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Quantitative Changes in the Transcription of Phytohormone-Related Genes: Some Transcription Factors Are Major Causes of the Wheat Mutant dmc Not Tillering

机译:植物激素相关基因转录的定量变化:一些转录因子是小麦突变体DMC未分蘖的主要原因

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摘要

Tiller number is an important agronomic trait for grain yield of wheat (Triticum aestivum L.). A dwarf-monoculm wheat mutant (dmc) was obtained from cultivar Guomai 301 (wild type, WT). Here, we explored the molecular basis for the restrained tiller development of the mutant dmc. Two bulked samples of the mutant dmc (T1, T2 and T3) and WT (T4, T5 and T6) with three biological replicates were comparatively analyzed at the transcriptional level by bulked RNA sequencing (RNA-Seq). In total, 68.8 Gb data and 463 million reads were generated, 80% of which were mapped to the wheat reference genome of Chinese Spring. A total of 4904 differentially expressed genes (DEGs) were identified between the mutant dmc and WT. DEGs and their related major biological functions were characterized based on GO (Gene Ontology) and KEGG (Kyoto Encyclopedia of Genes and Genomes) categories. These results were confirmed by quantitatively analyzing the expression profiles of twelve selected DEGs via real-time qRT-PCR. The down-regulated gene expressions related to phytohormone syntheses of auxin, zeatin, cytokinin and some transcription factor (TF) families of TALE, and WOX might be the major causes of the mutant dmc, not tillering. Our work provides a foundation for subsequent tiller development research in the future.
机译:分蘖数是小麦籽粒产量(Triticum aestivum L)的重要农艺性状。从品种Guomai 301(野生型,WT)中获得Dwarf-monoculm小麦突变体(DMC)。在这里,我们探讨了突变DMC的抑制分蘖发育的分子基础。通过粗体的RNA测序(RNA-SEQ)在转录水平上比较分析具有三种生物学重复的突变DMC(T1,T2和T3)和WT(T4,T5和T6)的两种膨胀样品。总共产生了68.8 GB的数据和463万读数,其中80%被映射到中国春天的小麦参考基因组。在突变DMC和WT之间鉴定了总共4904个差异表达基因(DEGS)。基于Go(基因本体论)和Kegg(基因和基因组的Kyoto Encyclopia)类别,表征了Degs及其相关的主要生物功能。通过定量分析通过实时QRT-PCR定量分析12个选择的Degs的表达谱来证实这些结果。与植物激素,Zeepin,细胞蛋白和一些转录因子(TF)的故事和WOX相关的下调基因表达,并且WOX可能是突变DMC,而不是分蘖的主要原因。我们的工作为未来后续耕作开发研究提供了基础。

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