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从豆科植物 Amphicarpaea edgeworthii 的紧凑基因组中洞察两栖性。

Insights into amphicarpy from the compact genome of the legume Amphicarpaea edgeworthii.

机构信息

Bio-technology Research Center, Shandong Provincial Key Laboratory of Crop Genetic Improvement, Ecology and Physiology, Shandong Academy of Agricultural Sciences, Ji'nan, China.

College of Life Sciences, Shandong Normal University, Ji'nan, China.

出版信息

Plant Biotechnol J. 2021 May;19(5):952-965. doi: 10.1111/pbi.13520. Epub 2020 Dec 11.

Abstract

Amphicarpy (seed heteromorphy) is a unique and fascinating reproductive strategy wherein a single plant produces both aerial and subterranean fruits. This strategy is believed to be an adaptation to life under stressful or uncertain environments. Here, we sequenced and de novo assembled a chromosome-level genome assembly of the legume Amphicarpaea edgeworthii Benth. The 299-Mb A. edgeworthii genome encodes 27 899 protein-coding genes and is the most compact sequenced legume genome reported until date. Its reduced genome size may be attributed to the reduced long-terminal repeat retrotransposon content, which stems from the unequal homologous recombination. Gene families related to immunity and stress resistance have been contracted in A. edgeworthii, which is consistent with the notion that the amphicarpic reproductive strategy may be a complementary mechanism for its weak environmental-adaptation ability. We demonstrated the 'ABCE' model for the differentiation of chasmogamous and cleistogamous flowers. In addition, the characteristics of aerial and subterranean seeds in hard-seededness were explored. Thus, we suggest that the A. edgeworthii genome, which is the first of an amphicarpic plant, offers significant insights into its unusual reproductive strategy that is a key resource towards comprehending the evolution of angiosperms.

摘要

兼性雌雄同熟(种子异型)是一种独特而引人入胜的生殖策略,其中同一植株既能产生气生果实又能产生地下果实。这种策略被认为是对压力或不确定环境下生存的一种适应。在这里,我们对豆科植物 Amphicarpaea edgeworthii Benth. 进行了测序和从头组装染色体水平基因组。2.99Gb 的 A. edgeworthii 基因组编码了 27899 个蛋白质编码基因,是迄今为止报道的最紧凑的测序豆科基因组。其较小的基因组大小可能归因于长末端重复逆转录转座子含量的减少,这源于非均等同源重组。与免疫和抗逆性相关的基因家族在 A. edgeworthii 中发生了收缩,这与兼性雌雄同熟生殖策略可能是其环境适应能力较弱的补充机制的观点一致。我们展示了雌雄同花和闭花授粉花分化的“ABCE”模型。此外,还探讨了硬实种子中气生种子和地下种子的特性。因此,我们认为,作为第一个兼性雌雄同熟植物的 A. edgeworthii 基因组为其不寻常的生殖策略提供了重要的见解,这是理解被子植物进化的关键资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db38/11385035/91e4f67092db/PBI-19-952-g003.jpg

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