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首页> 外文期刊>BMC Plant Biology >Ubiquitin-related genes are differentially expressed in isogenic lines contrasting for pericarp cell size and grain weight in hexaploid wheat
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Ubiquitin-related genes are differentially expressed in isogenic lines contrasting for pericarp cell size and grain weight in hexaploid wheat

机译:泛素相关的基因在肝癌细胞尺寸和六倍体小麦中的果皮细胞尺寸和谷粒重量对比中差异表达

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摘要

There is an urgent need to increase global crop production. Identifying and combining specific genes controlling distinct biological processes holds the potential to enhance crop yields. Transcriptomics is a powerful tool to gain insights into the complex gene regulatory networks that underlie such traits, but relies on the availability of a high-quality reference sequence and accurate gene models. Previously, we identified a grain weight QTL on wheat chromosome 5A (5A QTL) which acts during early grain development to increase grain length through cell expansion in the pericarp. In this study, we performed RNA-sequencing on near isogenic lines (NILs) segregating for the 5A QTL and used the latest gene models to identify differentially regulated genes and pathways that potentially influence pericarp cell size and grain weight in wheat. We sampled grains at 4 and 8?days post anthesis and found that genes associated with metabolism, biosynthesis, proteolysis and the defence response are upregulated during this stage of grain development in both NILs. We identified a specific set of 112 transcripts differentially expressed (DE) between 5A NILs at either time point, including eight potential candidates for the causal 5A gene and its downstream targets. The 112 DE transcripts had functional annotations including non-coding RNA, transposon-associated, cell-cycle control, ubiquitin-related, heat-shock, transcription and histone-related. Many of the genes identified belong to families that have been previously associated with seed/grain development in other species. Notably, we identified DE transcripts at almost all steps of the pathway associated with ubiquitin-mediated protein degradation. In the promoters of a subset of DE transcripts we identified enrichment of binding sites associated with C2H2, MYB/SANT, YABBY, AT-HOOK and Trihelix transcription factor families. In this study, we identified DE transcripts with a diverse range of predicted biological functions, reflecting the complex nature of the pathways that control early grain development. Few of these are the direct orthologues of grain size genes in other species and none have been previously characterised in wheat. Further functional characterisation of these candidates and how they interact will provide novel insights into the control of grain size in cereals.
机译:迫切需要增加全球作物生产。鉴定和组合控制不同生物过程的特定基因具有增强作物产量的可能性。转录组织是一种强大的工具,可以进入基因监管网络的洞察,该网络利用这种特征,而是依赖于高质量参考序列和准确基因模型的可用性。以前,我们鉴定了在小麦染色体5a(5a qt1)上的谷物重量qt1,其在早期晶粒发育中作用,以通过果皮中的细胞膨胀增加粒度。在这项研究中,我们对5A QTL进行了近的中源性线(NIL)进行了RNA测序,并使用了最新的基因模型来鉴定差异调节的基因和途径,这些基因和途径可能影响小麦中的果皮细胞尺寸和粒重。我们在开花后4和8天采样谷物,发现与代谢,生物合成,蛋白水解和防御反应相关的基因在这两种液滴中的谷物发育中的阶段是上调的。我们鉴定了差异表达(DE)在5A含量的差异表达(DE)的特定112份转录物,其中包括因果5A基因的八个潜在候选物及其下游靶标。 112名转录物具有功能注释,包括非编码RNA,转座子相关,细胞周期控制,泛素相关,热冲击,转录和组蛋白相关的。鉴定的许多基因属于先前与其他物种种子/晶体发育相关的家庭。值得注意的是,我们在与泛素介导的蛋白质降解相关的途径几乎所有步骤中鉴定了De转录物。在De转录物副本的启动子中,我们鉴定了与C2H2,MYB / SANT,YABBY,AT-HOOK和TRIHELIX转录因子家族相关的结合位点的富集。在这项研究中,我们确定了具有多种预测的生物学功能的成绩单,反映了控制早期籽粒发育的途径的复杂性。其中少数是其他物种中晶粒尺寸基因的直接正交,并且以前没有以小麦特征。这些候选人的进一步职能表征以及它们的互动将如何为谷物中的晶粒尺寸控制提供新的见解。

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