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Paradigm Shifts in Research on Host Plant Resistance to Insect Pests

机译:寄主植物对害虫抗性研究的范式转变

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摘要

Conventional breeding in conjunction with molecular techniques and transgenic approaches have a great promise to reduce pest associated crop losses, and accelerate the progress in developing cultivars with resistance to insects. Although, considerableprogress has been made over the past two decades in manipulating genes from diverse sources to develop plants with resistance to insect pests, deployment of molecular techniques for insect resistance, understand nature of gene action and metabolic pathways, but rapid and cost effective development and adoption of biotechnology-derived products will depend on developing a full understanding on the interaction of genes within their genomic environment, and with the environment in which their conferred phenotype interact. A good beginning has been made in developing genetic linkage maps of many crops, but the accuracy and precision of phenotyping for resistance to insect pests remains a critical constraint in many crops. Improved phenotyping systems willhave substantial impact on both conventional and biotechnological approaches to breed for resistance to insect pests, in addition to the more strategic research that feeds into these endeavors.
机译:与分子技术和转基因方法相结合的常规育种有望减少与害虫相关的农作物损失,并加速开发具有抗虫性的品种。尽管在过去的二十年中,在操纵来自各种来源的基因以开发对害虫具有抗性的植物,部署抗虫性分子技术,了解基因作用和代谢途径的本质,但快速且经济有效的开发和利用方面已经取得了长足的进步。采用生物技术衍生的产品将取决于对基因在其基因组环境中以及与它们所赋予表型相互作用的环境中的相互作用的全面了解。在开发许多农作物的遗传连锁图谱方面已经有了一个良好的开端,但是在许多农作物中,抗虫害的表型鉴定的准确性和精确性仍然是一个关键的制约因素。改进的表型系统将对常规方法和生物技术方法产生重大影响,以育种对害虫的抗性,此外还应进行更具战略意义的研究。

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