Monoicy, dioicy, and genetic structure in three species of Sheathia (Batrachospermales, Rhodophyta)

IF 3.4 3区 生物学 Q1 MARINE & FRESHWATER BIOLOGY
Sarah J. Shainker-Connelly, Solenn Stoeckel, Morgan L. Vis, Stacy A. Krueger-Hadfield
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引用次数: 0

Abstract

Sexual systems (i.e., separate vs. combined sexes) vary widely among eukaryotes and influence the evolution of reproductive systems, which shape genetic structure and evolutionary trajectories. In diploid-dominant angiosperms, combined (i.e., hermaphroditism) and separate sexes are expected to correlate with selfing and outcrossing, respectively. When sex is determined in the haploid phase, selfing is possible even when there are separate sexes. The freshwater red macroalgal genus Sheathia (Batrachospermales) displays sexual system variation within and among populations, but no prior data exist on the reproductive systems of these populations. We developed 16 polymorphic microsatellite loci to characterize the reproductive system and genetic structure of three Sheathia species. We observed cross-amplification of loci across the three targeted species, suggesting these markers may be useful in other Sheathia spp. We observed variation in monoicy (i.e., hermaphroditism) versus dioicy (i.e., separate sexes) in each species, including S. americana, which was previously believed to be obligately dioicous. Our data suggest that S. americana and S. involuta display more variation in their prevailing reproductive modes as compared to S. grandis. Generally, dioicy resulted in greater diversity in contrast to monoicy. We observed strong population structure that is likely driven by uniparental reproduction and limited dispersal; however, there is limited population connectivity that may be facilitated by long-distance dispersal events. Overall, these data contribute to our knowledge of the relationship between the sexual system, reproductive system, and population genetic structure in haploid-diploid taxa, thereby informing a broader understanding of the evolution of sex.

Abstract Image

三种鞘属植物的单雌、雌雄蕊和遗传结构。
真核生物的性系统(即两性分离与两性结合)差异很大,并影响生殖系统的进化,从而形成遗传结构和进化轨迹。在二倍体优势被子植物中,组合(即雌雄同体)和雌雄分离分别与自交和异交有关。当性别在单倍体阶段确定时,即使存在不同的性别,自交也是可能的。淡水红巨藻属Sheathia (batrachospermale)在种群内和种群间表现出性别系统的变异,但没有关于这些种群生殖系统的资料。我们开发了16个多态微卫星位点,以表征3种鞘蝗的生殖系统和遗传结构。我们在三个目标物种中观察到交叉扩增的位点,表明这些标记可能对其他鞘属有用。我们在每个物种中观察到单性(即两性同体)和雌雄性(即两性分开)的差异,包括以前被认为是完全雌雄性的美洲藜。我们的数据表明,美洲山毛榉和天卷花在其主要繁殖模式上比大山毛榉表现出更多的变异。一般来说,雌雄蕊比单雌产生更大的多样性。我们观察到强大的种群结构可能是由孤本繁殖和有限的分散驱动的;然而,远距离分散事件可能促进了有限的种群连通性。总的来说,这些数据有助于我们了解单倍体-二倍体类群的性系统、生殖系统和种群遗传结构之间的关系,从而为性别进化提供更广泛的理解。
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来源期刊
Journal of Phycology
Journal of Phycology 生物-海洋与淡水生物学
CiteScore
6.50
自引率
3.40%
发文量
69
审稿时长
2 months
期刊介绍: The Journal of Phycology was founded in 1965 by the Phycological Society of America. All aspects of basic and applied research on algae are included to provide a common medium for the ecologist, physiologist, cell biologist, molecular biologist, morphologist, oceanographer, taxonomist, geneticist, and biochemist. The Journal also welcomes research that emphasizes algal interactions with other organisms and the roles of algae as components of natural ecosystems. All aspects of basic and applied research on algae are included to provide a common medium for the ecologist, physiologist, cell biologist, molecular biologist, morphologist, oceanographer, acquaculturist, systematist, geneticist, and biochemist. The Journal also welcomes research that emphasizes algal interactions with other organisms and the roles of algae as components of natural ecosystems.
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