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正选择下基因的鉴定揭示了褐藻物种间进化适应性的差异。

Identification of Genes under Positive Selection Reveals Differences in Evolutionary Adaptation between Brown-Algal Species.

作者信息

Teng Linhong, Fan Xiao, Xu Dong, Zhang Xiaowen, Mock Thomas, Ye Naihao

机构信息

Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery SciencesQingdao, China.

School of Environmental Sciences, University of East Anglia, Norwich Research ParkNorwich, United Kingdom.

出版信息

Front Plant Sci. 2017 Aug 15;8:1429. doi: 10.3389/fpls.2017.01429. eCollection 2017.

Abstract

Brown algae are an important taxonomic group in coastal ecosystems. The model brown algal species and are closely related lineages. Despite their close phylogenetic relationship, they vary greatly in morphology and physiology. To obtain further insights into the evolutionary forces driving divergence in brown algae, we analyzed 3,909 orthologs from both species to identify Genes Under Positive Selection (GUPS). About 12% of the orthologs in each species were considered to be under positive selection. Many GUPS are involved in membrane transport, regulation of homeostasis, and sexual reproduction in the small sporophyte of , which is known to have a complex life cycle and to occupy a wide range of habitats. Genes involved in photosynthesis and cell division dominated the group of GUPS in the large kelp of , which might explain why this alga has evolved the ability to grow very rapidly and to form some of the largest sporophytes. A significant number of molecular chaperones (e.g., heat-shock proteins) involved in stress responses were identified to be under positive selection in both species, potentially indicating their important roles for macroalgae to cope with the relatively variable environment of coastal ecosystems. Moreover, analysis of previously published microarray data of showed that many GUPS in were responsive to stress conditions, such as oxidative and hyposaline stress, whereas our RNA-seq data of showed that GUPS in this species were most highly expressed in large sporophytes, which supports the suggestion that selection largely acts on different sets of genes in both marcoalgal species, potentially reflecting their adaptation to different ecological niches.

摘要

褐藻是沿海生态系统中的一个重要分类群体。模式褐藻物种[具体物种1]和[具体物种2]是亲缘关系密切的谱系。尽管它们在系统发育上关系密切,但在形态和生理上却有很大差异。为了进一步深入了解驱动褐藻分化的进化力量,我们分析了这两个物种的3909个直系同源基因,以识别正选择下的基因(GUPS)。每个物种中约12%的直系同源基因被认为处于正选择之下。许多GUPS参与了[具体物种1]小型孢子体中的膜运输、稳态调节和有性生殖,[具体物种1]已知具有复杂的生命周期并占据广泛的栖息地。参与光合作用和细胞分裂的基因在[具体物种2]的大型海带的GUPS组中占主导地位,这可能解释了为什么这种藻类进化出了非常快速生长并形成一些最大孢子体的能力。在这两个物种中,大量参与应激反应的分子伴侣(如热休克蛋白)被鉴定为处于正选择之下,这可能表明它们对大型藻类应对沿海生态系统相对多变的环境具有重要作用。此外,对先前发表的[具体物种1]微阵列数据的分析表明,[具体物种1]中的许多GUPS对应激条件有反应,如氧化和低盐胁迫,而我们对[具体物种2]的RNA测序数据表明,该物种中的GUPS在大型孢子体中表达最高,这支持了这样一种观点,即选择在很大程度上作用于这两种大型藻类中不同的基因集,这可能反映了它们对不同生态位的适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32e0/5559719/92119ab2deaa/fpls-08-01429-g0001.jpg

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