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Vigorous climbing jicama

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Selected References

  • Abid M, Hrishikeshavan HJ, Asad M (2006) Pharmacological evaluation of Pachyrhizus erosus (L) seeds for central nervous system depressant activity. Indian J Physiol Pharmacol 50(2):143–151

    Google Scholar 

  • Adjahossou DF, Ade J (1998) Effects of inflorescence removal on tuber yield of some accessions of Pachyrhizus erosus (L.) Urban and P. tuberosus (Lam.) Sprengel. [French], pp 97–114. In: Sorensen M, Estrella Engelmann JE, Hamann OJ, Rios Ruiz SAMC (eds) Proceedings of the 2nd international symposium on tuberous legumes, Celaya, Guanajuato, Mexico, 5–8 August 1996, 566 pp

    Google Scholar 

  • Annerose DJM, Diouf O (1994) Some aspects of response to drought in the genus Pachyrhizus Rich. ex DC, pp 199–214. In: Sørensen M (ed) Proceedings of the first international symposium on tuberous legumes, Guadeloupe, FWI, 21–24 Apr 1992. Jordbrugsforlaget, Copenhagen, Denmark

    Google Scholar 

  • Aquino-Bolaños EN, Mercado-Silva E (2004) Effects of polyphenol oxidase and peroxidase activity, phenolics and lignin content on the browning of cut jicama. Postharv Biol Technol 33(3):275–283

    Article  Google Scholar 

  • Arevalo TA (1998) Effect of flower removal on the yield of root tubers of Pachyrhizus erosus L. Urban. [Spanish], pp 125–130. In: Sorensen M, Estrella Engelmann JE, Hamann OJ, Rios Ruiz SAMC (eds) Proceedings of the 2nd international symposium on tuberous legumes, Celaya, Guanajuato, Mexico, 5–8 August 1996, 566 pp

    Google Scholar 

  • Barrera-Necha LL, Bautista-Banos S, Bravo-Luna L, García-Suárez FJ, Alavez-Solano D, Reyes-Chilpa R (2004) Antifungal activity of seed powders, extracts, and secondary metabolities of P. erosus L. against three postharvest fungi. Rev Mex Fitopatol 22(3):356–361

    Google Scholar 

  • Bergsma KA, Brecht JK (1992) Postharvest respiration, moisture loss, sensory analysis and compositional changes in jicama (Pachyrhizus erosus) roots. Acta Horticult 318:325–332

    Article  Google Scholar 

  • Bhusan TK, Ghatak SS (1991) Evaluation of some plant powders as protectants against rice weevil Sitophilus oryzae Linn. (Curculionidae: Coleoptera). Environ Ecol 9(1):115–117

    Google Scholar 

  • Broadbent JH, Shone G (1963) The composition of Pachyrhizus erosus (yam bean) seed oil. J Sci Food Agric 14(7):524–527

    Google Scholar 

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

    Google Scholar 

  • Cantwell M, Orozco W, Rubatzky V, Hernández L (1992) Postharvest handling and storage of jicama roots. Acta Hort (ISHS) 318:333–344

    Article  Google Scholar 

  • Cantwell MI, Peiser G, Mercado-Silva E (2002) Induction of chilling injury in jicama (Pachyrhizus erosus) roots: changes in texture, color and phenolics. Postharv Biol Technol 25(3):311–320

    Article  CAS  Google Scholar 

  • Caro VFJ, Casillas RD (1998) Effects of flower removal on yield of yam bean (Pachyrhizus erosus (L.) Urban) in Nayarit, Mexico. [Spanish], pp 131–137. In: Sorensen M, Estrella Engelmann JE, Hamann OJ, Rios Ruiz SAMC (eds) Proceedings of the 2nd international symposium on tuberous legumes, Celaya, Guanajuato, Mexico, 5–8 August 1996, 566 pp

    Google Scholar 

  • Catteau L, Lautié E, Koné O, Coppée M, Hell K, Pomalegni CB, Quetin-Leclercq J (2013) Degradation of rotenone in yam bean seeds (Pachyrhizus sp.) through food processing. J Agric Food Chem 61(46):11173–11179

    Article  CAS  PubMed  Google Scholar 

  • Cotter DJ, Gomez RE (1979) Daylength effect on root development of jicama (Pachyrhizus erosus Urban). HortSci 14(6):733–734

    Google Scholar 

  • Deciyanto S (1989) Pengendalian hama utama lada secara terpadu di Indonesia. J Penelitian Pengembangan Pertanian 8(3):69–74 (in Indonesian)

    Google Scholar 

  • Estrella-Parra EA, Gomez-Verjan JC, González-Sánchez I, Vázquez-Martínez ER, Vergara-Castañeda E, Cerbón MA, Alavez-Solano D, Reyes-Chilpa R (2014) Rotenone isolated from Pachyrhizus erosus displays cytotoxicity and genotoxicity in K562 cells. Nat Prod Res 23:1–6

    Google Scholar 

  • Evans IM, Boulter D, Eaglesham ARJ, Dart PJ (1977) Protein content and protein quality of tuberous roots of some legumes determined by chemical methods. Qual Plant 27(3–4):275–285

    Article  CAS  Google Scholar 

  • Fernandez MV, Warid WA, Loaiza JM, Montiel A (1997) Developmental patterns of jicama (Pachyrhizus erosus (L.) Urban) plant and the chemical constituents of roots grown in Sonora, Mexico. Plant Foods Hum Nutr 50(4):279–286

    Article  CAS  PubMed  Google Scholar 

  • Fu PK, Wang PY (2012) Toxic leukoencephalopathy due to yam bean seeds poisoning. Neurologist 18(4):199–201

    Article  PubMed  Google Scholar 

  • Ghatak SS, Bhusan TK (1995) Evaluation on the ovicidal activity of some indigenous plant extracts on rice moth, Corcyra cephalonica Staint. (Galleriidae: Lepidoptera). Environ Ecol 13(2):284–286

    Google Scholar 

  • Gomes AV, Sirju-Charran G, Barnes JA (1997) Major proteins of yam bean tubers. Phytochemistry 46(2):185–193

    Article  CAS  PubMed  Google Scholar 

  • Gómez-Aldapa CA, Rangel-Vargas E, de León HB, Filardo-Kerstupp RS, Gordillo-Martínez AJ, Vázquez-Barrios ME, Castro-Rosas J (2013) Presence of diarrheagenic Escherichia coli pathotypes, Salmonella and indicator bacteria on fresh-cut jicama [Pachyrhizus erosus (L.) Urban] from public markets in Mexico. African J Microbiol Res 7(34):4323–4330

    Google Scholar 

  • Greshoff M (1890) Cheraisch-pharmacologisch laboratorium eerste verslag van het onderzoek naar de plantenstof fen van Nederland- schindie. Meded. uit ’s Lands Plantentuin VII. 127 pp. Batavia (in Dutch)

    Google Scholar 

  • Grüneberg WJ, Goffman FD, Velasco L (1999) Characterization of yam bean (Pachyrhizus spp.) seeds as potential sources of high palmitic acid oil. J Am Oil Chem Soc 76(11):1309–1312

    Article  Google Scholar 

  • Guo JL, Cheng YL, Qiu Y, Shen CH, Yi B, Peng C (2014) Purification and characterization of a novel type I ribosome inactivating protein, pachyerosin, from Pachyrhizus erosus seeds, and preparation of its immunotoxin against human hepatoma cells. Planta Med 80(11):896–901

    Article  CAS  PubMed  Google Scholar 

  • Hansberry R, Lee C (1943) The yam bean, Pachyrhizus erosus Urban, as a possible insecticide. J Econ Entomol 36(2):351–352

    Article  CAS  Google Scholar 

  • Hansberry R, Clausen RT, Norton LB (1947) Variations in the chemical composition and insecticidal properties of the yam bean (Pachyrhizus). J Agric Res 74(2):55–64

    Google Scholar 

  • Herklots GAC (1972) Vegetables in South-East Asia. George Allen & Unwin, London. 525 pp

    Google Scholar 

  • Hung YM, Hung SY, Olson KR, Chou KJ, Lin SL, Chung HM, Tung CN, Chang JC (2007) Yam bean seed poisoning mimicking cyanide intoxication. Intern Med J 37(2):130–132

    Article  CAS  PubMed  Google Scholar 

  • Hwang SL (1941) A preliminary report on the chemical composition of yam bean (Pachyrhizus erosus Urban), a new Rotenone bearing plant. Kwangsi Agric 2(4):269–280 (in Chinese)

    CAS  Google Scholar 

  • Ingham JL (1979) Isoflavonoid phytoalexins of yam bean Pachyrhizus erosus. Z Naturforsch 34c:683–688

    CAS  Google Scholar 

  • Jones HA (1942) A list of plants reported to contain rotenone or rotenoids. U.S. Department of Agriculture, Bureau of Entomology and Plant Quarantine, Washington, DC. 14 pp

    Google Scholar 

  • Kalra AJ, Krishnamurthi M, Nath M (1977) Chemical investigation of Indian yam beans (Pachyrrhizus erosus): Isolation and structures of two new rotenoids and a new isoflavonone, erosenone. Indian J Chem 15:1084–1086

    Google Scholar 

  • Kardinan A, Wikardi EA (1997) The prospect of botanical insecticides on stored food insects management. Biotrop Spec Publ 59:199–208

    Google Scholar 

  • Karuniawan A (2004) Cultivation status and genetic diversity of yam bean (Pachyrhizus erosus (L.) Urban) in Indonesia. Cuvillier Verlag, Göttingen. 81 pp

    Google Scholar 

  • Kawabata A, Sawayama S, Del Rosario RR, Noel MG (1986) Effect of storage and heat treatments on the sugar constituents in cassava and yambean roots. Nippon Shokuhin Kogyo Gakkaishi (Japón) 33(6):441–449

    Article  CAS  Google Scholar 

  • Kay DE (1973) Root crop. Crops and products digest 2. Tropical Products Institute, London, 245 pp

    Google Scholar 

  • Klockman DM, Pressey R, Jen JJ (1991) Characterization of cell polysaccharides of jicama (Pachyrrhizus erosus) and Chinese water chestnut (Eleocharis dulcis). J Food Biochem 15:317–329

    Article  Google Scholar 

  • Krishnamurthi M, Seshadri TR (1966) Chemical components of yam beans: their evolution and inter-relationship. Curr Sci 35(7):167–169

    Google Scholar 

  • Krishnamurti M, Sambhy YR, Seshadri TR (1970) Chemical study of Indian yam beans (Pachyrrhizus erosus): Isolation of two new rotenoids: 12a-hydroxydolineone and 12a-hydroxypachyrrhizone. Tetrahedron 26:3023–3027

    Article  CAS  Google Scholar 

  • Kumalasari ID, Nishi K, Harmayani E, Raharjo S, Sugahara T (2014a) Immunomodulatory activity of Bengkoang (Pachyrhizus erosus) fiber extract in vitro and in vivo. Cytotechnology 66(1):75–85

    Article  PubMed Central  PubMed  Google Scholar 

  • Kumalasari ID, Nishi K, Putra AB, Sugahara T (2014b) Activation of macrophages stimulated by the bengkoang fiber extract through toll-like receptor 4. Food Funct 5(7):1403–1408

    Article  CAS  PubMed  Google Scholar 

  • Lamaze T, Vansuyt G, Zinsou C (1985) Répartition des formes d’azote et catabolisme des purines chez le dolique tubéreux, Pachyrhizus erosus Urban. Agronomie (Francia) 5(10):933–938

    Article  Google Scholar 

  • Lautié E, Rozet E, Hubert P, Quetin Leclercq J (2012) Quantification of rotenone in seeds of different species of yam bean (Pachyrhizus sp.) by a SPE HPLC–UV method. Food Chem 131(4):1531–1538

    Article  Google Scholar 

  • Lautié E, Rozet E, Hubert P, Vandelaer N, Billard F, Zum Felde T, Grüneberg WJ, Quetin-Leclercq J (2013) Fast method for the simultaneous quantification of toxic polyphenols applied to the selection of genotypes of yam bean (Pachyrhizus sp.) seeds. Talanta 117:94–101

    Article  PubMed  Google Scholar 

  • Leidi EO (2002) Leaf gas exchange of Pachyrhizus ahipa and P. erosus under water and temperature stress. Photosynthetica 40(3):375–381

    Article  CAS  Google Scholar 

  • Lin Y, Hao B, Pan K (1996) Preliminary crystallographic studies of a protein from Pachyrrhizus erosus. Acta Crystallogr D Biol Crystallogr 52(Pt 2):414–415

    Article  CAS  PubMed  Google Scholar 

  • Lukitaningsih E, Bahi M, Holzgrabe U (2013a) Tyrosinase inhibition type of isolated compounds obtained from Pachyrhizus erosus. Aceh Int J Sci Technol 2(3):98–102

    Article  Google Scholar 

  • Lukitaningsih E, Mustikawatty AA, Sulistyo B, Sudarmanto A (2013b) Homology modelling and molecular docking of active compounds from bengkoang (Pachyrrhizus erosus) as tyrosinase inhibitor in Homa Sapiens. J Ilmu Farmasi Indonesia 12(1):132–137

    Google Scholar 

  • Martínez-Bustos F, López-Soto M, Martín-Martínez ES, Zazueta-Morales JJ, Velez-Medina JJ (2007) Effects of high energy milling on some functional properties of jicama starch (Pachyrrhizus erosus L. Urban) and cassava starch (Manihot esculenta Crantz). J Food Eng 78(4):1212–1220

    Article  Google Scholar 

  • Mélo EA, Stamford TLM, Silva MPC, Krieger N, Stamford NP (2003) Functional properties of yam bean (Pachyrhizus erosus) starch. Bioresour Technol 89(1):103–106

    Article  PubMed  Google Scholar 

  • Mercado-Silva E, Garcia R, Heredia-Zepeda A, Cantwell M (1998) Development of chilling injury in five jicama cultivars. Postharv Biol Technol 13(1):37–43

    Article  Google Scholar 

  • Mora QA, Morera MJA (1998) Test of elimination of flowers in a cultivar of yam beans (Pachyrhizus erosus (L.) Urban) using 2,4-D. [Spanish], pp 221–229. In: Sorensen M, Estrella Engelmann JE, Hamann OJ, Rios Ruiz SAMC (eds) Proceedings of the 2nd international symposium on tuberous legumes, Celaya, Guanajuato, Mexico, 5–8 August 1996, 566 pp

    Google Scholar 

  • Morales-Arellano GY, Chagolla-Lopez A, Paredes-Lopez O, Barba de la Rosa AP (2001) Characterization of yam bean (Pachyrhizus erosus) proteins. J Agric Food Chem 49(3):1512–1516

    Article  CAS  PubMed  Google Scholar 

  • Narongchai P, Narongchai S, Thampituk S (2005) The first fatal case of yam bean and rotenone toxicity in Thailand. Chotmaihet Thangphaet (J Med Assoc Thailand) 88(7):984–987

    Google Scholar 

  • National Academy of Sciences (NAS) (1979) Tropical legumes: resources for the future. Root crops: Yam bean, Washington, pp 22–27

    Google Scholar 

  • Noman ASM, Hoque MA, Sen PK, Karim MR (2006) Purification and some properties of α-amylase from post-harvest Pachyrhizus erosus L. tuber. Food Cehm 99(3):444–449

    Article  CAS  Google Scholar 

  • Noman ASM, Hoque MA, Haque MM, Pervin F, Karim MR (2007) Nutritional and anti-nutritional components in Pachyrhizus erosus L. tuber. Food Chem 102(4):1112–1118

    Article  CAS  Google Scholar 

  • Norton LB (1943) Rotenone in the yam bean (Pachyrhizus erosus). J Am Chem Soc 61:2259–2260

    Article  Google Scholar 

  • Nuraini J (2000) The effect of inoculum percentage and duration of fermentation with Trichoderma koningii on water content, crude protein and crude fiber of bengkuang leaves. J Penelitian Andalas 12(32):132–136 (in Indonesian)

    Google Scholar 

  • Nuraini J, Hellyward, Mirzah (2001) The effect of fermented bengkuang leaves with Trichoderma koningii on broiler performance and income over feed cost. J Penelitian Andalas 13(35):42–47 (in Indonesia)

    Google Scholar 

  • Nurrochmad A, Leviana F, Wulancarsari CG, Lukitaningsih E (2010) Phytoestrogens of Pachyrhizus erosus prevent bone loss in an ovariectomized rat model of osteoporosis. Int J Phytomed 2:363–372

    Google Scholar 

  • Nurrochmad A, Lukitaningsih E, Monikawati A, Septhea DB, Meiyanto E (2013) Combination of low-concentration of novel phytoestrogen (8,9)-furanyl-pterocarpan-3-ol from Pachyrhizus erosus attenuated tamoxifen-associated growth inhibition on breast cancer T47D cells. Asian Pac J Trop Biomed 3(11):847–852

    Article  PubMed Central  CAS  Google Scholar 

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

    Google Scholar 

  • Panda PK, Sen H (1995) Effect of growth regulators on flowering and tuber yield of yambean. J Root Crops 21(2):97–101

    Google Scholar 

  • Paull RE, Chen NJ (1988) Compositional changes in Yam Bean during storage. HortSci 23(1):194–196

    CAS  Google Scholar 

  • Paull RE, Chen NJ, Fukuda SK (1988) Planting dates related to tuberous root yield, vine length, and quality attributes of Yam Bean. HortSci 23(2):326–329

    Google Scholar 

  • Perry LM, Metzger J (1980) Medicinal plants of East and Southeast Asia. MIT Press, Cambridge. 632 pp

    Google Scholar 

  • Phrutivorapongkul A, Lipipun V, Ruangrungsi N, Watanabe T, Ishikawa T (2002) Studies on the constituents of seeds of Pachyrrhizus erosus and their anti herpes simplex virus (HSV) activities. Chem Pharm Bull 50(4):534–537

    Article  CAS  PubMed  Google Scholar 

  • Pressey R (1993) Cell wall compositions and enzymes of potatoes, jicamas and Chinese water chestnuts. J Food Biochem 17:85–95

    Article  CAS  Google Scholar 

  • Purseglove JW (1968) Tropical crops: Dicotyledons I. Wiley, New York, pp 281–284

    Google Scholar 

  • Ramirez-Santiago C, Ramos-Solis L, Lobato-Calleros C, Peña-Valdivia C, Vernon-Carter EJ, Alvarez-Ramírez J (2010) Enrichment of stirred yogurt with soluble dietary fiber from Pachyrhizus erosus L. Urban: Effect on syneresis, microstructure and rheological properties. J Food Eng 101(3):229–235

    Article  Google Scholar 

  • Ramos-de-la-Peña AM, Renard CMGC, Wicker L, Montañez J, Reyes-Vega MDLL, Contreras-Esquivel JC (2012a) Optimization of the liquefaction and saccharification of structural polysaccharides of jicama (Pachyrhizus erosus L.) tissue by enzymatic pulping. LWT Food Sci Technol 46(1):232–238

    Article  Google Scholar 

  • Ramos-de-la-Peña AM, Renard CMGC, Wicker L, Montañez J, Reyes-Vega MDLL, Voget C, Contreras-Esquivel JC (2012b) Enzymatic liquefaction of jicama (Pachyrhizus erosus) tuberous roots and characterization of the cell walls after processing. LWT Food Sci Technol 49(2):257–262

    Article  Google Scholar 

  • Ramos-de-la-Peña AM, Renard CMGC, Wicker L, Contreras-Esquivel JC (2013) Advances and perspectives of Pachyrhizus spp. in food science and biotechnology. Trends Food Sci Technol 29(1):44–54

    Article  Google Scholar 

  • Ramos‐de‐la‐Peña AM, Rangel‐Rodríguez AM, Casas‐González MR, Balagurusamy N, Sañudo‐Barajas JA, Carrillo‐Castillo A, Contreras‐Esquivel JC (2011) Analysis of polyelectrolyte complexes formed with jicama pectic polysaccharide and water‐soluble chitosan. Polymer Int 60(6):916–919

    Article  Google Scholar 

  • Robin C, Vaillant V, Vansuyt G, Zinsou C (1990) Assimilate partitioning in Pachyrhizus erosus during long-day vegetative development. Plant Physiol Biochem 28(3):343–349

    CAS  Google Scholar 

  • Rumbaina D, Martono (1988) Uji efikasi biji bengkuang (Pachyrrhizus erosus Urb.) terhadap hama penggerek batang lada. Sub-Balittro, Natar, Lampung (in Indonesian)

    Google Scholar 

  • Sahu RC, Hameed SF (1983) Assessment of the rotenoids of Indian yam bean seeds. J Inst Agric Anim Sci 4(1–2):57–63

    Google Scholar 

  • Sahu RC, Hameed SF (1989) Effect of Pachyrrhizus erosus urban seed extracts against tobacco caterpillar, Spodoptera litura F. Tobacco Res 15(1):17–20

    Google Scholar 

  • Santos AC, Cavalcanti MS, Coelho LC (1996) Chemical composition and nutritional potential of yam bean seeds (Pachyrhizus erosus L. Urban). Plant Foods Hum Nutr 49(1):35–41

    Article  CAS  PubMed  Google Scholar 

  • Shangraw RF, Lynn EV (1955) The saponins of Pachyrrhizus erosus (L) Urban. J Am Pharm Assoc (Baltim) 44(1):38–39

    Article  CAS  Google Scholar 

  • Song XM, Zhou ZC, Wang J, Wu F, Gong WM (2004) Purification, characterization and preliminary crystallographic studies of a novel plant defensin from Pachyrrhizus erosus seeds. Acta Crystallogr D Biol Crystallogr 60(Pt 6):1121–1124

    Article  PubMed  Google Scholar 

  • Song XM, Wang J, Wu F, Li X, Teng MK, Gong WM (2005) cDNA cloning, functional expression and antifungal activities of a dimeric plant defensin SPE10 from Pachyrrhizus erosus seeds. Plant Mol Biol 57(1):13–20

    Article  CAS  PubMed  Google Scholar 

  • Sørensen M (1996) Yam bean. Pachyrrhizus DC. Promoting the conservation and use of underutilized and neglected crops 2 IPK/IPGRI Gatersleben/Rome, 141 pp

    Google Scholar 

  • Sørensen M, van Hoof WCH (1996) Pachyrhizus erosus (L.) Urban. In: Flach M, Rumawas F (eds) Plant resources of South-East Asia, No. 9. Plants yielding non-seed carbohydrates. Prosea Foundation, Bogor, pp 137–141

    Google Scholar 

  • Sørensen M, Grum M, Paull RE, Vaillant V, Venthou-Dumaine A, Zinsou C (1993) Yam beans (Pachyrhizus species). In: Williams JT (ed) Pulses and vegetables, underutilized crop series. Chapman and Hall, London, pp 59–102

    Google Scholar 

  • Stevenson D, Jane JL, Inglett GE (2007) Characterisation of jicama (Mexican potato) (Pachyrhizus erosus L. Urban) starch from taproots grown in USA and Mexico. Starch-Starke 59(3–4):132–140

    Article  CAS  Google Scholar 

  • Stuart GU (2014) Philippine alternative medicine. Manual of some Philippine medicinal plants. http://www.stuartxchange.org/OtherHerbals.html

  • The Plant List (2014) Pachyrhizus erosus (L.) Urb. http://www.theplantlist.org/

  • U.S. Department of Agriculture, Agricultural Research Service (USDA-ARS) (2014) USDA National Nutrient Database for Standard Reference, Release 26. Nutrient Data Laboratory Home Page. http://www.ars.usda.gov/ba/bhnrc/ndl

  • Vaillant V, Desfontaines L (1995) Assimilate partitioning in Pachyrhizus erosus tuber on short days. Physiol Plant 93:558–562

    Article  CAS  Google Scholar 

  • Vaillant V, Robin C, Zinsou C (1990) Effects of the inhibition of nodule metabolism by nitrate on the regulation of assimilate partitioning in Pachyrhizus erosus. Plant Physiol Biochem 28(1):131–136

    CAS  Google Scholar 

  • van Sillevoldt HET (1899) Ueber das derrid und pachyrhizid, ein beitrag zur kenntnis der indischen fischgifte. Arch Pharm 237:595–616 (in Dutch)

    Article  Google Scholar 

  • WHO/FAO (1985) Energy and protein requirements, Report of Joint FAO/WHO Adhoc expert committee. FAO/WHO, Rome

    Google Scholar 

  • Wu F, Li YK, Chang SJ, Zhou ZC, Wang F, Song XM, Lin Y, Gong WM (2002) Purification, characterization and preliminary crystallographic studies of a PR-10 protein from Pachyrrhizus erosus seeds. Acta Crystallogr D Biol Crystallogr 58(Pt 12):2165–2167

    Article  PubMed  Google Scholar 

  • Wu F, Yan M, Li YK, Chang SJ, Song XM, Zhou ZC, Gong WM (2003) cDNA cloning, expression, and mutagenesis of a PR-10 protein SPE-16 from the seeds of Pachyrrhizus erosus. Biochem Biophys Res Commun 312(3):761–766

    Article  CAS  PubMed  Google Scholar 

  • Yahara S, Irino N, Takaoka T, Nohara T (1994) Studies on the constituents of Pachyrhizus erosus. Nat Med 48(4):312–313

    CAS  Google Scholar 

  • Yongkhamcha B, Indrapichate K (2012) Insecticidal efficacy of mintweed, yam bean and celery seed extracts on Aedes aegypti L. Int J Agric Sci 4(3):207–212

    Article  Google Scholar 

  • Zinsou C, Vansuyt G, Venthou-Dumaine A (1987) Croissance et développement du Pachyrhizus erosus Urban, 2: Effets de l’acide gibbérellique et du chlorure de chlorocholine sur la composition glucidique du tubercule. Agronomie (Francia) 7(10):821–825

    Article  Google Scholar 

  • Zulkarnain AK, Ernawati N, Sukardani NI (2013) Activities of yam starch (Pachyrhizus erosus) as sunscreen in mouse and the effect of its concentration on viscosity level. Majalah Obat Tradisional (Tradit Med J) 18(1):1–8 (in Indonesian)

    Google Scholar 

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Lim, T.K. (2016). Pachyrhizus erosus . In: Edible Medicinal and Non-Medicinal Plants. Springer, Dordrecht. https://doi.org/10.1007/978-94-017-7276-1_20

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