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水华蓝藻束丝藻的成功:基因型的变异性支持其对光照和温度胁迫的可变响应。

The success of the bloom-forming cyanobacteria Planktothrix: Genotypes variability supports variable responses to light and temperature stress.

机构信息

UMR 7245 Molécules de Communication et Adaptations des Microorganismes (MCAM), Muséum National d'Histoire Naturelle, CNRS, CP 39, 57 rue Cuvier, Paris, 75005, France.

UMR 7245 Molécules de Communication et Adaptations des Microorganismes (MCAM), Muséum National d'Histoire Naturelle, CNRS, CP 39, 57 rue Cuvier, Paris, 75005, France.

出版信息

Harmful Algae. 2022 Aug;117:102285. doi: 10.1016/j.hal.2022.102285. Epub 2022 Jul 2.

Abstract

Cyanobacterial blooms can modify the dynamic of aquatic ecosystems and have harmful consequences for human activities. Moreover, cyanobacteria can produce a variety of cyanotoxins, including microcystins, but little is known about the role of environmental factors on the prevalence of microcystin producers in the cyanobacterial bloom dynamics. This study aimed to better understand the success of Planktothrix in various environments by unveiling the variety of strategies governing cell responses to sudden changes in light intensity and temperature. The cellular responses (photosynthesis, photoprotection, heat shock response and metabolites synthesis) of four Planktothrix strains to high-light or high-temperature were studied, focusing on how distinct ecotypes (red- or green-pigmented) and microcystin production capability affect cyanobacteria's ability to cope with such abiotic stimuli. Our results showed that high-light and high-temperature impact different cellular processes and that Planktothrix responses are heterogeneous, specific to each strain and thus, to genotype. The ability of cyanobacteria to cope with sudden increase in light intensity and temperature was not related to red- or green-pigmented ecotype or microcystin production capability. According to our results, microcystin producers do not cope better to high-light or high-temperature and microcystin content does not increase in response to such stresses.

摘要

蓝藻水华可以改变水生生态系统的动态,对人类活动产生有害影响。此外,蓝藻可以产生多种蓝藻毒素,包括微囊藻毒素,但对于环境因素对蓝藻水华动态中微囊藻毒素产生菌流行的影响知之甚少。本研究旨在通过揭示控制细胞对光强和温度突然变化的反应的各种策略,更好地了解浮游植物在各种环境中的成功。研究了四种浮游植物菌株对高光或高温的细胞反应(光合作用、光保护、热激反应和代谢物合成),重点研究了不同生态型(红色或绿色着色)和微囊藻毒素产生能力如何影响蓝藻应对这种非生物刺激的能力。研究结果表明,高光和高温会影响不同的细胞过程,而浮游植物的反应是异质的,特定于每个菌株,因此也是特定于基因型的。蓝藻应对光强和温度突然增加的能力与红色或绿色生态型或微囊藻毒素产生能力无关。根据我们的结果,微囊藻毒素产生菌在应对高光或高温时并没有更好的应对能力,而且微囊藻毒素含量也不会因这些应激而增加。

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