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首页> 外文期刊>Horticulture research. >Genome-wide transcriptome analysis reveals molecular pathways involved in leafy head formation of Chinese cabbage (Brassica rapa)
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Genome-wide transcriptome analysis reveals molecular pathways involved in leafy head formation of Chinese cabbage (Brassica rapa)

机译:基因组转录组分析揭示了大白菜(Brassica Rapa)的叶状头部形成的分子途径

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Chinese cabbage plants go through seedling and rosette stages before forming their leafy head. Chinese cabbage plants resemble pak-choi plants at their seedling stage, but in their rosette stage the leaves of Chinese cabbage differentiate, as they increase in size with shorter petioles. In order to understand the molecular pathways that play a role in leafy head formation, transcript abundance of young emerging leaves was profiled during development of two Chinese cabbage genotypes and a single pak-choi genotype. The two Chinese cabbages differed in many aspects, among others earliness, leaf size and shape, leaf numbers, and leafy head shape. Genome-wide transcriptome analysis clearly separated the seedling stages of all three genotypes together with the later stages from pak-choi, from the later developmental stages of both Chinese cabbages (rosette, folding, and heading). Weighted correlation network analysis and hierarchical clustering using Euclidean distances resulted in gene clusters with transcript abundance patterns distinguishing the two Chinese cabbages from pak-choi. Three clusters included genes with transcript abundance affected by both genotype and developmental stage, whereas two clusters showed only genotype effects. This included a genotype by developmental stage cluster highly enriched with the MapMan category photosynthesis, with high expression during rosette and folding in Chinese cabbages and low expression in the heading inner leaves that are not exposed to light. The other clusters contained many genes in the MapMan categories Cell, showing again differences between pak-choi and both Chinese cabbages. We discuss how this relates to the differences in leaf blade growth between Chinese cabbage and pak-choi, especially at the rosette stage. Overall, comparison of the transcriptome between leaves of two very different Chinese cabbages with pak-choi during plant development allowed the identification of specific gene categories associated with leafy head formation.? The Author(s) 2019.
机译:在形成他们的叶子头之前,大白菜植物通过幼苗和玫瑰花柱。大白菜植物在幼苗舞台上类似于Pak-Choi植物,但在他们的玫瑰花舞中,大白菜的叶子分化,因为它们的叶子较短。为了了解在叶形头部形成作用的分子途径,在两种大白菜基因型和单一的Pak-Choi基因型的开发过程中,在开发过程中进行了成绩单丰富的年轻新兴叶片。两种纸巾在许多方面不同,其中叶片尺寸和形状,叶子数和叶状头形状不同。基因组转录组分析清楚地将所有三种基因型的苗期与Pak-Choi的后期阶段分开,来自中国卷心菜(玫瑰华莲,折叠和标题)的后期发育阶段。使用欧几里德距离的加权相关网络分析和分层聚类导致基因集群与抄本丰富模式区分来自pak-choi的两种汉语。三种簇包括受基因型和发育阶段影响的转录物丰度的基因,而两种簇仅显示基因型效应。这包括由高度丰富的Mapman类别光合作用的发育阶段集群的基因型,在莲座丛和中纸巾中的褶皱和折叠中的折叠内部叶片中的低表达,这些内叶未暴露在光线中。其他簇包含Mapman类别单元中的许多基因,在Pak-Choi和中文卷心菜之间再次显示差异。我们讨论了如何涉及大白菜和Pak-choi之间的叶片生长的差异,特别是在玫瑰华饰阶段。总体而言,在植物开发期间将两种非常不同的中腹腔之间的转录组的转录组的比较允许鉴定与叶子头形成相关的特定基因类别。作者2019年。

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