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摘要:
In order to invade and adapt to deep-sea environments, shallow-water organisms have to acquire tolerance to high hydrostatic pressure, low water temperature, toxic methane and hydrogen sulfide, and feeding strategies not relying on photosynthetic products. Our previous study showed that the “evolutionary stepping stone hypothe-sis”, which assumes that organic falls can act as stepping-stones to connect shallow sea with deep sea, was supported in Mytilidae. However, it is not known whether other bivalves constituting chemosynthetic communities experienced the same evolutionary process or different processes from mytilid mussels. Therefore, here, we performed phylogenetic analyses by sequencing the nuclear 18S rRNA and mitochondrial COI genes of solemyid and thyasirid bivalves. In Solemyidae, the two genera Solemya and Acharax formed each clade, the latter of which was divided into three subgroups. The Solemya clade and one of the Acharax subgroups diverged in the order of shallow-sea residents, whale-bone residents, and deep-sea vent/seep residents, which supported the “evolutionary stepping stone hypothesis”. Furthermore, in Thyasiridae, the two genera Thyasira and Maorithyas formed a paraphyletic group and the other genera, Adontorhina, Axinopsis, Axinulus, Leptaxinus, and Mendicula, formed a clade. The “evolu-tionary stepping stone hypothesis” was not seemingly supported in the other lineages of Solemyidae and Thyasiridae.
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篇名 Molecular Phylogenetic Analysis of Chemosymbiotic Solemyidae and Thyasiridae
来源期刊 海洋科学期刊(英文) 学科 医学
关键词 WHALE Bone Deep Sea Nuclear DNA MITOCHONDRIAL DNA STEPPING STONE HYPOTHESIS
年,卷(期) 2017,(1) 所属期刊栏目
研究方向 页码范围 124-141
页数 18页 分类号 R73
字数 语种
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WHALE
Bone
Deep
Sea
Nuclear
DNA
MITOCHONDRIAL
DNA
STEPPING
STONE
HYPOTHESIS
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研究来源
研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
海洋科学期刊(英文)
季刊
2161-7384
武汉市江夏区汤逊湖北路38号光谷总部空间
出版文献量(篇)
190
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0
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