没食子酸正丙酯对盐藻光合作用和生理参数的影响受胁迫条件的影响

A. Einali, M. Shariati
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引用次数: 7

摘要

通过叶绿素a荧光瞬态测量和色素分析,研究了参与叶绿素呼吸的叶绿体末端氧化酶抑制剂没食子酸正丙酯对不同盐度和低、高辐照条件下盐杜氏藻光合作用和生理参数的影响。在低盐度和低光照条件下,1 mM以下的抑制剂对细胞悬浮液的光合效率有显著的影响。然而,在高n-丙基没食子酸盐浓度(4mm)的情况下,对所有生理方面都有负面影响。相反,高浓度的抑制剂可以提高电子传递效率和在高辐照下的生长参数。另一方面,随着盐度的增加,高抑制剂浓度对光系统II效率的不利影响不如低盐度明显。有趣的是,高浓度的没食子酸正丙酯对高盐度生长的细胞在高辐照下的荧光和生理参数有积极的影响。结果表明,盐度的升高与藻类绕过没食子酸正丙酯抑制质体末端氧化酶功能的能力有一定的相关性,并直接影响其致死浓度对光系统II室的影响。当盐度的增加伴随着高辐照度时,这种能力尤其显著。此外,这些数据表明,在不同的环境条件下,藻类对抑制剂浓度的反应是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of n-propyl gallate on photosynthesis and physiological parameters in Dunaliella salina are affected by stressful conditions
We studied the effects of n-propyl gallate, which is a plastid terminal oxidase inhibitor involved in chlororespiration, on photosynthesis and physiological parameters in Dunaliella salina grown under different salinities and under low or high irradiance using chlorophyll a fluorescence transient measurements and pigment analysis. The inhibitor up to 1 mM had an additive significant effect on the photosynthetic efficiency in the cell suspensions grown under low salinity and irradiance. However, in the presence of high n-propyl gallate concentration (4 mM), there was a negative effect on all physiological aspects. In contrast, this high concentration of the inhibitor could enhance efficiency of electron transport and growth parameters under high irradiance. On the other hand, with salinity increase, the unfavorable effects of high inhibitor concentration on the efficiency of photosystem II were less evident than of low salinity. Interestingly, n-propyl gallate high concentration had a positive effect on fluorescence and on physiological parameters when high salinities-grown cells were exposed to high irradiance. The results suggest that there is a rational correlation between increase of salinity and algae ability to bypass n-propyl gallate inhibited plastid terminal oxidase function and also direct influence of its lethal concentration on photosystem II compartment. The ability is especially substantial when the increase of salinity is accompanying high irradiance. Furthermore, these data show that algal responses to inhibitor concentrations are different under various environmental conditions.
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