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锌在极地浮游植物适应进化中的作用。

The role of zinc in the adaptive evolution of polar phytoplankton.

机构信息

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

Function Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.

出版信息

Nat Ecol Evol. 2022 Jul;6(7):965-978. doi: 10.1038/s41559-022-01750-x. Epub 2022 Jun 2.

Abstract

Zinc is an essential trace metal for oceanic primary producers with the highest concentrations in polar oceans. However, its role in the biological functioning and adaptive evolution of polar phytoplankton remains enigmatic. Here, we have applied a combination of evolutionary genomics, quantitative proteomics, co-expression analyses and cellular physiology to suggest that model polar phytoplankton species have a higher demand for zinc because of elevated cellular levels of zinc-binding proteins. We propose that adaptive expansion of regulatory zinc-finger protein families, co-expanded and co-expressed zinc-binding proteins families involved in photosynthesis and growth in these microalgal species and their natural communities were identified to be responsible for the higher zinc demand. The expression of their encoding genes in eukaryotic phytoplankton metatranscriptomes from pole-to-pole was identified to correlate not only with dissolved zinc concentrations in the upper ocean but also with temperature, suggesting that environmental conditions of polar oceans are responsible for an increased demand of zinc. These results suggest that zinc plays an important role in supporting photosynthetic growth in eukaryotic polar phytoplankton and that this has been critical for algal colonization of low-temperature polar oceans.

摘要

锌是海洋初级生产者所必需的微量元素,其浓度在极地海洋中最高。然而,其在极地浮游植物的生物功能和适应性进化中的作用仍然是个谜。在这里,我们结合进化基因组学、定量蛋白质组学、共表达分析和细胞生理学,提出模型极地浮游植物物种对锌的需求更高,因为其细胞内锌结合蛋白的水平升高。我们提出,调节锌指蛋白家族的适应性扩张,以及与光合作用和生长相关的锌结合蛋白家族的共同扩张和共表达,是这些微藻物种及其自然群落中锌需求增加的原因。从极地到极地的真核浮游植物宏转录组中,这些编码基因的表达不仅与上层海洋中的溶解锌浓度相关,还与温度相关,这表明极地海洋的环境条件导致了对锌的需求增加。这些结果表明,锌在支持真核极地浮游植物的光合作用生长中起着重要作用,这对于藻类在低温极地海洋中的定殖至关重要。

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