar 

  • Gupta RK (1962) Some unusual and interesting food plants of the Garhwal Himalayas. J d’Agric Trop Bot Appl 9(11–12):532–535

    Google Scholar 

  • Halpin AM (1978) Unusual vegetables. Rodale Press, Emmaus

    Google Scholar 

  • Harden GJ (ed) (1992) Flora of New South Wales, vol 3. New South Wales University Press, Sydney, 717pp

    Google Scholar 

  • Harden GJ (ed) (1993) Flora of New South Wales, vol 4. New South Wales University Press, Sydney, 775pp

    Google Scholar 

  • Harrington HD (1974) Edible native plants of the rocky mountains. University New Mexico Press, Albuquerque, 392pp

    Google Scholar 

  • Harris BC (1975) Eat the weeds. Keats Publishing, New Canaan, 253pp

    Google Scholar 

  • Haslam S (2011) Noosa’s native plants. Noosa Integrated Catchment Association, Noosa, 392pp

    Google Scholar 

  • Hauzel H (2012) Edible flowers of the Northeast. http://www.northeastodyssey.com/blog/item/49-edible-flowers-of-the-northeast.html

  • Haynes J, McLaughlin J (2000) Edible palms and their uses. University Florida/Miami-Dade County Extension Office Fact Sheet MDCE-00-50, Homestead

    Google Scholar 

  • Hazslinsky B (1956) Poisonous honey from deadly nightshade. Z Bienenforsch 3:93–96

    Google Scholar 

  • Health Cananda (2002) Policy paper – nutraceuticals/functional foods and health claims on foods. http://www.hc-sc.gc.ca/fn-an/label-etiquet/claims-reclam/nutra-funct_foods-nutra-fonct_aliment-eng.php#2

  • Hedrick UP (1972) Sturtevant’s edible plants of the world. Dover Publications, New York, 686pp

    Google Scholar 

  • Heinrich G (1989) Analysis of cations in nectars by means of a laser microprobe mass analyser (LAMMA). Beitr Biol Pflanz 64:293–308

    Google Scholar 

  • Herklots GAC (1972) Vegetables in southeast Asia. George Allen & Unwin, London

    Google Scholar 

  • Hiebert SM, Calder WA (1983) Sodium, potassium, and chloride in floral nectars: energy-free contributions to refractive index and salt balance. Ecology 64:399–402

    CAS  Google Scholar 

  • Hu SY (2005) Food plants of China. The Chinese University Press, Hong Kong, 844pp

    Google Scholar 

  • Huxley AJ, Griffiths M, Levy M (eds) (1992) The new RHS dictionary of gardening, 4 vols. MacMillan, New York

    Google Scholar 

  • Irvine FR (1952) Supplementary and emergency food plants of West Africa. Econ Bot 6(1):23–40

    CAS  Google Scholar 

  • Jansen PCM (1999) Minor species. In: de Guzman CC, Siemonsma JS (eds) Plant resources of South East Asia No 13. Spices. Prosea Foundation, Bogor, pp 245–272

    Google Scholar 

  • Jansen GJ, Gildemacher BH, Phuphathanaphong L (1994) Luffa P. Miller. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 194–197

    Google Scholar 

  • JIRCAS (2010) Local vegetables of Thailand. Japan International Research Center for Agricultural Sciences. http://www.jircas.affrc.go.jp/project/value_addition/Local_Vegetables_of_Thailand_home.html

  • Jones D (1984) Palms in Australia. Reed Books Pty Ltd, Balgowlah, 278pp

    Google Scholar 

  • Jukema J, Wulijarni-Soetjipto N, Lemmens RHMJ, Hildebrand JW (1992) Minor species. In: Lemmens RHMJ, Wulijarni-Soetjipto N (eds) Plant resources of South-East Asia No. 3. Dye and tannin-producing plants. Prosea Foundation, Bogor, pp 132–142

    Google Scholar 

  • Kaisoon O, Siriamornpun S, Weerapreeyakul N, Meeso N (2011) Phenolic compounds and antioxidant activities of edible flowers from Thailand. J Funct Food 2:88–99

    Google Scholar 

  • Kaisoon O, Konczak I, Siriamornpun S (2012) Potential health enhancing properties of edible flowers from Thailand. Food Res Int 46(2):563–571

    CAS  Google Scholar 

  • Kapitany A (2012) Edible succulent plants. http://australiansucculents.com/edible-succulents

  • Kavasch EB (2005) Native harvests: American Indian wild foods and recipes. Dover Publications, Mineola, 238pp

    Google Scholar 

  • Khan TN (1994) Psophocarpus tetragonolobus (L.) DC. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 229–233

    Google Scholar 

  • Kim HJ, Kim K, Kim NS, Lee DS (2000) Determination of floral fragrances of Rosa hybrida using solid-phase trapping-solvent extraction and gas-chromatography-mass spectrometry. J Chromatogr A 902:389–404

    PubMed  CAS  Google Scholar 

  • King A (2007) Edible flowers. STG Subtrop Gard Mag 11:82–83

    Google Scholar 

  • Knudsen JT, Tollsten L, Bergström LG (1993) Floral scents – a checklist of volatile compounds isolated by head-space techniques. Phytochemistry 33(2):253–280

    CAS  Google Scholar 

  • Komarov VL (2004) Flora of the U.S.S. R., vols I–XXX. Smithsonian Institution Libraries, Washington, DC (translated from Russian)

    Google Scholar 

  • Kooi G (1994) Canavalia gladiata (Jacq.) DC. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 134–136

    Google Scholar 

  • Kraft K, Kraft P (1977) Exotic vegetables. Walker and Company, New York

    Google Scholar 

  • Kunkel G (1984) Plants for human consumption. An annotated checklist of the edible phanerogams and ferns. Koeltz Scientific Books, Koenigstein

    Google Scholar 

  • Kuo CG, Toxopeus H (1994) Brassica rapa L. cv. group Chinese Cabbage. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 127–130

    Google Scholar 

  • Kusamaran WR, Tepsuwan A, Kupradinun P (1998) Antimutagenic and anticarcinogenic potentials of some Thai vegetables. Mutat Res 402:247–258

    Google Scholar 

  • Laferriere JE (1992) Begonias as food and medicine. [Notes on economic plants]. Econ Bot 46:114–116

    Google Scholar 

  • Laferriere JE, Weber CW, Kohlhepp EA (1991) Use and nutritional composition of some traditional Mountain Pima plant foods. J Ethnobiol 11(1):93–114

    Google Scholar 

  • Larkcom J (1980) Salads all the year round. Littlehampton Book Services Ltd, West Sussex, 192pp

    Google Scholar 

  • Larkcom J (1991) Oriental vegetables. John Murray Publishers Ltd., London, 232pp

    Google Scholar 

  • Lauderdale C, Evans E (1999) Edible flowers. NC Satte Univeristy Horticulture Information leqflets 1/99 HIL-8513. http://www.ces.ncsu.edu/hil/hil-8513.html

  • Launert E (1981) Edible and medicinal plants. Hamlyn, London

    Google Scholar 

  • Lim TK (2012a) Edible medicinal and non-medical plants, vol 1, Fruits. Springer, Dordrecht, 835pp

    Google Scholar 

  • Lim TK (2012b) Edible medicinal and non-medical plants, vol 2, Fruits. Springer, Dordrecht, 1110pp

    Google Scholar 

  • Loewenfeld C, Back P (1978) The complete book of herbs and spices. 2nd revised edition. David and Charles, Newton Abbot, London

    Google Scholar 

  • Low T (1989) Bush tucker – Australia’s wild food harvest. Angus & Robertson, Sydney, 233pp

    Google Scholar 

  • Low T (1991) Wild food plants of Australia. Angus & Robertson, Sydney, 240pp

    Google Scholar 

  • Lust J (2001) The herb book. Benedict Lust Publication, New York, 700pp

    Google Scholar 

  • Lüttge U (1961) Über die zusammensetzung des nektars und den mechanismus seiner sekretion. I. Planta 56:189–212 (in German)

    Google Scholar 

  • Lüttge U (1962) Über die zusammensetzung des nektars und den mechanismus seiner sekretion. II. Planta 59:108–114 (in German)

    Google Scholar 

  • MacNicol M (1967) Flower cookery. Fleet Press, New York

    Google Scholar 

  • Maisuthisakul P (2012) Phenolic constituents and antioxidant properties of some Thai Plants. In: Rao V (ed) Phytochemicals – a global perspective of their role in nutrition and health. InTech Publishers, New York, pp 187–212

    Google Scholar 

  • Maisuthisakul P, Pasuk S, Ritthiruangdej P (2008) Relationship between antioxidant properties and chemical composition of some Thai plants. J Food Compos Anal 21:229–240

    CAS  Google Scholar 

  • Manandhar NP (1991) Some additional note on wild food plants of Nepal. J Nat Hist Mus 12:19–32

    Google Scholar 

  • Manning R (2001) Fatty acids in pollen: a review of their importance for honeybees. Bee World 82:60–75

    Google Scholar 

  • Manning R, Harvey M (2002) Fatty acids in honey bee-collected pollens from six endemic Western Australian eucalypts and the possible significance to the Western Australian beekeeping industry. Aust J Exp Agric 42:217–222

    CAS  Google Scholar 

  • Martin FW, Ruberté RM (1975) Edible leaves of the tropics. Agency for International Development, Department of State, and the Agricultural Research Service, U.S. Department of Agriculture, 235pp

    Google Scholar 

  • Martos I, Ferreres F, Tomás-Barberán FA (2000) Identification of flavonoid markers for the botanical origin of Eucalyptus honey. J Agric Food Chem 48(5):1498–1502

    PubMed  CAS  Google Scholar 

  • McCullough J (2007) The ultimate guide to U.S. Army survival skills, tactics, and techniques. Department of the Army, Skyhorse Publishings, New York, 962pp

    Google Scholar 

  • McTavish HS, Davies NW, Menary RC (2000) Emission of volatiles from brown Boronia flowers: some comparative observations. Ann Bot 86:347–354

    CAS  Google Scholar 

  • McVicar J (2003) Cooking with flowers. Kyle Cathie Ltd, London, 160pp

    Google Scholar 

  • Medhi P, Borthakur SK (2012) Phytoresources from North Cachar Hills of Assam-III: edible plants sold at Haflong market. Indian J Nat Prod Resour 3(1):84–109

    Google Scholar 

  • Menninger EA (1977) Edible nuts of the world. Horticultural Books, Stuart, 175pp

    Google Scholar 

  • Mlcek J, Rop O (2011) Fresh edible flowers of ornamental plants – a new source of nutraceutical foods. Trends Food Sci Technol 22(10):561–569

    CAS  Google Scholar 

  • Moerman DE (1998) Native American ethnobotany, 1st edn. Timber Press, Portland, 927pp

    Google Scholar 

  • Mookherjee BD, Trenkle RW, Wilson RA (1990) The chemistry of flowers, fruits and spices: live versus dead – a new dimension in fragrance research. Pure Appl Chem 62(7):1357–1364

    CAS  Google Scholar 

  • Mortimore M (1989) Adapting to drought. Farmers, famines and desertification in West Africa. Cambridge University Press, Cambridge

    Google Scholar 

  • Morton JF (1976) Herbs and spices. Golden Press, New York, 160pp

    Google Scholar 

  • Morton JF (1977) Major medicinal plants: botany, culture, and uses. Charles Thomas Publication, Springfiled, 431pp

    Google Scholar 

  • Morton JF (1987) Fruits of warm climates. Julia F. Morton, Miami, 505pp

    Google Scholar 

  • Morton JF (1988) Notes on distribution, propagation, and products of Borassus Palms (Arecaceae). Econ Bot 42(3):420–441

    Google Scholar 

  • Morton JF, Alvarez E, Quiñonez C (1990) Loroco, Fernaldia pandurata (Apocynaceae): a popular edible flower of Central America. Econ Bot 44:301–310

    Google Scholar 

  • Namrata LK, Ghosh D, Dwivedi SC, Singh B (2011) Wild edible plants of Uttarakhand Himalaya: a potential; nutraceutical source. Res J Med Plant 5(6):670–678

    Google Scholar 

  • Naqvi SMS, Harper A, Carter C, Ren G, Guirgis A, York WS, Thornburg RW (2005) Nectarin IV, a potent endoglucanase inhibitor secreted into the nectar of ornamental tobacco plants. Isolation, cloning and characterization. Plant Physiol 139:1389–1400

    PubMed Central  PubMed  CAS  Google Scholar 

  • National Tropical Botanical Gardens (NTBG) (2013) Costus productus. National Tropical Botanical Gardens Hawaii. http://ntbg.org/plants/plant_details.php?plantid=3462

  • Newman SE, O’Connor AS (2009) Edible flowers. Colorado State University Extension. Fact sheet no. 7.237. http://www.ext.colostate.edu/pubs/garden/07237.pdf

  • Ng FSP (2011) Tropical horticulture and gardening. Clearwaters Publication, Kuala Lumpur, p 183

    Google Scholar 

  • Nicolson SW, Thornburg RW (2007) Nectar chemistry. In: Nicolson SW, Nepi M, Pacini E (eds) Nectaries and nectar. Springer, Dordrecht, pp 215–264

    Google Scholar 

  • Nicolson SW, Van Wyk B-E (1998) Nectar sugars in Proteaceae: patterns and processes. Aust J Bot 46:489–504

    Google Scholar 

  • Ochse JJ, van den Brink RCB (1980) Vegetables of the Dutch Indies, 3rd edn. Ascher & Co, Amsterdam, 1016pp

    Google Scholar 

  • Ong HC, Siemonsma JS (1999) Capparis spinosa L. var.mariana (Jacq.) K. Schumann. In: de Guzman CC, Siemonsma JS (eds) Plant resources of South East Asia No 13. Spices. Prosea Foundation, Bogor, pp 89–91

    Google Scholar 

  • Opeña RT, Tay DCS (1994) Brassica rapa L. cv. group Caisin. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 123–126

    Google Scholar 

  • Organ J (1960) Rare vegetables for garden and table. Faber & Faber, London, 184pp

    Google Scholar 

  • Oyen LPA, Soenoeadji (1994) Allium fistulosum L. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 73–77

    Google Scholar 

  • Patiri B, Borah A (2007) Wild edible plants of Assam. Geetakhi Printers and Publishers, Guwahati

    Google Scholar 

  • Paton DN, Dunlop JC (1904) The nutritive values of some uncultivated foods used by the Bhils during recent famines. Agric Ledger 6:37–73

    Google Scholar 

  • Paul S (2011) Whispering greens: a mouthful of colours. http://whisperinggreens.blogspot.com.au/2011/10/mouthful-of-colors.html

  • Permadi AH, van der Meer QP (1994) Allium cepa L. cv. group Aggregatum. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 64–68

    Google Scholar 

  • Perry F (1952) Ethno-botany of the Indians in the Interior of British Columbia. Museum Art Notes 2(2):36–43 (p 38)

    Google Scholar 

  • Petanidou T (2005) Sugars in mediterranean floral nectars: an ecological and evolutionary approach. J Chem Ecol 31:1065–1088

    PubMed  CAS  Google Scholar 

  • Peterson LA (1977) Edible wild plants. Houghton Mifflin Company, New York

    Google Scholar 

  • Peumans WJ, Smeets K, Van Nerum K, Van Leuven F, Van Damme EJM (1997) Lectin and alliinase are the predominant proteins in nectar from leek (Allium porrum L.) flowers. Planta 201:298–302

    PubMed  CAS  Google Scholar 

  • Phillips R, Foy N (1992) Herbs. Pan Macmillan Limited, London, 192pp

    Google Scholar 

  • Phillips R, Rix M (1998) Salad plants for your garden. Pan, London, 96pp

    Google Scholar 

  • Pongpangan S, Poobrasert S (1985) Edible and poisonous plants in Thai forests. Science Society of Thailand, Science Teachers Section, Bangkok, 206pp

    Google Scholar 

  • Pradhan UC, Lachungpa ST (1990) Sikkim-Himalayan rhododendrons. Primulaceae Books, Kalimpong, 130pp

    Google Scholar 

  • Pryce-Jones J (1944) Some problems associated with nectar, pollen, and honey. Proc Linn Soc Lond 155(2):129–174

    Google Scholar 

  • Rahmansyah M (1992) Cassia auriculata L. In: Lemmens RHMJ, Wulijarni-Soetjipto N (eds) Dye and tannin producing plants, Plant resources of South-East Asia no 3. Prosea, Bogor, pp 62–63

    Google Scholar 

  • Read BE (ed) (1946) Famine foods listed in the Chiu huang pen ts’ao [of Ting Wang Chou]: giving their identity, nutritional values and notes on their preparation. Henry Lester Insitute of Medical Research, Shanghai, 93pp

    Google Scholar 

  • Reddy KN, Pattanaik C, Reddy CS, Raju VS (2007) Traditional knowledge on wild food Plants in Andhra Pradesh, India. Indian J Tradit Knowl 6(1):223–229

    Google Scholar 

  • Reyes MEC, Gildemacher BH, Jansen GJ (1994) Momordica L. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 206–210

    Google Scholar 

  • Rifai MA (1994) Erechtites Rafin. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 174–176

    Google Scholar 

  • Roberts MJ (2000) Edible and medicinal flowers. New Africa Publishers, Cape Town, 160pp

    Google Scholar 

  • Roemantyo (1994) Spilanthes Jacquin. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 264–266

    Google Scholar 

  • Rojanapo W, Tepsuwan A (1992) Mutagenic and antimutagenic activities of some vegetables. Bull Dept Med Serv 17:461–469

    Google Scholar 

  • Rojanapo W, Tepsuwan A (1993) Antimutagenic and mutagenic potentials of Chinese radish. Environ Health Perspect 101(Suppl):247–252

    PubMed Central  PubMed  CAS  Google Scholar 

  • Rop O, Mlcek J, Jurikova T, Neugebauerova J, Vabkova J (2012) Edible flowers – a new promising source of mineral elements in human nutrition. Molecules 17:6672–6683

    PubMed  CAS  Google Scholar 

  • Sagwansupyakorn C (1994) Brassica oleracea L. cv. group Chinese Kale. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 115–117

    Google Scholar 

  • Saidin I (2000) Sayuran Tradisional Ulam dan Penyedap Rasa. Penerbit Universiti Kebangsaan Malaysia, Bangi, p 228 (in Malay)

    Google Scholar 

  • Sawian JT, Jeeva S, Lyndem FG, Mishra BP, Laloo RC (2007) Wild edible plants of Meghalaya, North-east India. Nat Prod Radiance 6(5):410–462

    Google Scholar 

  • Saxena SK (1979) Plant foods of Western Rajasthan. Man Environ 3:35–43

    Google Scholar 

  • Schaeffer K, Fletcher W (2012) Edible plants. Plants of Tasmania Nursery & Gardens, Ridgeway. http://www.potn.com.au/edible_plants.html

  • Schmidt JO, Buchmann SL (1992) Other products of the hive. In: Graham JM (ed) The hive and the honeybee. Dadant & Sons, Hamilton, pp 927–988

    Google Scholar 

  • Schofield J (2003) Discovering wild plants: Alaska, Western Canada, The Northwest, 1st edn. Alaska Northwest Books, Anchorage, 353pp

    Google Scholar 

  • Seal T (2012) Evaluation of nutritional potential of wild edible plants, traditionally used by the tribal people of Meghalaya state in India. Am J Plant Nutr Fertil Technol 2(1):19–26

    Google Scholar 

  • Seidemann J (2005) World spice plants: economic usage, botany, taxonomy. Springer, Berlin/Heidelberg/New York

    Google Scholar 

  • Seigler D, Simpson BB, Martin C, Neff JL (1978) Free 3-acetoxyfatty acids in floral glands of Krameria species. Phytochemistry 17:995–996

    CAS  Google Scholar 

  • Shortt J (1887–1888) List of wild plants and vegetables used as food by people in famine times. Indian For 3:232–238

    Google Scholar 

  • Simons AJ (1975) The new vegetable grower’s handbook. Penguin Books Ltd, Harmondsworth, 368pp

    Google Scholar 

  • Singaravelan N, Nee’man G, Inbar M, Izhaki I (2005) Feeding responses of free-flying honeybees to secondary compounds mimicking floral nectars. J Chem Ecol 31(12):2791–2804

    PubMed  CAS  Google Scholar 

  • Singaravelan N, Inbar M, Ne’eman G, Distl M, Wink M, Izhaki I (2006) The effects of nectar–nicotine on colony fitness of caged honeybees. J Chem Ecol 32(1):49–59

    PubMed  CAS  Google Scholar 

  • Smits WTM (1996) Arenga pinnata (Wurmb) Merr. In: Flach M, Rumawas F (eds) Plant resources of South East Asia No 9. Plants yielding non-seed carbohydrates. Prosea Foundation, Bogor, pp 53–58

    Google Scholar 

  • South East Regional Centre for Urban Landcare (SERCUL) (2011) Bush tucker plants for your garden. Perth. http://www.sercul.org.au/docs/Bush%20Tucker%20Brochure.pdf

  • Srivastava P (2012) Rhododendron arboreum: an overview. J Appl Pharm Sci 2(1):158–162

    Google Scholar 

  • Stangland J (2004) Edible desert plants part II. Cochise Coty Master Gard Newsl 15(9):1–2. http://cals.arizona.edu/cochise/mg/pdf/Sep04.pdf

    Google Scholar 

  • Steenbeeke G (2001) List of plant species from northern NSW that may be used as food plants. brg.cma.nsw.gov.au/uploads/MurriFoodPlants.pdf

  • Stuart RGA (1979) Chinese materia medica: vegetable kingdom. Southern Materials Centre Inc, Taipei

    Google Scholar 

  • Stuart M (ed) (1987) The encyclopedia of herbs and herbalism. Crescent, New York, 304pp

    Google Scholar 

  • Sulistiorini D, van der Meer QP (1994) Allium ampeloprasum cv. group Leek. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 62–64

    Google Scholar 

  • Sweet M (1962) Common edible and useful plants of the west. Nature, Healdsburg, 64pp

    Google Scholar 

  • Symmons P, Symmons S (1994) Bush heritage. Queensland Complete Printing, Nambour

    Google Scholar 

  • Tanaka T (1976) Tanaka’s cyclopaedia of edible plants of the world. Keigaku Publishing, Tokyo, 924pp

    Google Scholar 

  • Tanaka Y, Nguyen VK (2007) Edible wild plants of Vietnam: the bountiful garden. Orchid Press, Bangkok, 175pp

    Google Scholar 

  • Tate JL (1976) Catus cook book, 3rd edn. Cactus and Succulent Society of America, Arcadia California

    Google Scholar 

  • Tay DCS, Toxopeus H (1994) Brassica rapa L. cv. group Pak Choi. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 130–134

    Google Scholar 

  • Thomas GS (1977) Perennial garden plants: modern Florilegium. McKay Company, Incorporated, New York

    Google Scholar 

  • Tinoi J, Rakariyatham N, Deming RL (2006) Determination of major carotenoid constituents in petal extracts of eight selected glowering plants in north Thailand. Chiang Mai J Sci 33(2):327–334

    CAS  Google Scholar 

  • Truchado P, Ferreres F, Bortolotti L, Sabatini AG, Tomás-Barberán FA (2008) Nectar flavonol rhamnosides are floral markers of acacia (Robinia pseudacacia) honey. J Agric Food Chem 56(19):8815–8824

    PubMed  CAS  Google Scholar 

  • Turner NJ, Bouchard R, Kennedy DID (1980) Ethnobotany of the Okanagan-Colville Indians of British Columbia and Washington. British Columbia Provincial Museum, Victoria, 179pp

    Google Scholar 

  • Uphof JCT (1968) Dictionary of economic plants, 2nd edn. (1st edn. 1959). Cramer, Lehre, 591pp

    Google Scholar 

  • Usher G (1974) A dictionary of plants used by man. Constable, London

    Google Scholar 

  • Van den Bergh MH (1994a) Limonocharis flava (L.) Buchenau. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 192–194

    Google Scholar 

  • Van den Bergh MH (1994b) Minor vegetables. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 280–310

    Google Scholar 

  • Van der Meer QP (1994) Allium tuberosum Rottler ex Sprengel. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 80–82

    Google Scholar 

  • Van der Meer QP, Agustina L (1994) Allium chinense G. Don. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 71–73

    Google Scholar 

  • Van der Meer QP, Leong AC (1994) Allium cepa. Cv. group common onion. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 68–71

    Google Scholar 

  • Van der Meer QP, Permadi AH (1994) Allium sativum L. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 77–80

    Google Scholar 

  • Van der Vossen HAM (1994) Brassica oleracea L. cv. groups Cauliflower & Broccoli. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 111–115

    Google Scholar 

  • Vogel S (1971) Pollination of oil-producing flowers by oil-collecting bees. Naturwissenschaften 58:58

    CAS  Google Scholar 

  • Wallace S (2009) Pinto peanut. http://permaculturepathways.blogspot.com.au/2009/03/plant-profile-pinto-peanut.html

  • Watt G (1908) The commercial products of India: being an abridgement of “the dictionary of the economic products of India”. J. Murray, London, p 1189

    Google Scholar 

  • Wessapan C, Charoenteeraboon J, Wetwitayaklung P, Limmatvapirat C, Phaechamud T (2007) Antimicrobial activity of some edible flowers in Thailand. Planta Med 73(9):886–887

    Google Scholar 

  • Wetwitayaklung P, Phaechamud T, Limmatvapirat C, Keokitichai S (2008) The study of antioxidant activities of edible flower extracts. Acta Hort (ISHS) 786:185–192

    CAS  Google Scholar 

  • Widjaja EA, Sukprakarn S (1994) Cucurbita L. In: Siemonsma JS, Piluek K (eds) Plant resources of South-East Asia No. 8. Vegetables. Prosea Foundation, Bogor, pp 160–164

    Google Scholar 

  • Wikipedia (2012) List of edible flowers. http://en.wikipedia.org/wiki/List_of_edible_flowers

  • Williams LO (1981) The useful plants of Central America. Ceiba 24(1–2):1–342

    Google Scholar 

  • Wilson B (2012) Atriplex canescens. http://www.laspilitas.com/nature-of-california/plants/atriplex-canescens

  • Wolfert P (1973) Couscous and other good food from Morocco. Harper and Row, New York, 351pp

    Google Scholar 

  • Wongwattanasathien O, Kangsadalampai K, Tongyonk L (2010) Antimutagenicity of some flowers grown in Thailand. Food Chem Toxicol 48(4):1045–1051

    PubMed  CAS  Google Scholar 

  • Woodward P (2000) Asian herbs & vegetables. Hylan House Publishing, Victoria, 146pp

    Google Scholar 

  • Wright CA (2001) Mediterranean vegetables: a cook’s ABC of vegetables and their preparation in Spain, France, Italy, Greece, Turkey, the Middle East, and north Africa with more than 200 authentic recipes for the home cook. Harvard Common Press, Boston, pp 181–182

    Google Scholar 

  • Yanovsky E (1936) Food plants of the N. American Indians, Miscellaneous publication no. 237. United States Department of Agriculture, Washington, DC

    Google Scholar 

  • Yumnam JY, Tripathi OP (2012) Traditional knowledge of eating raw plants by the Meitei of Manipur as medicine/nutrient supplement in their diet. Indian J Tradit Knowl 11(1):45–50

    Google Scholar 

  • Ziegler H (1956) Untersuchungen über die leitung und sekretion der assimilate. Planta 47:447–500

    CAS  Google Scholar 

  • Zimmerman M (1953) Papierchromatographische untersuchungen über die pflanzliche zuckersekretion. Ber Schweiz Bot Ges 63:402–429 (in Germman)

    Google Scholar 

  • Zimmerman JG (1954) Über die Sekretion saccharosespaltender trans-glucosidasen in pflanzlichem Nektar. Experientia 10:145–149 (in German)

    Google Scholar 

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Lim, T.K. (2014). Introduction. In: Edible Medicinal And Non-Medicinal Plants. Springer, Dordrecht. https://doi.org/10.1007/978-94-007-7395-0_1

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