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利用 WGCNA 进行玉米幼苗低温响应的枢纽基因挖掘和共表达网络构建。

Hub Gene Mining and Co-Expression Network Construction of Low-Temperature Response in Maize of Seedling by WGCNA.

机构信息

Maize Research Institute of Heilongjiang Academy of Agricultural Sciences, Harbin 150086, China.

Key Laboratory of Biology and Genetics Improvement of Maize in Northern Northeast Region, Ministry of Agriculture and Rural Affairs, Harbin 150086, China.

出版信息

Genes (Basel). 2023 Aug 7;14(8):1598. doi: 10.3390/genes14081598.

Abstract

Weighted gene co-expression network analysis (WGCNA) is a research method in systematic biology. It is widely used to identify gene modules related to target traits in multi-sample transcriptome data. In order to further explore the molecular mechanism of maize response to low-temperature stress at the seedling stage, B144 (cold stress tolerant) and Q319 (cold stress sensitive) provided by the Maize Research Institute of Heilongjiang Academy of Agricultural Sciences were used as experimental materials, and both inbred lines were treated with 5 °C for 0 h, 12 h, and 24 h, with the untreated material as a control. Eighteen leaf samples were used for transcriptome sequencing, with three biological replicates. Based on the above transcriptome data, co-expression networks of weighted genes associated with low-temperature-tolerance traits were constructed by WGCNA. Twelve gene modules significantly related to low-temperature tolerance at the seedling stage were obtained, and a number of hub genes involved in low-temperature stress regulation pathways were discovered from the four modules with the highest correlation with target traits. These results provide clues for further study on the molecular genetic mechanisms of low-temperature tolerance in maize at the seedling stage.

摘要

加权基因共表达网络分析(WGCNA)是系统生物学中的一种研究方法。它被广泛用于在多样本转录组数据中识别与目标性状相关的基因模块。为了进一步探索玉米幼苗期低温胁迫响应的分子机制,本研究以黑龙江农业科学院玉米研究所提供的 B144(耐冷)和 Q319(敏感)自交系为实验材料,分别在 5°C 下处理 0 h、12 h 和 24 h,以未处理的材料作为对照。共采集 18 个叶片样本进行转录组测序,每个样本重复 3 次。基于上述转录组数据,利用 WGCNA 构建了与低温耐性性状相关的加权基因共表达网络。共获得 12 个与低温耐性显著相关的基因模块,并从与目标性状相关性最高的 4 个模块中发现了一些参与低温胁迫调控途径的枢纽基因。这些结果为进一步研究玉米幼苗期低温耐性的分子遗传机制提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa48/10454290/8d91439265b4/genes-14-01598-g001.jpg

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