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马齿苋属植物叶绿体质体代谢与 CAM 相关的变化。

CAM-related changes in chloroplastic metabolism of Mesembryanthemum crystallinum L.

机构信息

Institute of Biology, The Jan Kochanowski University of Humanities and Science, Świętokrzyska 15, 25-406 Kielce, Poland.

出版信息

Planta. 2011 Feb;233(2):275-85. doi: 10.1007/s00425-010-1302-y. Epub 2010 Nov 3.

Abstract

Crassulacean acid metabolism (CAM) is an intriguing metabolic strategy to maintain photosynthesis under conditions of closed stomata. A shift from C(3) photosynthesis to CAM in Mesembryanthemum crystallinum plants was induced by high salinity (0.4 M NaCl). In CAM-performing plants, the quantum efficiencies of photosystem II and I were observed to undergo distinct diurnal fluctuations that were characterized by a strong decline at the onset of the day, midday recovery, and an evening drop. The temporal recovery of both photosystems' efficiency at midday was associated with a more rapid induction of the electron transport rate at PSII. This recovery of the photosynthetic apparatus at midday was observed to be accompanied by extreme swelling of thylakoids. Despite these fluctuations, a persistent effect of CAM was the acceptor side limitation of PSI during the day, which was accompanied by a strongly decreased level of Rubisco protein. Diurnal changes in the efficiency of photosystems were parallel to corresponding changes in the levels of mRNAs for proteins of PSII and PSI reaction centers and for rbcL, reaching a maximum in CAM plants at midday. This might reflect a high demand for new protein synthesis at this time of the day. Hybridization of run-on transcripts with specific probes for plastid genes of M. crystallinum revealed that the changes in plastidic mRNA levels were regulated at the level of transcription.

摘要

景天酸代谢(CAM)是一种在关闭气孔条件下维持光合作用的有趣代谢策略。高盐度(0.4 M NaCl)可诱导马齿苋植物从 C3 光合作用向 CAM 转变。在进行 CAM 的植物中,观察到光合作用系统 II 和 I 的量子效率发生明显的昼夜波动,其特征是在白天开始时强烈下降,中午恢复,傍晚下降。中午两个光合作用系统效率的时间恢复与 PSII 电子传递速率的更快诱导有关。中午光合作用装置的这种恢复被观察到伴随着类囊体的极度肿胀。尽管存在这些波动,但 CAM 的持续影响是PSI 在白天的受体侧限制,这伴随着 Rubisco 蛋白水平的强烈下降。光合作用系统效率的昼夜变化与 PSII 和 PSI 反应中心蛋白以及 rbcL 的 mRNA 水平的相应变化平行,在 CAM 植物中在中午达到最大值。这可能反映了一天中此时对新蛋白质合成的高需求。与马齿苋特定探针的运行转录物杂交显示,质体 mRNA 水平的变化受转录水平的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95ff/3026932/09e75d64a57e/425_2010_1302_Fig1_HTML.jpg

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