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缺锰会改变地钱的光合作用电子传递。

Manganese deficiency alters photosynthetic electron transport in Marchantia polymorpha.

机构信息

Université Paris-Saclay, Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, 91198, Gif-sur-Yvette cedex, France.

Université Paris-Saclay, Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, 91198, Gif-sur-Yvette cedex, France.

出版信息

Plant Physiol Biochem. 2024 Oct;215:109042. doi: 10.1016/j.plaphy.2024.109042. Epub 2024 Aug 16.

DOI:10.1016/j.plaphy.2024.109042
PMID:39173366
Abstract

Manganese (Mn) is considered as an essential element for plant growth. Mn starvation has been shown to affect photosystem II, the site of the MnCaO cluster responsible for water oxidation. Less is known on the effect of Mn starvation on photosystem I. Here we studied the effects of Mn deficiency in vivo on redox changes of P700 and plastocyanin (Pc) in the liverwort Marchantia polymorpha using the KLAS-NIR spectrophotometer. Far-red illumination is used to excite preferentially photosystem I, thus facilitating cyclic electron transport. Under Mn starvation, we observed slower oxidation of P700 and a decrease in the Pc signal relative to P700. The lower Pc content under Mn deficiency was confirmed by western blots. Re-reduction kinetics of P700 and Pc were faster in Mn deficient thalli than in the control. The above findings show that the kinetics studied under Mn deficiency not only depend on the number of available reductants but also on how quickly electrons are transferred from stromal donors via the intersystem chain to Pc and P700. We suggest that under Mn deficiency a structural reorganization of the thylakoid membrane takes place favoring the formation of supercomplexes between ferredoxin, cytochrome bf complex, Pc and photosystem I, and thus an enhanced cyclic electron transport.

摘要

锰(Mn)被认为是植物生长所必需的元素。已有研究表明,Mn 饥饿会影响光系统 II,而后者是负责水氧化的 MnCaO 簇的作用位点。关于 Mn 饥饿对光系统 I 的影响,人们知之甚少。在这里,我们使用 KLAS-NIR 分光光度计研究了体内 Mn 缺乏对苔类 Marchantia polymorpha 中 P700 和质体蓝素(Pc)氧化还原变化的影响。远红光照射优先激发光系统 I,从而促进环式电子传递。在 Mn 饥饿条件下,我们观察到 P700 的氧化速度较慢,且相对于 P700,Pc 信号下降。Western blot 进一步证实了 Mn 缺乏下 Pc 含量较低。Mn 缺乏组织中 P700 和 Pc 的再还原动力学比对照更快。上述发现表明,在 Mn 缺乏条件下研究的动力学不仅取决于可用还原剂的数量,还取决于电子从基质供体通过系统间链快速转移到 Pc 和 P700 的速度。我们认为,在 Mn 缺乏条件下,类囊体膜发生结构重排,有利于铁氧还蛋白、细胞色素 bf 复合物、Pc 和光系统 I 之间形成超复合物,从而增强环式电子传递。

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