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温度升高可抵消紫外线辐射对铜绿微囊藻和罗氏藻生长和光合效率的负面影响。

Increasing Temperature Counteracts the Negative Effect of UV Radiation on Growth and Photosynthetic Efficiency of Microcystis aeruginosa and Raphidiopsis raciborskii.

机构信息

Laboratory of Ecology and Physiology of Phytoplankton, Department of Plant Biology, University of Rio de Janeiro State, Rio de Janeiro, RJ, Brazil.

Laboratory of Aquatic Ecology, Department of Biology, Federal University of Juiz de Fora, Juiz de Fora, MG, Brazil.

出版信息

Photochem Photobiol. 2021 Jul;97(4):753-762. doi: 10.1111/php.13377. Epub 2021 Jan 18.

Abstract

High temperature can promote cyanobacterial blooms, whereas ultraviolet radiation (UVR) can potentially depress cyanobacterial growth by damaging their photosynthetic apparatus. Although the damaging effect of UVR has been well documented, reports on the interactive effects of UV radiation exposure and warming on cyanobacteria remain scarce. To better understand the combined effects of temperature and UVR on cyanobacteria, two strains of nuisance species, Microcystis aeruginosa (MIRF) and Raphidiopsis raciborskii (formerly Cylindrospermopsis raciborskii, CYRF), were grown at 24°C and 28°C and were daily exposed to UVA + UVB (PAR + UVA+UVB) or only UVA (PAR + UVA) radiation. MIRF and CYRF growth rates were most affected by PAR + UVA+UVB treatment and to a lesser extent by the PAR + UVA treatment. Negative UVR effects on growth, Photosystem II (PSII) efficiency and photosynthesis were pronounced at 24°C when compared to that at 28°C. Our results showed a cumulative negative effect on PSII efficiency in MIRF, but not in CYRF. Hence, although higher temperature ameliorates UVR damage, interspecific differences may lead to deviating impacts on different species, and combined elevated temperature and UVR stress could influence species competition.

摘要

高温可以促进蓝藻水华的形成,而紫外线辐射(UVR)可能通过破坏其光合作用装置来抑制蓝藻的生长。虽然 UVR 的破坏作用已有充分的记录,但关于紫外线辐射暴露和升温对蓝藻的相互作用影响的报告仍然很少。为了更好地理解温度和 UVR 对蓝藻的综合影响,我们培养了两种有害物种,铜绿微囊藻(MIRF)和束丝藻(以前称为柱孢鱼腥藻,CYRF),分别在 24°C 和 28°C 下生长,并每天接受 UVA+UVB(PAR+UVA+UVB)或仅 UVA(PAR+UVA)辐射。MIRF 和 CYRF 的生长速率受 PAR+UVA+UVB 处理的影响最大,受 PAR+UVA 处理的影响较小。与 28°C 相比,24°C 时 UVR 对生长、光系统 II(PSII)效率和光合作用的负面影响更为明显。我们的结果表明,MIRF 中的 PSII 效率受到累积的负面影响,但在 CYRF 中则没有。因此,尽管较高的温度减轻了 UVR 的破坏,但种间差异可能导致对不同物种产生不同的影响,并且升高的温度和 UVR 压力的综合影响可能会影响物种竞争。

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