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耦合序列特异性牛血清白蛋白(Seq-BSA)和RNA测序(RNA-Seq)分析揭示了大白菜抽薹类型相关的分子途径和基因。

Coupling Seq-BSA and RNA-Seq Analyses Reveal the Molecular Pathway and Genes Associated with Heading Type in Chinese Cabbage.

作者信息

Gu AiXia, Meng Chuan, Chen YueQi, Wei Lai, Dong Hui, Lu Yin, Wang YanHua, Chen XuePing, Zhao JianJun, Shen ShuXing

机构信息

Key Laboratory of Vegetable Germplasm Innovation and Utilization of Hebei, Collaborative Innovation Center of Vegetable Industry in Hebei, College of Horticulture, Hebei Agricultural University, Baoding, China.

Economic Crop Research Institute, Hebei Academy of Agriculture and Forestry Sciences, Shijiazhuang, China.

出版信息

Front Genet. 2017 Dec 12;8:176. doi: 10.3389/fgene.2017.00176. eCollection 2017.

Abstract

In Chinese cabbage, heading type is a key agricultural trait of significant economic importance. Using a natural microspore-derived doubled haploid plant, we generated self-crossed progeny with overlapping or outward curling head morphotypes. Sequencing-based bulked segregant analysis (Seq-BSA) revealed a candidate region of 0.52 Mb (A06: 1,824,886~2,347,097 bp) containing genes enriched for plant hormone signal transduction. RNA Sequencing (RNA-Seq) analysis supported the hormone pathway enrichment leading to the identification of two key candidate genes, and . The regulated homologous genes and the relationship between genes in this pathway were also revealed. Expression of varied significantly in the apical portion of the leaf, consistent with the morphological differences between overlapping and outward curling leaves. Transcript levels of in the top, middle and basal segments of the leaf were significantly different between the two types. The two morphotypes contained different concentrations of IAA in the apical portion of their leaves while levels of ABA differed significantly between plant types in the top, middle, and basal leaf segments. Results from Seq-BSA, RNA-Seq and metabolite analyses all support a role for IAA and ABA in heading type formation. These findings increase our understanding of the molecular basis for pattern formation of the leafy head in Chinese cabbage and will contribute to future work developing more desirable leafy head patterns.

摘要

在大白菜中,结球类型是一个具有重要经济意义的关键农艺性状。利用一株自然小孢子加倍单倍体植株,我们获得了具有重叠或外卷结球形态类型的自交后代。基于测序的混合分离群体分析法(Seq-BSA)揭示了一个0.52 Mb的候选区域(A06: 1,824,886~2,347,097 bp),该区域包含富集于植物激素信号转导的基因。RNA测序(RNA-Seq)分析支持激素途径富集,从而鉴定出两个关键候选基因, 和 。还揭示了该途径中受调控的同源基因以及基因之间的关系。 在叶片顶端部分的表达差异显著,这与重叠叶和外卷叶之间的形态差异一致。在两种类型之间,叶片顶部、中部和基部节段中 的转录水平存在显著差异。两种形态类型在叶片顶端部分含有不同浓度的生长素(IAA),而脱落酸(ABA)水平在叶片顶部、中部和基部节段的不同植株类型之间差异显著。Seq-BSA、RNA-Seq和代谢物分析结果均支持IAA和ABA在结球类型形成中的作用。这些发现增进了我们对大白菜叶球形态形成分子基础的理解,并将有助于未来培育更理想叶球形态的工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91c7/5733010/c64887178919/fgene-08-00176-g0001.jpg

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