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植物脱水素对多种逆境的响应 被引量:10
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作者 夏惠 林玲 +1 位作者 高帆 吕秀兰 《干旱地区农业研究》 CSCD 北大核心 2014年第4期47-52,共6页
综述了目前关于脱水素(Dehydrin,DHN)的研究进展,包括脱水素的蛋白结构特征、细胞定位及作用机制,脱水素在生物及非生物逆境下的转基因研究,脱水素的磷酸化修饰,脱水素的结合金属离子、清除活性氧、作为分子伴侣保护酶活性等特性。展望... 综述了目前关于脱水素(Dehydrin,DHN)的研究进展,包括脱水素的蛋白结构特征、细胞定位及作用机制,脱水素在生物及非生物逆境下的转基因研究,脱水素的磷酸化修饰,脱水素的结合金属离子、清除活性氧、作为分子伴侣保护酶活性等特性。展望了利用现代生物技术将脱水素用于提高植物对逆境的耐受力的应用前景,提出今后还需在脱水素作用机制、基因家族功能与生物胁迫相关性等几个方面进行深入研究。 展开更多
关键词 植物脱水素 结构 定位 基因表达 基因功能
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Photosynthesis of Resurrection Angiosperms 被引量:3
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作者 阳文龙 胡志昂 +1 位作者 王洪新 匡廷云 《Acta Botanica Sinica》 CSCD 2003年第5期505-508,共4页
Resurrection plants which are able to quickly reactivate after falling into a period of anabiosis caused by dehydration have been very rare among angiosperms, especially among dicotyledons whose chlorophyll content an... Resurrection plants which are able to quickly reactivate after falling into a period of anabiosis caused by dehydration have been very rare among angiosperms, especially among dicotyledons whose chlorophyll content and chloroplast structure little changed in the course of desiccation, therefore has been called homoiochlorophyllous desiccation-tolerant plants (HDTs). Another type of resurrection angiosperms that lost its chlorophyll dining desiccation is called poikilochlorophyllous desiccation-tolerant plants (PDTs). HDTs have been received more attention because of simplicity of protection mechanism which is much easy to the study and utilization of the desiccation tolerance of resurrection angiosperms. Recent advances in studies of photosynthesis of resurrection angiosperms indicate that photochemical activities are sensitive indicators for the study of physiological state of resurrection angiosperms during desiccation and rehydration. Photochemical activities of resurrection angiosperms are inhibited with loss of water similar to those of general plants, however, the magic thing is that they could reactivate rapidly during rehydration even losing more than 95% water. Up-regulations in xanthophyll cycle and antioxidative systems as well as preservation in integrity and stability of photosynthetic membranes during desiccation may be very important to desiccation tolerance of resurrection angiosperms. The fact that phosphate treatment in rehydration stage also strongly influences resurrection indicated importance of studies on rehydration stages of resurrection angiosperms. 展开更多
关键词 resurrection angiosperm PHOTOSYNTHESIS desiccation tolerance xanthophyll cycle ANTIOXIDANT stability of membranes
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The Protective Role of Xanthophyll Cycle in Resurrection Angiosperm Boea hygrometrica During Dehydration and Rehydration 被引量:4
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作者 阳文龙 胡志昂 +2 位作者 王洪新 单际修 匡廷云 《Acta Botanica Sinica》 CSCD 2003年第3期307-310,共4页
The protective role of xanthophyll cycle in resurrection angiosperm Boea hygrometrica (Bunge) R.Br. was investigated by analysis of the changes of chlorophyll fluorescence and xanthophyll cycle components in response ... The protective role of xanthophyll cycle in resurrection angiosperm Boea hygrometrica (Bunge) R.Br. was investigated by analysis of the changes of chlorophyll fluorescence and xanthophyll cycle components in response to dehydration and rehydration in detached leaves under very weak light condition (3 mumol photons.m(-2).s(-1)) and in the dark. With declines in the values of PSII photochemical efficiency (Fv/Fm), PSII actual quantum yield (Phi(PSII)), photochemical quenching (qP) and non-photochemical quenching (NPQ) during dehydration, zeaxanthin significantly increased in control Boea leaves under very weak light condition, while no zeaxanthin accumulation was detected in Boea leaves treated with dithiothreitol (DTT) and Boea leaves in the dark, and after 3 d rehydration, the parameters Fv/Fm, Phi(PSII), qP and NPQ showed full recovery in control Boea leaves under very weak light condition, but the parameters only underwent partial recovery in Boea leaves treated with DTT and Boea leaves in the dark, suggesting that the recovery of photosystem II (PSII) photochemical activities in Boea leaves was obviously affected by treatments with DTT and darkness, therefore, zeaxanthin may play an important protective role in desiccated Boea leaves even under very weak light conditions. 展开更多
关键词 chlorophyll fluorescence DESICCATION resurrection angiosperm xanthophyllcycle
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