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首页> 外文期刊>Plant Biotechnology Journal >Resistance to root?¢????knot nematode in tomato roots expressing a nematicidal Bacillus thuringiensis crystal protein
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Resistance to root?¢????knot nematode in tomato roots expressing a nematicidal Bacillus thuringiensis crystal protein

机译:表达杀线虫苏云金芽孢杆菌晶体蛋白的番茄根系对根结线虫的抗性

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Our laboratory has demonstrated previously that Bacillus thuringiensis (Bt) crystal (Cry) proteins present in the Cry5 and Cry6 subclades intoxicate free?¢????living nematodes. In this study, we tested whether the expression of nematicidal Cry6A in transgenic plants provided protection against plant?¢????parasitic nematodes. As bacterial codon usage is incompatible with expression in plants, two different codon?¢????modified cry6A genes were synthesized for expression in plants. One was designed by maintaining codon diversity whilst removing codons not common in plants, and the other was designed by selecting the optimal codon for each amino acid based on the Arabidopsis genome. Both versions of the cry6A gene, driven by the constitutive cauliflower mosaic virus 35S promoter, were introduced into tomato roots via Agrobacterium rhizogenes . Although both were found to express Cry6A protein, the codon diversity gene generated superior expression. These Cry6A?¢????expressing roots were then challenged with root?¢????knot nematode, Meloidogyne incognita . Three different infection parameters were compared between Cry6A?¢????expressing roots and control roots transformed with empty vector or green fluorescent protein (GFP). These data demonstrated that M.????incognita was able to ingest the 54?¢????kDa Cry6A, and that Cry6A intoxicated the parasitic nematode, as indicated by a decrease in progeny production of up to fourfold. These results indicate, for the first time, that a Bt Cry protein can confer plant resistance to an endoparasitic nematode, and that Cry proteins have the potential to control plant?¢????parasitic nematodes in transgenic plants.
机译:我们的实验室先前已证明存在于Cry5和Cry6子小节中的苏云金芽孢杆菌(Bt)晶体(Cry)蛋白可释放无毒的活线虫。在这项研究中,我们测试了杀线虫Cry6A在转基因植物中的表达是否提供了针对植物寄生线虫的保护作用。由于细菌密码子的使用与植物中的表达不相容,因此合成了两种不同的密码子修饰的cry6A基因以在植物中表达。一种设计是通过保持密码子多样性,同时去除植物中不常见的密码子,另一种通过基于拟南芥基因组为每种氨基酸选择最佳密码子来设计。由组成性花椰菜花叶病毒35S启动子驱动的cry6A基因的两个版本都通过发根农杆菌引入到番茄根中。尽管发现两者均表达Cry6A蛋白,但密码子多样性基因产生了优异的表达。然后用根结线虫Meloidogyne incognita挑战这些表达Cry6A的根。比较了表达Cry6Aβ的根和用空载体或绿色荧光蛋白(GFP)转化的对照根之间的三种不同的感染参数。这些数据表明,M.incognita能够摄取54μlkDa Cry6A,并且Cry6A使寄生的线虫中毒,其后代产量减少了多达四倍。这些结果首次表明,Bt Cry蛋白可以赋予植物对内寄生线虫的抗性,并且Cry蛋白具有控制转基因植物中植物Δε-Δ寄生线虫的潜力。

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