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Pod-shattering characteristics differences between two groups of soybeans are associated with specific changes in gene expression

机译:两组大豆之间的碎片破碎特性差异与基因表达的特定变化有关

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Soybean is an economically important leguminous crop, and pod dehiscence of soybean could cause huge yield loss. In this study, we measured fruit-cracking forces and percentages of dehisced pods for ten soybean accessions, then separated them into two groups as shattering-sensitive (SS) and shattering-resistant (SR) soybeans. Pod transcriptomes from these two groups were analyzed, and 225 differentially expressed genes (DEGs) were identified between SS and SR soybeans. Some of these DEGs have been previously reported to be associated with pod dehiscence in soybean. The expression patterns of selected DEGs were validated by real-time quantitative reverse transcription PCR, which confirmed the expression changes found in RNA-seq analysis. We also de novo identified 246 soybean pod-long intergenic ncRNAs (lincRNAs), 401 intronic lncRNAs, and 23 antisense lncRNAs from these transcriptomes. Furthermore, genes and lincRNAs co-expression network analysis showed that there are distinct expression patterns between SS and SR soybeans in some co-expression modules. In conclusion, we systematically investigated potential genes and molecular pathways as candidates for differences in soybean pod dehiscence and will provide a useful resource for molecular breeding of soybeans.
机译:大豆是一种经济上重要的肉豆蔻作物,大豆的豆荚裂开可能导致巨大的产量损失。在这项研究中,我们测量了十种大豆浸出的果实开裂力和裂缝荚的百分比,然后将它们分成两组作为破碎敏感(SS)和抗破碎(SR)大豆。分析来自这两组的POD转录om,并且在SS和SR大豆之间鉴定了225个差异表达基因(DEGS)。以前据报道,其中一些可与大豆的豆荚裂缝相关联。通过实时定量逆转录PCR验证所选DEG的表达模式,其证实了在RNA-SEQ分析中发现的表达变化。我们还鉴定了来自这些转录om的Novo鉴定了246个豆荚长长期性NCRNA(Lincrnas),401 inncron-LncrNA和23个反义LNCRNA。此外,基因和LincRNA共表达网络分析表明,一些共表达模块中的SS和SR大豆之间存在不同的表达模式。总之,我们系统地研究了潜在的基因和分子途径,作为大豆荚裂解的差异,并将提供大豆分子育种的有用资源。

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