Kessenich Colton R, Ruck Elizabeth C, Schurko Andrew M, Wickett Norman J, Alverson Andrew J
Department of Biological Sciences, University of Arkansas, Fayetteville, Arkansas, 72701, USA.
Department of Biology, Hendrix College, Conway, Arkansas, 72032, USA.
J Phycol. 2014 Dec;50(6):977-83. doi: 10.1111/jpy.12222. Epub 2014 Sep 3.
Diatoms are perhaps the most diverse lineage of eukaryotic algae, with their siliceous cell wall and diplontic life history often considered to have played important roles in their extraordinary diversification. The characteristic diminution of the diatom cell wall over the course of vegetative growth provides a reliable, intrinsic trigger for sexual reproduction, establishing a direct link between the evolution of their cell-wall and life-history features. It is unclear, however, whether the diplontic life cycle of diatoms represents an ancestral or derived trait. This uncertainty is based in part on our lack of understanding of the life cycle of the sister lineage to diatoms, which includes a mix of two free-living and separately classified forms: naked biflagellate unicells in the genus Bolidomonas and silicified forms in the order Parmales. These two forms might represent different life-history stages, although directly establishing such links can be difficult. We sequenced transcriptomes for Bolidomonas and two diatoms and found that ~0.1% of the coding regions in the two diploid diatoms are heterozygous, whereas Bolidomonas is virtually devoid of heterozygous alleles, consistent with expectations for a haploid genome. These results suggest that Bolidomonas is haploid and predict that parmaleans represent the diploid phase of a haplodiplontic life cycle. These data fill an important gap in our understanding of the origin of the diplontic life history of diatoms, which may represent an evolutionarily derived, adaptive feature.
硅藻可能是真核藻类中最多样化的谱系,其硅质细胞壁和双相生活史通常被认为在其非凡的多样化过程中发挥了重要作用。硅藻细胞壁在营养生长过程中的特征性缩小为有性生殖提供了一个可靠的内在触发因素,在其细胞壁和生活史特征的进化之间建立了直接联系。然而,尚不清楚硅藻的双相生命周期是代表祖先特征还是衍生特征。这种不确定性部分基于我们对硅藻姐妹谱系生命周期的缺乏了解,该谱系包括两种自由生活且分类不同的形式:博利多单胞菌属中的裸露双鞭毛单细胞和帕尔马藻目的硅化形式。这两种形式可能代表不同的生活史阶段,尽管直接建立这样的联系可能很困难。我们对博利多单胞菌和两种硅藻的转录组进行了测序,发现两个二倍体硅藻中约0.1%的编码区是杂合的,而博利多单胞菌几乎没有杂合等位基因,这与单倍体基因组的预期一致。这些结果表明博利多单胞菌是单倍体,并预测帕尔马藻目代表单倍体-二倍体生命周期的二倍体阶段。这些数据填补了我们对硅藻双相生活史起源理解上的一个重要空白,硅藻的双相生活史可能代表一种进化衍生的适应性特征。