Genetic Causes and Genomic Consequences of Breakdown of Distyly in Linum trigynum.

IF 11 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Juanita Gutiérrez-Valencia, Panagiotis-Ioannis Zervakis, Zoé Postel, Marco Fracassetti, Aleksandra Losvik, Sara Mehrabi, Ignas Bunikis, Lucile Soler, P William Hughes, Aurélie Désamoré, Benjamin Laenen, Mohamed Abdelaziz, Olga Vinnere Pettersson, Juan Arroyo, Tanja Slotte
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Abstract

Distyly is an iconic floral polymorphism governed by a supergene, which promotes efficient pollen transfer and outcrossing through reciprocal differences in the position of sexual organs in flowers, often coupled with heteromorphic self-incompatibility. Distyly has evolved convergently in multiple flowering plant lineages, but has also broken down repeatedly, often resulting in homostylous, self-compatible populations with elevated rates of self-fertilization. Here, we aimed to study the genetic causes and genomic consequences of the shift to homostyly in Linum trigynum, which is closely related to distylous Linum tenue. Building on a high-quality genome assembly, we show that L. trigynum harbors a genomic region homologous to the dominant haplotype of the distyly supergene conferring long stamens and short styles in L. tenue, suggesting that loss of distyly first occurred in a short-styled individual. In contrast to homostylous Primula and Fagopyrum, L. trigynum harbors no fixed loss-of-function mutations in coding sequences of S-linked distyly candidate genes. Instead, floral gene expression analyses and controlled crosses suggest that mutations downregulating the S-linked LtWDR-44 candidate gene for male self-incompatibility and/or anther height could underlie homostyly and self-compatibility in L. trigynum. Population genomic analyses of 224 whole-genome sequences further demonstrate that L. trigynum is highly self-fertilizing, exhibits significantly lower genetic diversity genome-wide, and is experiencing relaxed purifying selection and less frequent positive selection on nonsynonymous mutations relative to L. tenue. Our analyses shed light on the loss of distyly in L. trigynum, and advance our understanding of a common evolutionary transition in flowering plants.

三尖杉(Linum trigynum)淀粉分解的遗传原因和基因组后果。
Distyly是一种标志性的花多态性,由一个超级基因调控,通过性器官在花中位置的相互差异促进有效的花粉传递和外交,通常还伴有异形自交不亲和(SI)。Distyly在多个开花植物品系中发生了趋同进化,但也多次发生分解,往往导致同株、自交相容的种群自交率升高。在这里,我们旨在研究三裂亚麻(Linum trigynum)转向同柱的遗传原因和基因组后果,三裂亚麻与二裂亚麻(Linum tenue)亲缘关系密切。在高质量基因组组装的基础上,我们发现三叉亚麻(L. trigynum)的基因组区域与L. tenue中赋予长雄蕊和短花柱的distyly超级基因的显性单倍型同源,这表明distyly的缺失首先发生在短花柱个体中。与同株的报春花和法桐不同,三尖杉在 S-连锁的 distyly 候选基因的编码序列中没有固定的功能缺失突变。相反,花的基因表达分析和对照杂交表明,下调雄花SI和/或花药高度的S连锁LtWDR-44候选基因的突变可能是三棱草同柱性和自相容性(SC)的基础。对 224 个全基因组序列进行的群体基因组分析进一步表明,三叉雌花的自交能力很强,在全基因组范围内的遗传多样性明显较低,与tenue雌花相比,三叉雌花正在经历宽松的纯化选择和较少的非同义突变正选择。我们的分析揭示了三尖杉失去雌雄同株的原因,并加深了我们对开花植物共同进化转变的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular biology and evolution
Molecular biology and evolution 生物-进化生物学
CiteScore
19.70
自引率
3.70%
发文量
257
审稿时长
1 months
期刊介绍: Molecular Biology and Evolution Journal Overview: Publishes research at the interface of molecular (including genomics) and evolutionary biology Considers manuscripts containing patterns, processes, and predictions at all levels of organization: population, taxonomic, functional, and phenotypic Interested in fundamental discoveries, new and improved methods, resources, technologies, and theories advancing evolutionary research Publishes balanced reviews of recent developments in genome evolution and forward-looking perspectives suggesting future directions in molecular evolution applications.
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