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首页> 外文期刊>Critical Reviews in Plant Sciences >Genomics of secondary metabolism in Populus: interactions with biotic and abiotic environments. (Special Issue: Poplar community genomics.)
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Genomics of secondary metabolism in Populus: interactions with biotic and abiotic environments. (Special Issue: Poplar community genomics.)

机译:青杨次生代谢的基因组学:与生物和非生物环境的相互作用。 (特刊:杨树群落基因组学。)

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摘要

Populus trees face constant challenges from the environment during their life cycle. To ensure their survival and reproduction, Populus trees deploy various types of defenses, one of which is the production of a myriad of secondary metabolites. Compounds derived from the shikimate-phenylpropanoid pathway are the most abundant class of secondary metabolites synthesized in Populus. Among other major classes of secondary metabolites in Populus are terpenoids and fatty acid-derivatives. Some of the secondary metabolites made by Populus trees have been functionally characterized. Some others have been associated with certain biological/ecological processes, such as defense against insects and microbial pathogens or acclimation or adaptation to abiotic stresses. Functions of many Populus secondary metabolites remain unclear. The advent of various novel genomic tools will enable us to explore in greater detail the complexity of secondary metabolism in Populus. Detailed data mining of the Populus genome sequence can unveil candidate genes of secondary metabolism. Metabolomic analysis will continue to identify new metabolites synthesized in Populus. Integrated genomics that combines various 'omics' tools will prove to be the most powerful approach in revealing the molecular and biochemical basis underlying the biosynthesis of secondary metabolites in Populus. Characterization of the biological/ecological functions of secondary metabolites as well as their biosynthesis will provide knowledge and tools for genetically engineering the production of secondary metabolites that can lead to the generation of novel, improved Populus varieties.
机译:杨树的生命周期面临着来自环境的持续挑战。为了确保它们的生存和繁殖,杨树部署了各种类型的防御措施,其中之一是产生大量的次级代谢产物。衍生自the草酸-苯丙烷途径的化合物是杨中合成的最丰富的次级代谢产物。 i中的次要代谢产物的其他主要类别是萜类化合物和脂肪酸衍生物。由杨树产生的一些次生代谢产物已得到功能鉴定。其他一些与某些生物学/生态过程有关,例如对昆虫和微生物病原体的防御或对非生物胁迫的适应或适应。许多杨次生代谢产物的功能仍不清楚。各种新颖的基因组学工具的出现将使我们能够更详细地探索杨中次生代谢的复杂性。对杨基因组序列的详细数据挖掘可以揭示次级代谢的候选基因。代谢组学分析将继续鉴定在杨属中合成的新代谢产物。结合各种“组学”工具的整合基因组学将被证明是揭示杨中次生代谢产物生物合成基础的分子和生化基础的最有效方法。次级代谢物的生物学/生态功能及其生物合成的表征将为遗传工程改造次级代谢物的生产提供知识和工具,这些知识和工具可导致产生新的改良的杨树变种。

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