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Physiological responses of artificial moss biocrusts to dehydration-rehydration process and heat stress on the Loess Plateau, China 被引量:8
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作者 BU Chongfeng WANG Chun +2 位作者 YANG Yongsheng ZHANG Li Matthew A BOWKER 《Journal of Arid Land》 SCIE CSCD 2017年第3期419-431,共13页
Ex-situ cultivation of biological soil crusts (biocrusts) is a promising technology to produce materials that can induce the recovery of biocrusts in the field for the purposes of preventing soil erosion and improvi... Ex-situ cultivation of biological soil crusts (biocrusts) is a promising technology to produce materials that can induce the recovery of biocrusts in the field for the purposes of preventing soil erosion and improving hydrological function in degraded ecosystems. However, the ability of artificially cultivated biocrusts to survive under adverse field conditions, including drought and heat stresses, is still relatively unknown. Mosses can bolster biocrust resistance to the stresses (e.g., drought and heat) and the resistance may be introduced prior to field cultivation. In this study, we subjected the well-developed artificial moss biocrusts (dominant species of Didjmodon vinealis (Brid.) Zand.) that we cultivated in the phytotron to a dehydration-rehydration experiment and also a heat stress experiment and measured the activities of protective enzymes (including peroxidase (POD), superoxide dismutase (SOD), and catalase (CAT)) and the contents of osmoregulatory substances (including soluble proteins and soluble sugars) and malondialdehyde (MDA, an indicator of oxidative stress) in the stem and leaf fragments of mosses. The results showed that, during the dehydration process, the activities of protective enzymes and the contents of osmoregulatory substances and MDA gradually increased with increasing duration of drought stress (over 13 days). During the rehydration process, values of these parameters decreased rapidly after 1 d of rehydration. The values then showed a gradual decrease for 5 days, approaching to the control levels. Under heat stress (45℃), the activities of protective enzymes and the content of soluble proteins increased rapidly within 2 h of heat exposure and then decreased gradually with increasing duration of heat exposure. In contrast, the contents of soluble sugars and MDA always increased gradually with increasing duration of heat exposure. This study indicates that artificial moss biocrusts possess a strong drought resistance and this resistance can be enhanced after a gradual dehydration treatment. This study also indicates that artificial moss biocrusts can only resist short-term heat stress (not long-term heat stress). These findings suggest that short-term heat stress or prolonged drought stress could be used to elevate the resistance of artificial moss biocrusts to adverse conditions prior to field reintroduction. 展开更多
关键词 dehydration-rehydration heat stress Didymodon vinealis (Brid.) Zand. RESISTANCE Loess Plateau
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沙漠生物土壤结皮中真藓(Bryum argenteum)和土生对齿藓(Didymodon vinealis)对降雪的生理响应 被引量:7
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作者 谢敏 回嵘 +4 位作者 刘立超 杨昊天 王艳莉 魏文斐 王雪芹 《中国沙漠》 CSCD 北大核心 2017年第1期116-123,共8页
以腾格里沙漠东南缘人工固沙植被区藓类结皮优势种真藓(Bryum argenteum)和土生对齿藓(Didymodon vinealis)为研究对象,在野外条件下设置4个降雪处理,分别是无降雪(对照)、1/2降雪、1倍降雪、2倍降雪,降雪后测定植株光合色素含量、脯氨... 以腾格里沙漠东南缘人工固沙植被区藓类结皮优势种真藓(Bryum argenteum)和土生对齿藓(Didymodon vinealis)为研究对象,在野外条件下设置4个降雪处理,分别是无降雪(对照)、1/2降雪、1倍降雪、2倍降雪,降雪后测定植株光合色素含量、脯氨酸含量、可溶性糖含量、可溶性蛋白含量以及丙二醛(MDA)含量,研究结皮层2种藓类植物对降雪的生理生态响应及其差异性。结果表明:随降雪量增加,真藓和土生对齿藓光合色素含量和可溶性蛋白含量均升高,且土生对齿藓含量上升趋势更明显;随降雪量增加,2物种脯氨酸含量、可溶性糖含量及丙二醛(MDA)含量均降低,且土生对齿藓可溶性糖含量与MDA含量下降趋势更明显。冬季降雪能够对结皮层藓类植物光合作用和生理活性起到一定促进作用;土生对齿藓对降雪的响应更明显。降雪量增加可能会改变藓类结皮层物种组成和结构,并对维持荒漠生态系统健康产生重要影响。 展开更多
关键词 降雪 真藓(Bryum argenteum) 土生对齿藓(Didymodon vinealis) 生理响应 差异
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Osmotic Adjustment of Soil Biocrust Mosses in Response to Desiccation Stress 被引量:1
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作者 ZHAO Xin SHI Yong +2 位作者 LIU Yang JIA Rong-Liang LI Xin-Rong 《Pedosphere》 SCIE CAS CSCD 2015年第3期459-467,共9页
Biological soil crusts(biocrusts) widely occur in semiarid and arid regions throughout the world and play important roles in many desert ecosystems: protecting soil from wind erosion and detaining nutrient-rich dust a... Biological soil crusts(biocrusts) widely occur in semiarid and arid regions throughout the world and play important roles in many desert ecosystems: protecting soil from wind erosion and detaining nutrient-rich dust and organic carbon. An experiment was conducted in the Shapotou revegetated area of the Tengger Desert, Ningxia Hui Autonomous Region of China to investigate the physiological responses of the dominant biocrust mosses, Bryum argenteum and Didymodon vinealis, to desiccant stress using different osmotic adjustments. B. argenteum and D. vinealis accumulated K+, total soluble sugar, sucrose, trehalose, proline, and glycine betaine during desiccation. The proline content of B. argenteum was about two times higher than that of D. vinealis. The K+and glycine betaine contents in B. argenteum were slightly higher than those in D. vinealis. In contrast, the total soluble sugar, sucrose,and trehalose contents in D. vinealis were about 3 to 5 times higher than those in B. argenteum. With gradual desiccation stress,the Na+content of B. argenteum was low and did not significantly change. On the contrary, the Na+content of D. vinealis sharply increased and reached a very high level of about 10 to 18 times higher than that of B. argenteum, indicating that B. argenteum and D. vinealis gradually adapted to desiccation stress by osmotic substances accumulation to different degrees. 展开更多
关键词 biological soil crusts Bryum argenteum compatible solute Didymodon vinealis drought stress
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