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对转录组进行偏相关分析有助于理清云杉的生长和防御网络。

Partial correlation analysis of transcriptomes helps detangle the growth and defense network in spruce.

机构信息

Département des Sciences du Bois et de la Forêt, Institut de Biologie Intégrative et des Systèmes, Université Laval, Québec, QC, G1V 0A6, Canada.

Department of Forest and Conservation Sciences, University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.

出版信息

New Phytol. 2018 Jun;218(4):1349-1359. doi: 10.1111/nph.15075. Epub 2018 Mar 5.

Abstract

In plants, there can be a trade-off between resource allocations to growth vs defense. Here, we use partial correlation analysis of gene expression to make inferences about the nature of this interaction. We studied segregating progenies of Interior spruce subject to weevil attack. In a controlled experiment, we measured pre-attack plant growth and post-attack damage with several morphological measures, and profiled transcriptomes of 188 progeny. We used partial correlations of individual transcripts (expressed sequence tags, ESTs) with pairs of growth/defense traits to identify important nodes and edges in the inferred underlying gene network, for example, those pairs of growth/defense traits with high mutual correlation with a single EST transcript. We give a method to identify such ESTs. A terpenoid ABC transporter gene showed strongest correlations (P = 0.019); its transcript represented a hub within the compact 166-member gene-gene interaction network (P = 0.004) of the negative genetic correlations between growth and subsequent pest attack. A small 21-member interaction network (P = 0.004) represented the uncovered positive correlations. Our study demonstrates partial correlation analysis identifies important gene networks underlying growth and susceptibility to the weevil in spruce. In particular, we found transcripts that strongly modify the trade-off between growth and defense, and allow identification of networks more central to the trade-off.

摘要

在植物中,资源分配在生长和防御之间可能存在权衡。在这里,我们使用基因表达的偏相关分析来推断这种相互作用的性质。我们研究了受象鼻虫攻击的内部云杉的分离后代。在一项对照实验中,我们用几种形态测量方法测量了攻击前的植物生长和攻击后的损伤,并对 188 个后代的转录组进行了分析。我们使用个体转录物(表达序列标签,EST)与生长/防御性状对的偏相关来识别推断的基础基因网络中的重要节点和边缘,例如,那些与单个 EST 转录物具有高相互相关性的生长/防御性状对。我们给出了一种识别这种 EST 的方法。一种萜烯 ABC 转运蛋白基因显示出最强的相关性(P=0.019);它的转录本代表了在生长和随后的虫害攻击之间的负遗传相关性的 166 个成员基因-基因相互作用网络(P=0.004)中的一个枢纽。一个小的 21 个成员的相互作用网络(P=0.004)代表了未被发现的正相关。我们的研究表明,偏相关分析确定了云杉中生长和对象鼻虫易感性的重要基因网络。特别是,我们发现了那些强烈改变生长和防御之间权衡的转录本,并允许鉴定更接近权衡的网络。

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