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Diversity and analysis of sequences encoded by arcelin genes from Indian wild pulses resistant to bruchids

机译:印度野生豆类对bruchids抗性的arcelin基因编码序列的多样性和分析

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Wild pulse accessions are considered a vital source of genes for insect resistance for crop improvement programmes. Wild pulses resistant to infestation towards the bruchid insect pest, Callosobruchus macula-tus from South India were chosen to screen the existence of potent insecticidal protein, arcelin from APA locus (Arcelin/Phytohemagglutinin/α-Amylase inhibitor) to ascertain their nature and functional diversity without any specific indication for insect resistant factors. The DNA sequence coding for arcelin from various species of wild pulses were amplified, sequenced and deduced to their protein sequences. These protein sequences were examined physico-chemically using several bioinformatics tools and docked with various sugars to resolve the nature of arcelin molecules. Results indicated the presence of significant differences in the properties of arcelin molecules from various species of Indian wild pulses with their amino acid sequences, several physico-chemical properties and binding ability with sugars. The differences observed on these arcelin molecules from diverse wild pulses are predicted to provide a prospective insect pest control factors.
机译:野生脉冲种被认为是作物改良计划中抗虫基因的重要来源。选择来自印度南部的对豆科昆虫害虫具有抵抗力的野生豆类,以筛选强效杀虫蛋白,APA基因座中的阿奇林(Arcelin / Phytohemagglutinin /α-淀粉酶抑制剂)的存在,以确定其性质和功能多样性没有任何具体的抗虫因子指示。编码来自各种野生豆类的arcelin的DNA序列被扩增,测序并推导为其蛋白质序列。使用几种生物信息学工具对这些蛋白质序列进行了物理化学检查,并与各种糖类对接以解决arcelin分子的性质。结果表明,来自印度野生豆类的各种物种的arcelin分子的氨基酸序列,几种理化特性以及与糖的结合能力都存在显着差异。预测在这些来自不同野生脉冲的arcelin分子上观察到的差异将提供潜在的害虫控制因素。

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