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盐度和温度对两种海洋微藻和蓝细菌的生长、生产力、光合活性及细胞内活性氧的影响[《海洋环境研究》2023年4月;186:105932。2023年2月24日在线发表]

Influence of salinity and temperature on the growth, productivity, photosynthetic activity and intracellular ROS of two marine microalgae and cyanobacteria [Mar. Environ. Res. 2023 Apr; 186:105932. Epub 2023 Feb 24].

作者信息

Kholssi Rajaa, Lougraimzi Hanane, Moreno-Garrido Ignacio

机构信息

Composting Research Group, Faculty of Sciences, University of Burgos, Burgos, Spain; Institute of Marine Sciences of Andalusia (ICMAN-CSIC), Campus Río San Pedro, 11510, Puerto Real, Cádiz, Spain.

Laboratory of Plant, Animal and Agro-Industry Productions, Faculty of Sciences, Ibn Tofail University, BP: 242, 14000, Kenitra, Morocco.

出版信息

Mar Environ Res. 2023 Jul;189:106039. doi: 10.1016/j.marenvres.2023.106039. Epub 2023 Jun 5.

Abstract

Global Climate Change could change physical parameters in oceans, such as salinity and temperature. The impact of such changes in phytoplankton has not been well stated yet. In this study the effect of combination of three levels of temperature (20, 23, and 26 °C), and three levels of salinity (33, 36, and 39) on growth of a mixture co-cultivation of three common species from phytoplankton (one cyanobacteria, Synechococcus sp., and two microalgae, Chaetoceros gracilis, and Rhodomonas baltica), is monitored by flow cytometry under controlled cultivation conditions in a 96 h study. Chlorophyll content, enzymes activities and oxidative stress were also measured. Results demonstrate that cultures of Synechococcus sp. Exhibited a high growth at the highest temperature chosen in this study (26 °C) combined with the three selected salinity levels 33, 36, and 39. Nevertheless, Chaetoceros gracilis grew very slowly with the combination of high temperature (39 °C) and all salinities, while Rhodomonas baltica did not grow at temperatures higher than 23 °C. Maximum dry biomass and ash-free dry weight for the microalgal mixture were reached at salinity of 39 and temperature of 20 °C, the but highest chlorophyll fluorescence values were found at 30 salinity and 20 °C, decreasing as salinity and temperature increased.

摘要

全球气候变化可能会改变海洋中的物理参数,如盐度和温度。此类变化对浮游植物的影响尚未得到充分阐述。在本研究中,在可控培养条件下,通过流式细胞术在一项为期96小时的研究中监测了三种温度水平(20、23和26°C)与三种盐度水平(33、36和39)的组合对浮游植物中三种常见物种(一种蓝细菌,聚球藻属,以及两种微藻,纤细角毛藻和波罗的海红胞藻)混合共培养生长的影响。还测量了叶绿素含量、酶活性和氧化应激。结果表明,聚球藻属的培养物在本研究中选择的最高温度(26°C)与三种选定的盐度水平33、36和39组合下表现出高生长率。然而,纤细角毛藻在高温(39°C)与所有盐度组合下生长非常缓慢,而波罗的海红胞藻在高于23°C的温度下不生长。微藻混合物的最大干生物量和无灰干重在盐度为39且温度为20°C时达到,但最高叶绿素荧光值在盐度为30且温度为20°C时发现,随着盐度和温度的升高而降低。

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