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长期离子和渗透胁迫条件对集胞藻6803光合作用的影响

Effects of long-term ionic and osmotic stress conditions on photosynthesis in the cyanobacterium Synechocystis sp. PCC 6803.

作者信息

Jantaro Saowarath, Mulo Paula, Jansén Tove, Incharoensakdi Aran, Mäenpää Pirkko

机构信息

Department of Biology, University of Turku, FIN-20014 Turku, Finland.

Program of Biotechnology and Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.

出版信息

Funct Plant Biol. 2005 Sep;32(9):807-815. doi: 10.1071/FP04219.

Abstract

Salinity is considered to be one of the most severe problems in worldwide agricultural production, but the published investigations give contradictory results of the effect of ionic and osmotic stresses on photosynthesis. In the present study, long-term effects of both ionic and osmotic stresses, especially on photosynthesis, were investigated using the moderately halotolerant cyanobacterium Synechocystis sp. PCC 6803. Our results show that the PSII activity and the photosynthetic capacity tolerated NaCl but a high concentration of sorbitol completely inhibited both activities. In line with these results, we show that the amount of the D1 protein of PSII was decreased under severe osmotic stress, whereas the levels of PsaA / B and NdhF3 proteins remained unchanged. However, high concentrations of sorbitol stress led to a drastic decrease of both psbA (encoding D1) and psaA (encoding PsaA) transcripts, suggesting that severe osmotic stress may abolish the tight coordination of transcription and translation normally present in bacteria, at least in the case of the psaA gene. Taken together, our results indicate that the osmotic stress component is more detrimental to photosynthesis than the ionic one and, furthermore, under osmotic stress, the D1 protein appears to be the target of this stress treatment.

摘要

盐度被认为是全球农业生产中最严重的问题之一,但已发表的研究对于离子胁迫和渗透胁迫对光合作用的影响给出了相互矛盾的结果。在本研究中,我们使用中度耐盐蓝藻集胞藻PCC 6803研究了离子胁迫和渗透胁迫的长期影响,特别是对光合作用的影响。我们的结果表明,PSII活性和光合能力能够耐受NaCl,但高浓度的山梨醇完全抑制了这两种活性。与这些结果一致,我们发现,在严重渗透胁迫下,PSII的D1蛋白量减少,而PsaA / B和NdhF3蛋白水平保持不变。然而,高浓度的山梨醇胁迫导致psbA(编码D1)和psaA(编码PsaA)转录本均急剧下降,这表明严重的渗透胁迫可能破坏细菌中通常存在的转录和翻译的紧密协调,至少在psaA基因的情况下是如此。综上所述,我们的结果表明,渗透胁迫成分对光合作用的损害比离子胁迫更大,此外,在渗透胁迫下,D1蛋白似乎是这种胁迫处理的靶点。

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