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甘蓝型油菜时空转录组分析和亚基因组分析。

Spatio-temporal transcriptome profiling and subgenome analysis in Brassica napus.

机构信息

Integrative Science Center of Germplasm Creation in Western China (CHONGQING) Science City and Southwest University, College of Agronomy and Biotechnology, Southwest University, Beibei, Chongqing, 400715, China.

Academy of Agricultural Sciences, Southwest University, Beibei, Chongqing, 400715, China.

出版信息

Plant J. 2022 Aug;111(4):1123-1138. doi: 10.1111/tpj.15881. Epub 2022 Jul 19.

Abstract

Brassica napus is an important oil crop and an allotetraploid species. However, the detailed analysis of gene function and homoeologous gene expression in all tissues at different developmental stages was not explored. In this study, we performed a global transcriptome analysis of 24 vegetative and reproductive tissues at six developmental stages (totally 111 tissues). These samples were clustered into eight groups. The gene functions of silique pericarp were similar to roots, stems and leaves. In particular, glucosinolate metabolic process was associated with root and silique pericarp. Genes involved in protein phosphorylation were often associated with stamen, anther and the early developmental stage of seeds. Transcription factor (TF) genes were more specific than structural genes. A total of 17 100 genes that were preferentially expressed in one tissue (tissue-preferred genes, TPGs), including 889 TFs (5.2%), were identified in the 24 tissues. Some TPGs were identified as hub genes in the co-expression network analysis, and some TPGs in different tissues were involved in different hormone pathways. About 67.0% of the homoeologs showed balanced expression, whereas biased expression of homoeologs was associated with structural divergence. In addition, the spatiotemporal expression of homoeologs was related to the presence of transposable elements (TEs) and regulatory elements (REs); more TEs and fewer REs in the promoters resulted in divergent expression in different tissues. This study provides a valuable transcriptional map for understanding the growth and development of B. napus, for identifying important genes for future crop improvement, and for exploring gene expression patterns in the B. napus.

摘要

甘蓝型油菜是一种重要的油料作物,也是一种异源四倍体物种。然而,对于其所有组织在不同发育阶段的基因功能和同源基因表达的详细分析尚未进行探索。在本研究中,我们对 24 个营养和生殖组织在六个发育阶段(共 111 个组织)进行了全转录组分析。这些样本聚类为 8 个组。 种皮的基因功能与根、茎和叶相似。特别是,硫代葡萄糖苷代谢过程与根和种皮有关。涉及蛋白质磷酸化的基因通常与雄蕊、花药和种子的早期发育阶段有关。转录因子(TF)基因比结构基因更具特异性。总共鉴定出 17100 个在一个组织中优先表达的基因(组织偏好基因,TPG),包括 889 个 TF(5.2%),在 24 个组织中都有鉴定到。一些 TPG 被鉴定为共表达网络分析中的枢纽基因,而不同组织中的一些 TPG 参与了不同的激素途径。大约 67.0%的同源基因表现出平衡表达,而同源基因的偏表达与结构分化有关。此外,同源基因的时空表达与转座元件(TEs)和调节元件(REs)有关;启动子中更多的 TEs 和更少的 REs 导致不同组织中表达的分歧。这项研究为理解油菜的生长和发育提供了有价值的转录图谱,为未来作物改良中重要基因的鉴定以及油菜中基因表达模式的探索提供了参考。

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