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Purification of a Trypsin Inhibitor from Cocculus hirsutus and Identification of Its Biological Activity
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  • Purification of a Trypsin Inhibitor from Cocculus hirsutus and Identification of Its Biological Activity
  • Purification of a Trypsin Inhibitor from Cocculus hirsutus and Identification of Its Biological Activity
저자명
Bhattacharjee. Chumki,Manjunath. Nagenahalli Huchappa,Prasad. Doddananjappa Theertha
간행물명
Journal of crop science and biotechnology
권/호정보
2009년|12권 4호|pp.248-255 (8 pages)
발행정보
한국작물학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Proteinase inhibitors play a significant role in plant defense against insect pests and phytopathogens by inhibiting their proteases. A thermotolerant monomeric trypsin inhibitor with molecular weight ~18kD was purified from Cocculus hirsutus (ChTI) using trypsin sepharose affinity column. Western blot analysis using ChTI IgY revealed its presence in vegetative parts and seeds. The second and third instar larvae of H.armigera fed with ChTI (5000TIU/ml) resulted in 84.59 and 58.71% reduction in mean larval weight respectively. An increase in the larval growth period was observed in ChTI fed larvae at all instars and inhibitor fed larvae could not complete their life cycle. ChTI caused 74 and 59.53% inhibition of bovine trypsin and Helicoverpa gut proteases respectively. ChTI exhibited strain specificity and inhibited growth and development of plant fungal pathogens. Bioassay studies on yeast strains indicated that ${Delta}YNK$ and MNN1 are more sensitive to ChTI. The results suggest that phosphodiester linkage in cell wall components is likely to be the key determinants for binding of ChTI. Taken together, these studies indicate that ChTI is a potential candidate for development of transgenic plants against foliar diseases and insect pests.