地中海西部盆地特有的异柱多倍体和分类学复合体亚麻(Linum suffruticosum)种群遗传学的生态相关性

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-05-21 DOI:10.1093/aobpla/plae027
Maria Antònia Vanrell, Letícia R Novaes, A. Afonso, Juan Arroyo, Violeta I Simón-Porcar
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引用次数: 0

摘要

亚麻(Linum suffruticosum s.l.)是广泛分布于地中海盆地西部的一个分类群。该种群的特点是表型和细胞遗传多样性很高,而且具有独特的三维异型系统,使其成为强制性杂交种。我们用微卫星标记研究了 L. suffruticosum s.l. 整个分布区种群的遗传多样性和结构模式。我们分析了它们与各种生物和生态变量的关系,包括用一种新的多维方法测量的种群的形态比和性器官互易性。种群始终表现出近似 1:1 的形态比、高性器官互易性和高遗传多样性。我们发现种群的遗传分化程度很高,呈现出一种因距离而隔离的模式。非洲西北部的里夫山脉是最重要的遗传屏障。群体内的分类处理与种群的遗传分化无关,而是与环境分化有关。遗传多样性与纬度、海拔、种群大小、生态位适宜性或繁殖系统无关。然而,倍性水平对种群的遗传多样性有明显的影响,而且其分布似乎呈中心-外围模式。我们的研究结果表明,多倍体化事件、高外交率、距离隔离和基因流动的重要地理障碍在该物种群的微进化史中发挥了重要作用。
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Ecological correlates of population genetics in Linum suffruticosum, an heterostylous polyploid and taxonomic complex endemic to the western Mediterranean Basin
Linum suffruticosum s.l. is a taxonomic complex widespread in the western Mediterranean basin. The complex is characterized by a high phenotypic and cytogenetic diversity, and by a unique three-dimensional heterostyly system that makes it an obligate outcrosser. We studied the patterns of genetic diversity and structure of populations throughout the entire distribution of L. suffruticosum s.l. with microsatellite markers. We analyzed their relationships with various biological and ecological variables, including the morph ratio and sex organ reciprocity of populations measured with a novel multi-dimensional method. Populations consistently showed an approximate 1:1 morph ratio with high sex organ reciprocity and high genetic diversity. We found high genetic differentiation of populations, showing a pattern of isolation by distance. The Rif mountains in NW Africa were the most important genetic barrier. The taxonomic treatment within the group was not related to the genetic differentiation of populations, but to their environmental differentiation. Genetic diversity was unrelated to latitude, elevation, population size, niche suitability or breeding system. However, there was a clear influence of ploidy level on the genetic diversity of populations, and a seeming center-periphery pattern in its distribution. Our results suggest that polyploidization events, high outcrossing rates, isolation by distance and important geographical barriers to gene flow have played major roles in the microevolutionary history of this species complex.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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