首页> 外文期刊>农业科学学报:英文版 >Discovery of leaf region and time point related modules and genes in maize(Zea mays L.)leaves by Weighted Gene Co-expression Network analysis(WGCNA)of gene expression profiles of carbon metabolism
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Discovery of leaf region and time point related modules and genes in maize(Zea mays L.)leaves by Weighted Gene Co-expression Network analysis(WGCNA)of gene expression profiles of carbon metabolism

机译:碳代谢基因表达谱的加权基因共表达网络分析(WGCNA)发现玉米叶片中的叶区域和时间点相关模块及基因

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摘要

Maize(Zea mays L.) yield depends not only on the conversion and accumulation of carbohydrates in kernels, but also on the supply of carbohydrates by leaves. However, the carbon metabolism process in leaves can vary across different leaf regions and during the day and night. Hence, we used Weighted Gene Co-expression Network analysis(WGCNA) with the gene expression profiles of carbon metabolism to identify the modules and genes that may associate with particular regions in a leaf and time of day. There were a total of 45 samples of maize leaves that were taken from three different regions of a growing maize leaf at five time points. Robust Multi-array Average analysis was used to pre-process the raw data of GSE85963(accession number), and quality control of data was based on Pearson correlation coefficients. We obtained eight co-expression network modules. The modules with the highest significance of association with LeafRegion and TimePoint were selected. Functional enrichment and gene-gene interaction analyses were conducted to acquire the hub genes and pathways in these significant modules. These results can support the findings of similar studies by providing evidence of potential module genes and enriched pathways associated with leaf development in maize.
机译:玉米(Zea mays L.)的产量不仅取决于碳水化合物在谷粒中的转化和积累,还取决于叶片对碳水化合物的供应。但是,叶片的碳代谢过程可能会在不同的叶片区域以及白天和黑夜变化。因此,我们将加权基因共表达网络分析(WGCNA)与碳代谢的基因表达谱一起使用,以确定可能与叶片和一天中特定区域关联的模块和基因。在五个时间点从生长中的玉米叶片的三个不同区域中采集了总共45份玉米叶片样品。采用稳健的多阵列平均分析对GSE85963的原始数据(登录号)进行预处理,并基于Pearson相关系数对数据进行质量控制。我们获得了八个共表达网络模块。选择了与LeafRegion和TimePoint相关联的重要性最高的模块。进行功能富集和基因-基因相互作用分析以获取这些重要模块中的集线器基因和途径。这些结果通过提供与玉米叶片发育相关的潜在模块基因和丰富途径的证据,可以支持类似研究的结果。

著录项

  • 来源
    《农业科学学报:英文版》 |2019年第002期|P.350-360|共11页
  • 作者单位

    [1]Beijing Key Lab of Digital Plant/Beijing Research Center for Information Technology in Agriculture/National Engineering Research Center for Information Technology in Agriculture/Beijing Academy of Agriculture and Forestry Sciences,Beijing 100097,P.R.China;

    [1]Beijing Key Lab of Digital Plant/Beijing Research Center for Information Technology in Agriculture/National Engineering Research Center for Information Technology in Agriculture/Beijing Academy of Agriculture and Forestry Sciences,Beijing 100097,P.R.China;

    [1]Beijing Key Lab of Digital Plant/Beijing Research Center for Information Technology in Agriculture/National Engineering Research Center for Information Technology in Agriculture/Beijing Academy of Agriculture and Forestry Sciences,Beijing 100097,P.R.China;

    [1]Beijing Key Lab of Digital Plant/Beijing Research Center for Information Technology in Agriculture/National Engineering Research Center for Information Technology in Agriculture/Beijing Academy of Agriculture and Forestry Sciences,Beijing 100097,P.R.China;

    [1]Beijing Key Lab of Digital Plant/Beijing Research Center for Information Technology in Agriculture/National Engineering Research Center for Information Technology in Agriculture/Beijing Academy of Agriculture and Forestry Sciences,Beijing 100097,P.R.China;

    [1]Beijing Key Lab of Digital Plant/Beijing Research Center for Information Technology in Agriculture/National Engineering Research Center for Information Technology in Agriculture/Beijing Academy of Agriculture and Forestry Sciences,Beijing 100097,P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 玉米(玉蜀黍);
  • 关键词

    WGCNA; maize leaf; gene expression; gene modules; pathways;

    机译:WGCNA;玉米叶;基因表达;基因模块;途径;
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