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首页> 外文期刊>BMC Plant Biology >Gene co-expression analysis of tomato seed maturation reveals tissue-specific regulatory networks and hubs associated with the acquisition of desiccation tolerance and seed vigour
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Gene co-expression analysis of tomato seed maturation reveals tissue-specific regulatory networks and hubs associated with the acquisition of desiccation tolerance and seed vigour

机译:番茄种子成熟的基因共表达分析揭示了与获取干燥耐受性和种子活力相关的组织特异性调节网络和集线器

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During maturation seeds acquire several physiological traits to enable them to survive drying and disseminate the species. Few studies have addressed the regulatory networks controlling acquisition of these traits at the tissue level particularly in endospermic seeds such as tomato, which matures in a fully hydrated environment and does not undergo maturation drying. Using temporal RNA-seq analyses of the different seed tissues during maturation, gene network and trait-based correlations were used to explore the transcriptome signatures associated with desiccation tolerance, longevity, germination under water stress and dormancy. During maturation, 15,173 differentially expressed genes were detected, forming a gene network representing 21 expression modules, with 3 being specific to seed coat and embryo and 5 to the endosperm. A gene-trait significance measure identified a common gene module between endosperm and embryo associated with desiccation tolerance and conserved with non-endospermic seeds. In addition to genes involved in protection such LEA and HSP and ABA response, the module included antioxidant and repair genes. Dormancy was released concomitantly with the increase in longevity throughout fruit ripening until 14?days after the red fruit stage. This was paralleled by an increase in SlDOG1–2 and PROCERA transcripts. The progressive increase in seed vigour was captured by three gene modules, one in common between embryo and endosperm and two tissue-specific. The common module was enriched with genes associated with mRNA processing in chloroplast and mitochondria (including penta- and tetratricopeptide repeat-containing proteins) and post-transcriptional regulation, as well several flowering genes. The embryo-specific module contained homologues of ABI4 and CHOTTO1 as hub genes associated with seed vigour, whereas the endosperm-specific module revealed a diverse set of processes that were related to genome stability, defence against pathogens and ABA/GA response genes. The spatio-temporal co-expression atlas of tomato seed maturation will serve as a valuable resource for the in-depth understanding of the dynamics of gene expression associated with the acquisition of seed vigour at the tissue level.
机译:在成熟的种子期间,获得几种生理性状,使它们能够生存干燥并传播物种。很少有研究已经解决了监管网络,控制组织水平的采集这些性状,特别是在番茄如番茄如番茄中,这在完全水合的环境中成熟并且不经历成熟干燥。使用在成熟期间不同种子组织的时间RNA-SEQ分析,基因网络和基于特征的相关性用于探索与干燥耐受性,寿命,水分胁迫和休眠的转录组特征。在成熟期间,检测到15,173个差异表达基因,形成代表21个表达模块的基因网络,3种特异性为种子涂层和胚胎和5至胚乳。基因特征意义测量鉴定了与干燥耐受性和用非胚胎种子保守的胚乳和胚胎之间的常见基因模块。除了参与保护此类lea和hsp和aba反应的基因外,该模块还包括抗氧化和修复基因。休眠伴随着随着果实成熟的寿命的增加,直到14℃下的寿命达到14天。这是通过SLOG1-2和PROCA转录物的增加并行。通过三种基因模块捕获种子活力的逐渐增加,其中胚胎和胚乳和两种组织特异性之间的共同。常见的模块富含与叶绿体中mRNA加工相关的基因,并且线粒体(包括含五肽和含有五肽醛醛蛋白)和转录后调节,以及几种开花基因。胚胎特异性模块含有ABI4和Chotto1的同源物,作为与种子活力相关的轮毂基因,而胚乳特异性模块揭示了与基因组稳定性,对抗病原体和ABA / GA反应基因的防御有关的各种过程。番茄种子成熟的时空共同表达阿特拉斯将作为对组织水平获取种子活力相关的基因表达动态的有价值的资源。

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