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在氮充足和固氮条件下生长的单细胞固氮蓝藻在昼夜周期中的光合调节。

Photosynthetic modulation during the diurnal cycle in a unicellular diazotrophic cyanobacterium grown under nitrogen-replete and nitrogen-fixing conditions.

机构信息

Department of Biology, Washington University, St. Louis, MO, 63130, USA.

出版信息

Sci Rep. 2022 Nov 7;12(1):18939. doi: 10.1038/s41598-022-21829-6.

Abstract

Cyanobacteria are the only oxygenic photosynthetic organisms that can fix nitrogen. In diazotrophic cyanobacteria, the regulation of photosynthesis during the diurnal cycle is hypothesized to be linked with nitrogen fixation and involve the D1 protein isoform PsbA4. The amount of bioavailable nitrogen has a major impact on productivity in aqueous environments. In contrast to low- or nitrogen-fixing (-N) conditions, little data on photosynthetic regulation under nitrogen-replete (+ N) conditions are available. We compared the regulation of photosynthesis under -N and + N conditions during the diurnal cycle in wild type and a psbA4 deletion strain of the unicellular diazotrophic cyanobacterium Cyanothece sp. ATCC 51142. We observed common changes to light harvesting and photosynthetic electron transport during the dark in + N and -N conditions and found that these modifications occur in both diazotrophic and non-diazotrophic cyanobacteria. Nitrogen availability increased PSII titer when cells transitioned from dark to light and promoted growth. Under -N conditions, deletion of PsbA4 modified charge recombination in dark and regulation of PSII titer during dark to light transition. We conclude that darkness impacts the acceptor-side modifications to PSII and photosynthetic electron transport in cyanobacteria independently of the nitrogen-fixing status and the presence of PsbA4.

摘要

蓝细菌是唯一能够固氮的产氧光合作用生物。在固氮蓝细菌中,推测光合作用在昼夜周期中的调节与固氮有关,并涉及 D1 蛋白同工型 PsbA4。生物可利用氮的数量对水生生境中的生产力有重大影响。与低氮或固氮(-N)条件相比,在氮充足(+N)条件下光合作用调节的相关数据很少。我们比较了野生型和单细胞固氮蓝细菌 Cyanothece sp. ATCC 51142 的 psbA4 缺失株在昼夜周期中 -N 和 +N 条件下光合作用的调节。我们观察到在 +N 和 -N 条件下,暗期时光捕获和光合作用电子传递会发生共同的变化,并且发现这些修饰发生在固氮和非固氮蓝细菌中。氮可用性增加了 PSII 量,当细胞从暗到光过渡时,PSII 量增加促进了生长。在 -N 条件下,PsbA4 的缺失改变了暗期中的电荷复合和暗期到光期过渡时 PSII 量的调节。我们得出结论,黑暗对 PSII 的受体侧修饰和蓝细菌中的光合作用电子传递有影响,这与固氮状态和 PsbA4 的存在无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a55/9640542/19650e230bff/41598_2022_21829_Fig1_HTML.jpg

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