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豇豆(Vigna unguiculata)豆球蛋白与幼虫甘蔗螟虫(Diatraea saccharalis)的围食膜结合。

Cowpea (Vigna unguiculata) vicilins bind to the peritrophic membrane of larval sugarcane stalk borer (Diatraea saccharalis).

作者信息

Mota A C, Damatta R A, Lima Filho M, Silva C P, Xavier-Filho J

机构信息

Laboratório de Química e Função de Proteínas e Peptídeos, Centro de Biociências e Biotecnologia, UENF, CEP 28013-600 Campos dos Goytacazes, Brazil.

出版信息

J Insect Physiol. 2003 Sep;49(9):873-80. doi: 10.1016/S0022-1910(03)00139-2.

Abstract

In this work, we show that vicilins from two Vigna unguiculata (cowpea) genotypes, Epace-10 and IT 81D-1045, which are susceptible and resistant to attack by the cowpea weevil Callosobruchus maculatus, respectively, associate with the peritrophic membrane (PM) from larvae of Diatraea saccharalis. Solutions with increasing concentrations of vicilins were incubated with PM of the larvae and subsequently analysed by electrophoresis with SDS. It was observed that the majority of the bands of approximately 50,000 Da (characteristic of vicilins) did not appear in the separating gel and only lower molecular weight polypeptides were seen. When vicilins were incubated with PM, and the solution was then heated after the incubation, the band pattern in the gel appeared completely different. It was observed that the vicilins were being hydrolysed by proteinases associated with the PM. When the incubated samples were heated after the reaction, the major bands reappeared, demonstrating that most of the vicilin molecules had bound to the PM of D. saccharalis. These results suggest that when the vicilins are in contact with the PM they are bound and also digested by the PM of this insect. The major and several minor proteinases from the PM were extracted with Triton X-100 and their activity and the inhibition of this activity were analysed by ingel assays. Based on the effects of proteinase inhibitors, the PM-associated activity is due to serine class proteinases. Larvae of D. saccharalis were fed on artificial diets containing purified vicilins from Epace-10 or IT 81D-1045 seeds. Vicilins from Epace-10 did not affect the larval development, while IT 81D-1045 vicilins reduced significantly the survival rate of the sugar cane borer.

摘要

在这项研究中,我们发现来自两种豇豆(Vigna unguiculata)基因型(Epace - 10和IT 81D - 1045)的豌豆球蛋白,分别对豇豆象鼻虫(Callosobruchus maculatus)的攻击敏感和抗性,它们与甘蔗条螟(Diatraea saccharalis)幼虫的围食膜(PM)相关联。将浓度递增的豌豆球蛋白溶液与幼虫的围食膜一起孵育,随后用SDS进行电泳分析。观察到大约50,000 Da(豌豆球蛋白的特征分子量)的大多数条带未出现在分离胶中,仅可见较低分子量的多肽。当豌豆球蛋白与围食膜孵育,然后在孵育后加热溶液时,凝胶中的条带模式完全不同。观察到豌豆球蛋白正被与围食膜相关的蛋白酶水解。当反应后的孵育样品加热后,主要条带重新出现,表明大多数豌豆球蛋白分子已与甘蔗条螟的围食膜结合。这些结果表明,当豌豆球蛋白与围食膜接触时,它们会被这种昆虫的围食膜结合并消化。用Triton X - 100提取围食膜中的主要和几种次要蛋白酶,并通过凝胶内测定分析它们的活性以及对该活性的抑制作用。基于蛋白酶抑制剂的作用,围食膜相关活性归因于丝氨酸类蛋白酶。用含有来自Epace - 10或IT 81D - 1045种子的纯化豌豆球蛋白的人工饲料喂养甘蔗条螟幼虫。来自Epace - 10的豌豆球蛋白不影响幼虫发育,而IT 81D - 1045豌豆球蛋白显著降低了甘蔗螟虫的存活率。

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