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综合转录组分析鉴定出与小麦细胞壁、粒重和产量相关的关键扩张蛋白基因。

Integrated Transcriptome Analysis Identified Key Expansin Genes Associated with Wheat Cell Wall, Grain Weight and Yield.

作者信息

Mira Juan P, Arenas-M Anita, Calderini Daniel F, Canales Javier

机构信息

Instituto de Bioquímica y Microbiología, Facultad de Ciencias, Universidad Austral de Chile, Valdivia 5110566, Chile.

ANID-Millennium Science Initiative Program-Millennium Institute for Integrative Biology (iBio), Santiago 8331150, Chile.

出版信息

Plants (Basel). 2023 Aug 4;12(15):2868. doi: 10.3390/plants12152868.

Abstract

This research elucidates the dynamic expression of expansin genes during the wheat grain ( L.) development process using comprehensive meta-analysis and experimental validation. We leveraged RNA-seq data from multiple public databases, applying stringent criteria for selection, and identified 60,852 differentially expressed genes across developmental stages. From this pool, 28,558 DEGs were found to exhibit significant temporal regulation in at least two different datasets and were enriched for processes integral to grain development such as carbohydrate metabolism and cell wall organization. Notably, 30% of the 241 known expansin genes showed differential expression during grain growth. Hierarchical clustering and expression level analysis revealed temporal regulation and distinct contributions of expansin subfamilies during the early stages of grain development. Further analysis using co-expression networks underscored the significance of expansin genes, revealing their substantial co-expression with genes involved in cell wall modification. Finally, qPCR validation and grain morphological analysis under field conditions indicated a significant negative correlation between the expression of select expansin genes, and grain size and weight. This study illuminates the potential role of expansin genes in wheat grain development and provides new avenues for targeted genetic improvements in wheat.

摘要

本研究通过全面的荟萃分析和实验验证,阐明了小麦籽粒发育过程中扩张蛋白基因的动态表达。我们利用来自多个公共数据库的RNA测序数据,应用严格的选择标准,在不同发育阶段鉴定出60852个差异表达基因。其中,28558个差异表达基因在至少两个不同数据集中表现出显著的时间调控,并富集于籽粒发育的重要过程,如碳水化合物代谢和细胞壁组织。值得注意的是,241个已知扩张蛋白基因中有30%在籽粒生长过程中表现出差异表达。层次聚类和表达水平分析揭示了籽粒发育早期扩张蛋白亚家族的时间调控和不同贡献。利用共表达网络进行的进一步分析强调了扩张蛋白基因的重要性,揭示了它们与参与细胞壁修饰的基因大量共表达。最后,田间条件下的qPCR验证和籽粒形态分析表明,特定扩张蛋白基因的表达与籽粒大小和重量之间存在显著负相关。本研究阐明了扩张蛋白基因在小麦籽粒发育中的潜在作用,并为小麦的定向遗传改良提供了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/646b/10421294/7a83120695ee/plants-12-02868-g001.jpg

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