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首页> 外文期刊>BMC Plant Biology >Genome-wide dynamic network analysis reveals the potential genes for MeJA-induced growth-to-defense transition
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Genome-wide dynamic network analysis reveals the potential genes for MeJA-induced growth-to-defense transition

机译:基因组 - 范围的动态网络分析揭示了Meja诱导的生长到防御转型的潜在基因

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摘要

Methyl jasmonate (MeJA), which has been identified as a lipid-derived stress hormone, mediates plant resistance to biotic/abiotic stress. Understanding MeJA-induced plant defense provides insight into how they responding to environmental stimuli. In this work, the dynamic network analysis method was used to quantitatively identify the tipping point of growth-to-defense transition and detect the associated genes. As a result, 146 genes were detected as dynamic network biomarker (DNB) members and the critical defense transition was identified based on dense time-series RNA-seq data of MeJA-treated Arabidopsis thaliana. The GO functional analysis showed that these DNB genes were significantly enriched in defense terms. The network analysis between DNB genes and differentially expressed genes showed that the hub genes including SYP121, SYP122, WRKY33 and MPK11 play a vital role in plant growth-to-defense transition. Based on the dynamic network analysis of MeJA-induced plant resistance, we provide an important guideline for understanding the growth-to-defense transition of plants’ response to environment stimuli. This study also provides a database with the key genes of plant defense induced by MeJA.
机译:已被鉴定为脂质衍生的应激激素的甲基茉莉酸酯(Meja)介导植物抗生物/非生物胁迫。了解Meja诱导的植物防御提供了深入了解如何应对环境刺激。在这项工作中,动态网络分析方法用于定量识别生长到防御转变的倾翻点并检测相关基因。结果,将146个基因被检测为动态网络生物标志物(DNB)构件,并且基于Meja治疗的拟南芥的致密时间序列RNA-SEQ数据鉴定了临界防御转变。 GO功能分析表明,这些DNB基因的防御术语显着富集。 DNB基因和差异表达基因之间的网络分析表明,包括SYP121,SYP122,WRKY33和MPK11在内的轮毂基因在植物生长到防御转变中起着至关重要的作用。基于Meja诱导的植物抗性的动态网络分析,我们提供了了解植物对环境刺激响应的生长对抗转型的重要指导。本研究还提供了一个数据库,其中包含Meja引起的植物防御的主要基因。

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