Let's talk about sex: Why reproductive systems matter for understanding algae

IF 2.8 3区 生物学 Q1 MARINE & FRESHWATER BIOLOGY Journal of Phycology Pub Date : 2024-05-14 DOI:10.1111/jpy.13462
Stacy A. Krueger-Hadfield
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Abstract

Sex is a crucial process that has molecular, genetic, cellular, organismal, and population-level consequences for eukaryotic evolution. Eukaryotic life cycles are composed of alternating haploid and diploid phases but are constrained by the need to accommodate the phenotypes of these different phases. Critical gaps in our understanding of evolutionary drivers of the diversity in algae life cycles include how selection acts to stabilize and change features of the life cycle. Moreover, most eukaryotes are partially clonal, engaging in both sexual and asexual reproduction. Yet, our understanding of the variation in their reproductive systems is largely based on sexual reproduction in animals or angiosperms. The relative balance of sexual versus asexual reproduction not only controls but also is in turn controlled by standing genetic variability, thereby shaping evolutionary trajectories. Thus, we must quantitatively assess the consequences of the variation in life cycles on reproductive systems. Algae are a polyphyletic group spread across many of the major eukaryotic lineages, providing powerful models by which to resolve this knowledge gap. There is, however, an alarming lack of data about the population genetics of most algae and, therefore, the relative frequency of sexual versus asexual processes. For many algae, the occurrence of sexual reproduction is unknown, observations have been lost in overlooked papers, or data on population genetics do not yet exist. This greatly restricts our ability to forecast the consequences of climate change on algal populations inhabiting terrestrial, aquatic, and marine ecosystems. This perspective summarizes our extant knowledge and provides some future directions to pursue broadly across micro- and macroalgal species.

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让我们来谈谈性:为什么生殖系统对了解藻类很重要?
性别是一个关键过程,对真核生物进化具有分子、遗传、细胞、生物体和种群层面的影响。真核生物的生命周期由交替的单倍体和二倍体阶段组成,但由于需要适应这些不同阶段的表型而受到限制。我们对藻类生命周期多样性进化驱动因素的理解存在重大差距,其中包括选择是如何稳定和改变生命周期特征的。此外,大多数真核生物都有部分克隆,既进行有性生殖,也进行无性生殖。然而,我们对真核生物生殖系统变异的了解主要基于动物或被子植物的有性生殖。有性生殖与无性生殖的相对平衡不仅控制着遗传变异,而且还反过来被遗传变异所控制,从而影响着进化轨迹。因此,我们必须定量评估生命周期变异对生殖系统的影响。藻类是一个多谱系群体,分布在许多主要的真核生物系中,为解决这一知识空白提供了强大的模型。然而,关于大多数藻类的种群遗传学数据以及有性过程与无性过程的相对频率的数据却严重缺乏。对于许多藻类来说,有性生殖的发生情况尚不清楚,观察结果在被忽略的论文中丢失,或者种群遗传学数据尚不存在。这极大地限制了我们预测气候变化对陆地、水生和海洋生态系统中藻类种群影响的能力。本视角总结了我们现有的知识,并提供了一些未来在微型和大型藻类物种中广泛探索的方向。
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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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