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浮游植物细胞大小控制可能受光合光能利用的影响。

Phytoplankton cell size control can be affected by photosynthetic light energy utilization.

作者信息

Li Wanzhu, Wang Baoli, Xiao Jing, Yang Meiling, Xu Sheng, Liu Cong-Qiang

机构信息

Institute of Surface-Earth System Science, School of Earth System Science, Tianjin University, Tianjin, China.

出版信息

Front Microbiol. 2022 Nov 2;13:1008606. doi: 10.3389/fmicb.2022.1008606. eCollection 2022.

Abstract

Phytoplankton cell size is well known as an essential functional trait, but its control factors are still unclear. Considering light provides the necessary energy for phytoplankton survival, we hypothesized that photosynthetic light energy utilization could influence phytoplankton cell size control. Several scenarios were conducted to understand the relationship between / and cell size for phytoplankton interspecies, and metatranscriptome in the field and transcriptome in the laboratory were used to understand relevant molecular mechanisms. The results indicated that there was a universal significant positive relationship between / and cell volume in general. The molecular evidence demonstrated that light utilization by phytoplankton regulates their cell size by harmonizing the generation and allocation of chemical energy and fixed carbon in the cell. Phytoplankton cell size would cease to enlarge once the increased light energy conversion and subsequent fixed carbon could no longer satisfy the increasing demand of size enlargement. This unity of energy and matter in shaping phytoplankton size results in cell size being an important functional trait. This study is the first to discover the above molecular mechanisms and is helpful to deepen the understanding on the cell size control of phytoplankton.

摘要

浮游植物的细胞大小是一个众所周知的重要功能性状,但其控制因素仍不清楚。考虑到光为浮游植物的生存提供了必要的能量,我们推测光合光能利用可能影响浮游植物细胞大小的控制。我们进行了几种设想来了解浮游植物种间的/与细胞大小之间的关系,并利用野外的宏转录组和实验室的转录组来了解相关的分子机制。结果表明,一般来说,/与细胞体积之间存在普遍显著的正相关关系。分子证据表明,浮游植物对光的利用通过协调细胞内化学能和固定碳的产生与分配来调节其细胞大小。一旦增加的光能转化以及随后的固定碳不再能够满足细胞大小增大的不断增加的需求,浮游植物的细胞大小就会停止增大。这种能量与物质在塑造浮游植物大小方面的统一导致细胞大小成为一个重要的功能性状。本研究首次发现上述分子机制,有助于加深对浮游植物细胞大小控制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6881/9667819/b0f838036789/fmicb-13-1008606-g001.jpg

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