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U 型三角型芸薹属物种胚胎和种皮发育的时空转录组图谱揭示的进化分歧。

Evolutionary divergence in embryo and seed coat development of U's Triangle Brassica species illustrated by a spatiotemporal transcriptome atlas.

机构信息

Global Institute for Food Security, University of Saskatchewan, Saskatoon, SK, S7N 4L8, Canada.

Aquatic and Crop Resource Development, National Research Council Canada, 110 Gymnasium Place, Saskatoon, SK, S7N 0W9, Canada.

出版信息

New Phytol. 2022 Jan;233(1):30-51. doi: 10.1111/nph.17759. Epub 2021 Oct 23.

Abstract

The economically valuable Brassica species include the six related members of U's Triangle. Despite the agronomic and economic importance of these Brassicas, the impacts of evolution and relatively recent domestication events on the genetic landscape of seed development have not been comprehensively examined in these species. Here we present a 3D transcriptome atlas for the six species of U's Triangle, producing a unique resource that captures gene expression data for the major subcompartments of the seed, from the unfertilized ovule to the mature embryo and seed coat. This comprehensive dataset for seed development in tetraploid and ancestral diploid Brassicas provides new insights into evolutionary divergence and expression bias at the gene and subgenome levels during the domestication of these valued crop species. Comparisons of gene expression associated with regulatory networks and metabolic pathways operating in the embryo and seed coat during seed development reveal differences in storage reserve accumulation and fatty acid metabolism among the six Brassica species. This study illustrates the genetic underpinnings of seed traits and the selective pressures placed on seed production, providing an immense resource for continued investigation of Brassica polyploid biology, genomics and evolution.

摘要

经济价值较高的芸薹属物种包括 U 形三角的六个相关成员。尽管这些芸薹属在农业和经济上具有重要意义,但进化和相对较近的驯化事件对种子发育遗传景观的影响尚未在这些物种中得到全面研究。在这里,我们为 U 形三角的六个物种呈现了一个 3D 转录组图谱,生成了一个独特的资源,该资源捕获了种子主要亚区室的基因表达数据,从未受精的胚珠到成熟的胚胎和种皮。这个关于四倍体和祖先二倍体芸薹属种子发育的综合数据集为这些有价值的作物物种驯化过程中基因和亚基因组水平的进化分歧和表达偏向提供了新的见解。与在种子发育过程中在胚胎和种皮中起作用的调控网络和代谢途径相关的基因表达的比较揭示了六个芸薹属物种之间在储存物质积累和脂肪酸代谢方面的差异。这项研究说明了种子性状的遗传基础以及对种子生产的选择压力,为继续研究芸薹属多倍体生物学、基因组学和进化提供了丰富的资源。

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