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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Diatoms diversify and turn over faster in freshwater than marine environments
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Diatoms diversify and turn over faster in freshwater than marine environments

机译:硅藻在淡水中多样化并转动比海洋环境更快

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摘要

Many clades that span the marine-freshwater boundary are disproportionately more diverse in the younger, shorter lived, and scarcer freshwater environments than they are in the marine realm. This disparity is thought to be related to differences in diversification rates between marine and freshwater lineages. However, marine and freshwaters are not ecologically homogeneous, so the study of diversification across the salinity divide should also account for other potentially interacting variables. In diatoms, freshwater and substrate-associated (benthic) lineages are several-fold more diverse than their marine and suspended (planktonic) counterparts. These imbalances provide an excellent system to understand whether these variables interact with diversification. Using multistate hidden-state speciation and extinction models, we found that freshwater lineages diversify faster than marine lineages regardless of whether they inhabit the plankton or the benthos. Freshwater lineages also had higher turnover rates (speciation + extinction), suggesting that habitat transitions impact speciation and extinction rates jointly. The plankton-benthos contrast was also consistent with state-dependent diversification, but with modest differences in diversification and turnover rates. Asymmetric and bidirectional transitions rejected hypotheses about the plankton and freshwaters as absorbing, inescapable habitats. Our results further suggest that the high turnover rate of freshwater diatoms is related to high turnover of freshwater systems themselves.
机译:许多跨越海洋淡水边界的赛物在年轻的较短,较短的较短的淡水环境中更加多样化,而不是在海洋领域。认为这种差异与海洋和淡水谱系之间多样化率的差异有关。然而,海洋和淡水不是生态均匀的,因此对盐度分裂的多样化研究也应考虑其他可能的相互作用变量。在硅藻中,淡水和基质相关(底物)谱系比其海洋和悬浮(浮游)对应物多样多样。这些不平衡提供了一个优秀的系统,以了解这些变量是否与多样化相互作用。使用多态隐藏状态的品种和消灭模型,我们发现淡水素线分散而不是海洋谱系,无论它们是居住的浮游生物还是Benthos。淡水谱系也具有更高的营业速率(物质+灭绝),建议栖息地过渡,共同过渡了影响物业和灭绝率。 Plankton-Benthos对比也与国家依赖的多样化一致,但在多样化和营业速率方面具有适度差异。不对称和双向转变拒绝了关于浮游生物和新温水作为吸收,不可避免的栖息地的假设。我们的结果进一步表明,淡水硅藻的高档率与淡水系统的高度较高有关。

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