首页> 外文期刊>Critical Reviews in Plant Sciences >Studying Populus defenses against insect herbivores in the post-genomic era. (Special Issue: Poplar community genomics.)
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Studying Populus defenses against insect herbivores in the post-genomic era. (Special Issue: Poplar community genomics.)

机译:研究后基因组时代的杨对昆虫食草动物的防御。 (特刊:杨树群落基因组学。)

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摘要

Concurrent with the ever increasing demand for wood-based products, there is an obvious need to conserve forest ecosystems for their ecological value. Recent research suggests that these potentially competing objectives can be achieved by increasing or tailoring the productivity of planted forests through the use of biotechnology. Unfortunately, this strategy could be hindered by forest insect pests that pose a challenge to the sustainability of planted forests. While advancing genetic improvement or domestication of tree species for productivity in plantation forestry, it is critical that we also identify tree genes controlling resistance and/or tolerance mechanisms against insect pests. In this regard, Populus has emerged as the model angiosperm tree to investigate forest tree-insect interactions. In recent years a number of studies have harnessed the power of genomics to generate extensive inventories of Populus genes that may contribute to the defense response of Populus following insect attack. However, despite these advances, the challenge remains to link insect feeding-induced changes in gene expression with altered resistance or tolerance to insect attack. Following an introduction on the current state of knowledge concerning insect herbivores and Populus defenses, an overview is provided of emerging research strategies designed to identify and test the function of defense genes that directly mediate insect resistance. Topics discussed include: the use of transgenics to functionally characterize candidate defense genes, the identification of novel defense mechanisms through mutant population screens, and genetical genomic approaches to link gene expression changes with genotypic variation.
机译:在对木质产品的需求不断增加的同时,显然需要保护森林生态系统的生态价值。最近的研究表明,可以通过使用生物技术提高或调整人工林的生产力来实现这些潜在的竞争目标。不幸的是,这种策略可能会受到森林害虫的阻碍,这些害虫对人工林的可持续性构成了挑战。在推进遗传改良或驯化树木以提高人工林生产力的同时,至关重要的是我们还必须确定控制害虫抗性和/或耐受机制的树木基因。在这方面,杨已成为被调查植物树与昆虫相互作用的模型被子树。近年来,许多研究已经利用基因组学的力量来生成大量的杨基因清单,这些清单可能有助于昆虫袭击后 Populus 的防御反应。然而,尽管取得了这些进展,但挑战仍然是如何将昆虫摄食引起的基因表达变化与对昆虫攻击的抗性或耐受性改变联系起来。在介绍了有关昆虫食草动物和杨防御的当前知识之后,概述了新兴的研究策略,这些战略旨在识别和测试直接介导昆虫抗性的防御基因的功能。讨论的主题包括:利用转基因在功能上表征候选防御基因,通过突变种群筛选鉴定新型防御机制,以及将基因表达变化与基因型变异联系起来的遗传基因组学方法。

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