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首页> 外文期刊>Journal of Applied Phycology >UV-B resistance as a criterion for the selection of desert microalgae to be utilized for inoculating desert soils
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UV-B resistance as a criterion for the selection of desert microalgae to be utilized for inoculating desert soils

机译:抗紫外线-B作为选择用于接种沙漠土壤的沙漠微藻的标准

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摘要

The adaption capability of microalgae species to intense UV-B radiation is an important feature for their survival under the harsh growth conditions they have to face when used for inoculating unconsolidated sand soils in desert areas. In this study, the responses of photosynthetic activity, reactive oxygen species (ROS) generation, and DNA strand breaks to UV-B radiation in four microalgae isolated from artificially induced biological soil crusts were investigated. It was found that low UV-B doses easily inhibited the photosynthetic activity and induced serious DNA damage in Chlorella vulgaris. Microcoleus vaginatus showed the capability to withstand only moderate doses of UV-B, while Nostoc was capable of facing high doses of UV-B due to its lower generation of ROS and higher capability to repair photosystem II (PSII) and DNA damages. On the other hand, Scytonema javanicum showed additional strategies to survive UV-B irradiance, namely the closure of PSII when ROS generation increased rapidly, in addition to a high repair ability of PSII and DNA damage. The results obtained point out different resistance and defense mechanisms of the four microalgae in response to UV-B irradiance and suggest that the strain of Nostoc sp. tested is the most suitable for surviving under the high UV irradiation levels typical of desertified areas.
机译:微藻物种对强烈的UV-B辐射的适应能力是其在沙漠地区接种未固结的沙土时必须面对的恶劣生长条件下生存的重要特征。在这项研究中,研究了从人工诱导的生物土壤结壳中分离出的四种微藻中的光合作用活性,活性氧(ROS)生成和DNA链断裂对UV-B辐射的响应。发现低剂量的UV-B容易抑制寻常小球藻的光合活性并引起严重的DNA损伤。阴道微隐花展示出仅能承受中等剂量的UV-B的能力,而Nostoc却能够面对高剂量的UV-B,因为它的ROS生成量较低,并且修复光系统II(PSII)和DNA损伤的能力更高。另一方面,爪哇沙门氏菌(Scytonema javanicum)除具有较高的PSII修复能力和DNA损伤能力外,还显示了其他可抵抗UV-B辐射的策略,即当ROS生成迅速增加时,关闭PSII。获得的结果指出了四种微藻对UV-B辐照的不同抗性和防御机制,并提出了Nostoc sp。的菌株。经过测试的产品最适合在荒漠化地区典型的高紫外线辐射下生存。

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