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Deep sequencing analysis of the transcriptomes of peanut aerial and subterranean young pods identifies candidate genes related to early embryo abortion

机译:花生气生和地下幼荚的转录组的深度测序分析确定了与早期胚胎流产相关的候选基因

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The failure of peg penetration into the soil leads to seed abortion in peanut. Knowledge of genes involved in these processes is comparatively deficient. Here, we used RNA?¢????seq to gain insights into transcriptomes of aerial and subterranean pods. More than 2 million transcript reads with an average length of 396????bp were generated from one aerial (AP) and two subterranean (SP1 and SP2) pod libraries using pyrosequencing technology. After assembly, sets of 49????632, 49????952 and 50????494 from a total of 74????974 transcript assembly contigs (TACs) were identified in AP, SP1 and SP2, respectively. A clear linear relationship in the gene expression level was observed between these data sets. In brief, 2194 differentially expressed TACs with a 99.0% true?¢????positive rate were identified, among which 859 and 1068 TACs were up?¢????regulated in aerial and subterranean pods, respectively. Functional analysis showed that putative function based on similarity with proteins catalogued in UniProt and gene ontology term classification could be determined for 59????342 (79.2%) and 42????955 (57.3%) TACs, respectively. A total of 2968 TACs were mapped to 174 KEGG pathways, of which 168 were shared by aerial and subterranean transcriptomes. TACs involved in photosynthesis were significantly up?¢????regulated and enriched in the aerial pod. In addition, two senescence?¢????associated genes were identified as significantly up?¢????regulated in the aerial pod, which potentially contribute to embryo abortion in aerial pods, and in turn, to cessation of swelling. The data set generated in this study provides evidence for some functional genes as robust candidates underlying aerial and subterranean pod development and contributes to an elucidation of the evolutionary implications resulting from fruit development under light and dark conditions.
机译:钉子不能穿透土壤会导致花生种子流产。与这些过程有关的基因知识相对缺乏。在这里,我们使用RNA序列来深入了解空中和地下荚果的转录组。使用焦磷酸测序技术从一个天线(AP)和两个地下(SP1和SP2)吊舱库中生成了超过200万个平均396 bpbp的转录本读段。组装后,在AP,SP1和SP2中从总共74个974转录本重叠群(TAC)中识别出49个632、49 952和50 494个集合,分别。这些数据集之间观察到基因表达水平的明确线性关系。简而言之,鉴定出2194个差异表达的TAC,其真实阳性率为99.0%,其中在空中和地下荚中分别调节了859个和1068个TAC。功能分析表明,基于与UniProt中分类的蛋白质相似性和基因本体术语分类的推定功能可以分别确定59〜342(79.2%)和42〜955(57.3%)TAC。总共2968个TAC被定位到174个KEGG途径,其中168个由空中和地下转录组共享。参与光合作用的TAC明显上调,并在气荚中富集。此外,鉴定出两个衰老相关基因在气荚中显着上调,这可能导致气荚中的胚胎流产,进而导致肿胀的停止。在这项研究中产生的数据集提供了一些功能基因的证据,这些功能基因是潜在的空中和地下荚果发育的候选者,并有助于阐明在黑暗和黑暗条件下果实发育所产生的进化意义。

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