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植物驯化与对食草动物的抗性

Plant domestication and resistance to herbivory.

作者信息

Chaudhary Bhupendra

机构信息

School of Biotechnology, Gautam Buddha University, Greater Noida 201 308, India.

出版信息

Int J Plant Genomics. 2013;2013:572784. doi: 10.1155/2013/572784. Epub 2013 Mar 25.

Abstract

Transformation of wild species into elite cultivars through "domestication" entails evolutionary responses in which plant populations adapt to selection. Domestication is a process characterized by the occurrence of key mutations in morphological, phenological, or utility genes, which leads to the increased adaptation and use of the plant; however, this process followed by modern plant breeding practices has presumably narrowed the genetic diversity in crop plants. The reduction of genetic diversity could result in "broad susceptibility" to newly emerging herbivores and pathogens, thereby threatening long-term crop retention. Different QTLs influencing herbivore resistance have also been identified, which overlap with other genes of small effect regulating resistance indicating the presence of pleiotropism or linkage between such genes. However, this reduction in genetic variability could be remunerated by introgression of novel traits from wild perhaps with antifeedant and antinutritional toxic components. Thus it is strongly believed that transgenic technologies may provide a radical and promising solution to combat herbivory as these avoid linkage drag and also the antifeedant angle. Here, important questions related to the temporal dynamics of resistance to herbivory and intricate genetic phenomenon with their impact on crop evolution are addressed and at times hypothesized for future validation.

摘要

通过“驯化”将野生植物物种转变为优良品种需要植物群体适应选择的进化反应。驯化是一个以形态、物候或实用基因中关键突变的出现为特征的过程,这导致了植物适应性和利用性的提高;然而,现代植物育种实践之后的这个过程可能缩小了作物植物的遗传多样性。遗传多样性的减少可能导致对新出现的食草动物和病原体的“广泛易感性”,从而威胁到作物的长期留存。还鉴定出了影响食草动物抗性的不同数量性状位点(QTL),这些位点与其他具有较小抗性调节作用的基因重叠,表明这些基因存在多效性或连锁关系。然而,遗传变异性的这种降低可以通过从野生植物中导入新性状来弥补,这些新性状可能带有拒食和抗营养毒性成分。因此,人们坚信转基因技术可能为对抗食草行为提供一个激进且有前景的解决方案,因为这些技术避免了连锁累赘以及拒食问题。在此,讨论了与食草抗性的时间动态以及复杂遗传现象及其对作物进化影响相关的重要问题,并且有时会对这些问题进行假设以便未来验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9195/3621290/4c120fc79cb8/IJPG2013-572784.001.jpg

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