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首页> 外文期刊>Frontiers in Plant Science >Transcriptome and Differential Expression Profiling Analysis of the Mechanism of Ca2+ Regulation in Peanut (Arachis hypogaea) Pod Development
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Transcriptome and Differential Expression Profiling Analysis of the Mechanism of Ca2+ Regulation in Peanut (Arachis hypogaea) Pod Development

机译:花生荚果发育中Ca2 +调节机制的转录组和差异表达谱分析

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Calcium not only serves as a necessary nutrient for plant growth but also acts as a ubiquitous central hub in a large number of signaling pathways. Free Ca2+ deficiency in the soil may cause early embryo abortion, which eventually led to abnormal development of peanut pod during the harvest season. To understand the mechanisms of Ca2+ regulation in pod development, transcriptome analysis of peanut gynophores and pods was performed by comparing the treatments between free Ca2+ sufficiency and free Ca2+ deficiency using Illumina HiSeq? 2000. 9,903,082,800 nt bases are generated totally. After assembly, the average length of 102,819 unigenes is 999 nt, N50 is 1,782 nt. RNA-seq based gene expression profilings showed a large number of genes at the transcriptional level changed significantly between the aerial pegs and underground swelling pods under free Ca2+ sufficienct or deficiency treatments, respectively. Genes encoding key members of Ca2+ signaling transduction pathway, enzymes for hormone metabolism, cell division and growth, transcriptional factor as well as embryo development were highlighted. This information provides useful information for our further study. The results of digital gene expression (DGE) indicated that exogenous calcium might contribute to the development of peanut pod through its signal transduction pathway, meanwhile, promote the normal transition of the gynophores to the reproductive development.
机译:钙不仅是植物生长的必需营养素,而且在许多信号传导途径中也作为普遍存在的中心枢纽。土壤中游离的Ca2 +缺乏症可能会导致早期胚胎流产,最终导致收获季节花生荚的异常发育。为了了解Ca2 +调节荚果发育的机制,通过比较使用Illumina HiSeq?的游离Ca2 +充足性和游离Ca2 +缺乏性之间的处理,对花生回枝和荚果进行了转录组分析。 2000。总共产生了9,903,082,800 nt个碱基。组装后,102,819个单基因的平均长度为999 nt,N50为1,782 nt。基于RNA-seq的基因表达谱显示,在游离Ca2 +充分处理或缺乏处理下,气生栓和地下膨大豆荚之间的转录水平上的大量基因分别发生了显着变化。强调了编码Ca2 +信号转导途径的关键成员,激素代谢酶,细胞分裂和生长,转录因子以及胚胎发育的基因。这些信息为我们的进一步研究提供了有用的信息。数字基因表达(DGE)的结果表明,外源钙可能通过其信号转导途径促进花生荚的发育,同时也促进了背突向生殖发育的正常过渡。

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