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一种硫脂对海洋蓝细菌聚球藻属PCC 7002光合自养细胞生长和光合作用的不可或缺性

Dispensability of a sulfolipid for photoautotrophic cell growth and photosynthesis in a marine cyanobacterium, Synechococcus sp. PCC 7002.

作者信息

Sato Norihiro, Kamimura Ryohei, Tsuzuki Mikio

机构信息

School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, Horinouchi, Hachioji, Tokyo 192-0392, Japan; JST, Chiyoda-ku, Tokyo 102-0075, Japan.

School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, Horinouchi, Hachioji, Tokyo 192-0392, Japan.

出版信息

Biochem Biophys Res Commun. 2016 Sep 2;477(4):854-860. doi: 10.1016/j.bbrc.2016.06.148. Epub 2016 Jun 29.

DOI:10.1016/j.bbrc.2016.06.148
PMID:27372425
Abstract

Sulfoquinovosyl diacylglycerol, which mainly comprises thylakoid membranes in oxygenic photosynthetic organisms, plays species-dependent roles in freshwater microbes. In this study, a sulfoquinovosyl-diacylglycerol deficient mutant was generated in a cyanobacterium, Synechococcus sp. PCC 7002, for the first time among marine microbes to gain more insight into its physiological significance. The mutation had little deleterious impact on photoautotrophic cell growth, and functional and structural properties of the photosystem II complex. These findings were similar to previous observations for a freshwater cyanobacterium, Synechococcus elongatus PCC 7942, but were distinct from those for another freshwater cyanobacterium, Synechocystis sp. PCC 6803, and a green alga, Chlamydomonas reinhardtii, both of which require sulfoquinovosyl diacylglycerol for cell growth and/or photosystem II. Therefore, the functionality of PSII to dispense with sulfoquinovosyl diacylglycerol in Synechococcus sp. PCC 7002, similar to that in Synechococcus elongatus PCC 7942, seemed to have been excluded from the evolution of the PSII complex from cyanobacteria to green algal chloroplasts. Meanwhile, sulfoquinovosyl diacylglycerol was found to contribute to photoheterotrophic growth of Synechococcus sp. PCC 7002, which revealed a novel species-dependent strategy for utilizing SQDG in physiological processes.

摘要

磺基喹啉二酰基甘油主要存在于产氧光合生物的类囊体膜中,在淡水微生物中发挥着物种依赖性作用。在本研究中,首次在海洋微生物蓝藻聚球藻属PCC 7002中构建了一个磺基喹啉二酰基甘油缺陷型突变体,以更深入了解其生理意义。该突变对光合自养细胞生长以及光系统II复合物的功能和结构特性几乎没有有害影响。这些发现与之前对淡水蓝藻聚球藻PCC 7942的观察结果相似,但与另一种淡水蓝藻集胞藻PCC 6803以及绿藻莱茵衣藻不同,后两者细胞生长和/或光系统II都需要磺基喹啉二酰基甘油。因此,聚球藻属PCC 7002中光系统II无需磺基喹啉二酰基甘油的功能,与聚球藻PCC 7942类似,似乎在从蓝藻到绿藻叶绿体的光系统II复合物进化过程中被排除了。同时,发现磺基喹啉二酰基甘油有助于聚球藻属PCC 7002的光异养生长,这揭示了一种在生理过程中利用磺基喹啉二酰基甘油的新的物种依赖性策略。

相似文献

1
Dispensability of a sulfolipid for photoautotrophic cell growth and photosynthesis in a marine cyanobacterium, Synechococcus sp. PCC 7002.一种硫脂对海洋蓝细菌聚球藻属PCC 7002光合自养细胞生长和光合作用的不可或缺性
Biochem Biophys Res Commun. 2016 Sep 2;477(4):854-860. doi: 10.1016/j.bbrc.2016.06.148. Epub 2016 Jun 29.
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Species-specific roles of sulfolipid metabolism in acclimation of photosynthetic microbes to sulfur-starvation stress.硫脂代谢在光合微生物适应硫饥饿胁迫中的物种特异性作用。
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Disturbance of cell-size determination by forced overproduction of sulfoquinovosyl diacylglycerol in the cyanobacterium Synechococcus elongatus PCC 7942.在聚球藻Synechococcus elongatus PCC 7942中,通过强制过量产生磺基喹喔啉二酰基甘油来干扰细胞大小的确定。
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Sulfite-stress induced functional and structural changes in the complexes of photosystems I and II in a cyanobacterium, Synechococcus elongatus PCC 7942.亚硫酸盐胁迫诱导了蓝藻聚球藻PCC 7942中光系统I和II复合物的功能和结构变化。
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引用本文的文献

1
Plastoquinone Lipids: Their Synthesis via a Bifunctional Gene and Physiological Function in a Euryhaline Cyanobacterium, sp. PCC 7002.质体醌脂质:通过双功能基因在广盐性蓝细菌sp. PCC 7002中的合成及其生理功能
Microorganisms. 2023 Apr 30;11(5):1177. doi: 10.3390/microorganisms11051177.
2
Thylakoid membrane lipid sulfoquinovosyl-diacylglycerol (SQDG) is required for full functioning of photosystem II in .类囊体膜脂质磺基奎诺糖二酰基甘油(SQDG)是光合作用系统 II 充分发挥功能所必需的。
J Biol Chem. 2018 Sep 21;293(38):14786-14797. doi: 10.1074/jbc.RA118.004304. Epub 2018 Aug 3.
3
Species-specific roles of sulfolipid metabolism in acclimation of photosynthetic microbes to sulfur-starvation stress.
硫脂代谢在光合微生物适应硫饥饿胁迫中的物种特异性作用。
PLoS One. 2017 Oct 12;12(10):e0186154. doi: 10.1371/journal.pone.0186154. eCollection 2017.