Resolving Marine-Freshwater Transitions by Diatoms Through a Fog of Gene Tree Discordance.

IF 6.1 1区 生物学 Q1 EVOLUTIONARY BIOLOGY
Wade R Roberts, Elizabeth C Ruck, Kala M Downey, Eveline Pinseel, Andrew J Alverson
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Abstract

Despite the obstacles facing marine colonists, most lineages of aquatic organisms have colonized and diversified in freshwaters repeatedly. These transitions can trigger rapid morphological or physiological change and, on longer timescales, lead to increased rates of speciation and extinction. Diatoms are a lineage of ancestrally marine microalgae that have diversified throughout freshwater habitats worldwide. We generated a phylogenomic data set of genomes and transcriptomes for 59 diatom taxa to resolve freshwater transitions in one lineage, the Thalassiosirales. Although most parts of the species tree were consistently resolved with strong support, we had difficulties resolving a Paleocene radiation, which affected the placement of one freshwater lineage. This and other parts of the tree were characterized by high levels of gene tree discordance caused by incomplete lineage sorting and low phylogenetic signal. Despite differences in species trees inferred from concatenation versus summary methods and codons versus amino acids, traditional methods of ancestral state reconstruction supported six transitions into freshwaters, two of which led to subsequent species diversification. Evidence from gene trees, protein alignments, and diatom life history together suggest that habitat transitions were largely the product of homoplasy rather than hemiplasy, a condition where transitions occur on branches in gene trees not shared with the species tree. Nevertheless, we identified a set of putatively hemiplasious genes, many of which have been associated with shifts to low salinity, indicating that hemiplasy played a small but potentially important role in freshwater adaptation. Accounting for differences in evolutionary outcomes, in which some taxa became locked into freshwaters while others were able to return to the ocean or become salinity generalists, might help further distinguish different sources of adaptive mutation in freshwater diatoms.

通过基因树不一致的迷雾解决硅藻的海洋-淡水过渡。
尽管海洋殖民者面临着种种障碍,但大多数水生生物谱系都在淡水中反复定居和多样化。这些转变可以引发快速的形态或生理变化,并在更长的时间尺度上导致物种形成和灭绝的速率增加。硅藻是祖先海洋微藻的一个谱系,在世界各地的淡水栖息地分布多样。我们生成了59个硅藻分类群的基因组和转录组的系统发育数据集,以解决一个谱系Thalassiosiles的淡水过渡问题。尽管物种树的大多数部分都得到了强有力的支持,但我们很难解决古新世的辐射问题,这影响了一个淡水谱系的位置。该树的这一部分和其他部分的特征是由不完整的谱系分类和低系统发育信号引起的高水平的基因树不一致。尽管从串联与汇总方法以及密码子与氨基酸推断的物种树存在差异,但传统的祖先状态重建方法支持了六种向淡水的转变,其中两种导致了随后的物种多样化。来自基因树、蛋白质比对和硅藻生活史的证据表明,栖息地的转变在很大程度上是同源性而非半同源性的产物,这种情况下,转变发生在与物种树不共享的基因树的分支上。尽管如此,我们还是鉴定了一组假定的偏侧发育基因,其中许多与向低盐度的转变有关,这表明偏侧发育在淡水适应中发挥了微小但潜在的重要作用。考虑到进化结果的差异,一些分类群被锁定在淡水中,而另一些分类群则能够返回海洋或成为盐度多面手,这可能有助于进一步区分淡水硅藻适应性突变的不同来源。
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
Systematic Biology
Systematic Biology 生物-进化生物学
CiteScore
13.00
自引率
7.70%
发文量
70
审稿时长
6-12 weeks
期刊介绍: Systematic Biology is the bimonthly journal of the Society of Systematic Biologists. Papers for the journal are original contributions to the theory, principles, and methods of systematics as well as phylogeny, evolution, morphology, biogeography, paleontology, genetics, and the classification of all living things. A Points of View section offers a forum for discussion, while book reviews and announcements of general interest are also featured.
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