Positive selection of a starch synthesis gene and phenotypic differentiation of starch accumulation in symbiotic and free-living coral symbiont dinoflagellate species.

IF 3.2 2区 生物学 Q2 EVOLUTIONARY BIOLOGY
Yuu Ishii, Shunsuke Kanamori, Ryusaku Deguchi, Masakado Kawata, Shinichiro Maruyama, Takashi Yoshida, Ryoma Kamikawa
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引用次数: 0

Abstract

Symbiosis is a basis for species diversification through interactions between organisms. In tropical and subtropical oceans, dinoflagellate symbionts belonging to the family Symbiodiniaceae, including the genus Symbiodinium, support the flourishment of cnidarian hosts, including corals, and thereby the ecology of oligotrophic oceans through their photosynthate carbon transfers. Although the genus Symbiodinium includes both free-living and symbiotic species, the detailed genetic background of their lifestyle differences remains unclear. In this study, we identified candidate genes involved in the evolutionary acquisition or maintenance of symbiosis in Symbiodinium spp. by detecting genes that have undergone positive selection during symbiotic and free-living lifestyle diversification. Using multiple Symbiodinium genomes to detect positive selection, 35 genes were identified, including a gene encoding soluble starch synthase SSY1 and genes related to metabolite secretion, which may be preferred for symbiotic lifestyles. In particular, our in silico analyses revealed that the SSY1 gene family has undergone extensive gene duplications in an ancestral dinoflagellate, and that the mutations detected as positive selection have occurred in the intrinsically disordered region of one of the homologs. Consistent with molecular evolution, the phenotypes of intracellular starch synthesis/accumulation were distinct between the symbiotic and free-living species of Symbiodinium when cultured under different pH and nitrogen conditions. These results provide molecular and phenotypic insights into symbiotic Symbiodinium-coral relationships.

一个淀粉合成基因的正选择及共生和自由生活珊瑚共生双鞭毛类淀粉积累的表型分化。
共生是生物之间通过相互作用实现物种多样化的基础。在热带和亚热带海洋中,属于共生体科的鞭毛藻共生体,包括共生体属,通过其光合作用碳转移支持刺胞动物宿主(包括珊瑚)的繁荣,从而支持少营养海洋的生态。虽然共生属包括自由生活和共生物种,但它们生活方式差异的详细遗传背景尚不清楚。在这项研究中,我们通过检测在共生和自由生活方式多样化过程中经历了积极选择的基因,确定了参与共生进化获得或维持共生的候选基因。利用多个共生菌基因组检测阳性选择,共鉴定出35个基因,其中包括编码可溶性淀粉合成酶SSY1的基因和代谢物分泌相关基因,这些基因可能是共生生活方式的首选基因。特别是,我们的计算机分析显示,SSY1基因家族在祖先鞭毛藻中经历了广泛的基因复制,并且检测到的阳性选择突变发生在其中一个同系物的内在无序区域。与分子进化一致,在不同的pH和氮条件下培养共生菌和自由菌的胞内淀粉合成/积累表型不同。这些结果提供了共生体-珊瑚关系的分子和表型见解。
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
Genome Biology and Evolution
Genome Biology and Evolution EVOLUTIONARY BIOLOGY-GENETICS & HEREDITY
CiteScore
5.80
自引率
6.10%
发文量
169
审稿时长
1 months
期刊介绍: About the journal Genome Biology and Evolution (GBE) publishes leading original research at the interface between evolutionary biology and genomics. Papers considered for publication report novel evolutionary findings that concern natural genome diversity, population genomics, the structure, function, organisation and expression of genomes, comparative genomics, proteomics, and environmental genomic interactions. Major evolutionary insights from the fields of computational biology, structural biology, developmental biology, and cell biology are also considered, as are theoretical advances in the field of genome evolution. GBE’s scope embraces genome-wide evolutionary investigations at all taxonomic levels and for all forms of life — within populations or across domains. Its aims are to further the understanding of genomes in their evolutionary context and further the understanding of evolution from a genome-wide perspective.
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