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Transcriptome Analyses Reveal Candidate Pod Shattering-Associated Genes Involved in the Pod Ventral Sutures of Common Vetch (Vicia sativa L.)

机译:转录组分析揭示了与普通紫etch荚果缝线有关的候选荚果破碎相关基因。

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摘要

The seed dispersion caused by pod shattering is a form of propagation used by many wild species. Loss of seeds from pod shattering is frequent in the common vetch (Vicia sativa L.), an important self-pollinating annual forage legume. However, pod shattering is one of the most important defects that limits the reproduction of the vetch in the field and the usage as a leguminous forage crop. To better understand the vetch pod shattering mechanism, we used high-throughput RNA sequencing to assess the global changes in the transcriptomes of the pod ventral sutures of shattering-susceptible and shattering-resistant vetch accessions screened from 541 vetch germplasms. A total of 1,285 significantly differentially expressed unigenes (DEGs) were detected, including 575 up-regulated unigenes and 710 down-regulated unigenes. Analyses of Gene Ontology and KEGG metabolic enrichment pathways of 1,285 DEGs indicated that 22 DEGs encoding cell wall modifications and hydrolases associated with pod shattering were highly expressed in shattering-susceptible accessions. These genes were mainly enriched in “hydrolase activity,” “cytoplasm,” and “carbohydrate metabolic process” systems. These cell wall modifications and hydrolases genes included β-glucosidase and endo-polygalacturonase, which work together to break down the glycosidic bonds of pectin and cellulose, and to promote the dissolution and disappearance of the cell wall in the ventral suture of the pod and make the pod more susceptible to shattering. We demonstrated the differences in gene transcription levels between the shattering-susceptible and shattering-resistant vetch accessions for the first time and our results provided valuable information for the identifying and characterizing of pod shattering regulation networks in vetch. This information may facilitate the future identification of pod shattering-related genes and their underlying molecular mechanisms in the common vetch.
机译:由荚果破碎引起的种子分散是许多野生物种使用的一种繁殖形式。荚v破碎(普通豌豆(Vicia sativa L.))是豆荚破碎的重要种子,是自花授粉的一种重要的自花授粉植物。但是,荚果破碎是最重要的缺陷之一,它限制了野豌豆在田间的繁殖以及作为豆科饲料作物的用途。为了更好地了解v豆荚的破碎机制,我们使用高通量RNA测序来评估从541个etch豆种质中筛选出的易碎性和抗摔性紫etch种质的荚果腹壁缝线的转录组的总体变化。总共检测到1,285个显着差异表达的单基因(DEG),包括575个上调的单基因和710个下调的单基因。对1,285个DEG的基因本体论和KEGG代谢富集途径的分析表明,编码22个与荚果破碎相关的细胞壁修饰和水解酶的DEGs在易碎性材料中高度表达。这些基因主要富含“水解酶活性”,“细胞质”和“碳水化合物代谢过程”系统。这些细胞壁修饰和水解酶基因包括β-葡萄糖苷酶和内聚半乳糖醛酸酶,它们共同作用以分解果胶和纤维素的糖苷键,并促进豆荚腹缝中细胞壁的溶解和消失,并形成豆荚更容易破碎。我们首次证明了易碎性和抗摔性紫etch种质之间基因转录水平的差异,我们的结果为紫v中荚果破碎调控网络的鉴定和表征提供了有价值的信息。该信息可能有助于将来鉴定豆荚中与豆荚破碎相关的基因及其潜在的分子机制。

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