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紫外线辐射会降低海洋硅藻三角褐指藻(硅藻门,不等鞭毛藻纲)的光保护能力。

Ultraviolet radiation reduces the photoprotective capacity of the marine diatom Phaeodactylum tricornutum (Bacillariophyceae, Heterokontophyta).

作者信息

Halac Silvana, García-Mendoza Ernesto, Banaszak Anastazia T

机构信息

Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México, Quintana Roo, México.

出版信息

Photochem Photobiol. 2009 May-Jun;85(3):807-15. doi: 10.1111/j.1751-1097.2008.00497.x. Epub 2008 Dec 18.

Abstract

This study demonstrates that UV radiation (UVR) reduces the photoprotective capacity of the diatom Phaeodactylum tricornutum by affecting xanthophyll cycle (XC) activity. The short-term reduction of photosystem II (PSII) maximum efficiency of charge separation (F(v)/F(m)) in cells exposed to UVR could be explained mainly by a reduced photoprotective capacity under this condition. Phaeodactylum tricornutum cells acclimated to two different photosynthetically active radiation (PAR) intensities, high light (HL, 200 micromol quanta m(-2) s(-1)) and low light (LL, 50 micromol quanta m(-2) s(-1)), were exposed to saturating irradiance (1100 micromol quanta m(-2) s(-1)) in the presence (PAR + UVR) and absence of UVR (PAR). HL cells exhibited a greater reduction in F(v)/F(m) in PAR + UVR when compared with the PAR treatment that was related to a reduction in the de-epoxidation of XC pigments. In contrast, in LL cells, UVR did not considerably affect XC de-epoxidation even though the reduction in F(v)/F(m) was greater than in HL cells. The negative effect of UVR on photoprotection was more pronounced in HL cells because they synthesized more XC pigments than LL cells. This was confirmed when XC activity was blocked with dithiothreitol and when PSII repair was inhibited with chloramphenicol (CAP). The differential reduction of F(v)/F(m) between PAR + UVR and PAR treatments disappeared when XC was blocked in HL cells. A higher reduction and an incomplete recovery of F(v)/F(m) were observed in cells incubated with CAP in the presence of UVR. Such responses confirm that UVR had a negative effect on photoprotective mechanisms causing an enhancement of damage by PAR, especially in HL-acclimated cells in which heat dissipation is important for PSII regulation.

摘要

本研究表明,紫外线辐射(UVR)通过影响叶黄素循环(XC)活性降低了硅藻三角褐指藻的光保护能力。暴露于UVR的细胞中光系统II(PSII)电荷分离最大效率(F(v)/F(m))的短期降低,主要可归因于在此条件下光保护能力的下降。适应两种不同光合有效辐射(PAR)强度,即高光(HL,200微摩尔量子m(-2) s(-1))和低光(LL,50微摩尔量子m(-2) s(-1))的三角褐指藻细胞,在有(PAR + UVR)和无UVR(PAR)的情况下暴露于饱和辐照度(1100微摩尔量子m(-2) s(-1))。与PAR处理相比,HL细胞在PAR + UVR中F(v)/F(m)的降低更大,这与XC色素脱环氧化作用的降低有关。相反,在LL细胞中,尽管F(v)/F(m)的降低大于HL细胞,但UVR对XC脱环氧化作用没有显著影响。UVR对光保护的负面影响在HL细胞中更为明显,因为它们比LL细胞合成了更多的XC色素。当用二硫苏糖醇阻断XC活性以及用氯霉素(CAP)抑制PSII修复时,这一点得到了证实。当HL细胞中XC被阻断时,PAR + UVR和PAR处理之间F(v)/F(m)的差异降低消失。在UVR存在下用CAP孵育的细胞中观察到F(v)/F(m)有更高的降低和不完全恢复。这些反应证实,UVR对光保护机制有负面影响,导致PAR造成的损伤增加,特别是在HL适应细胞中,其中热耗散对PSII调节很重要。

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