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Aβ-Carotene Ketolase Gene NfcrtO from Subaerial Cyanobacteria Confers Drought Tolerance in Rice
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作者 GAO Ningning YE Shuifeng +7 位作者 ZHANG Yu ZHOU Liguo MA Xiaosong YU Hanxi LI Tianfei HAN Jing liu zaochang LUO Lijun 《Rice science》 SCIE CSCD 2024年第1期62-76,共15页
Nostoc flagelliforme is a terrestrial cyanobacterium that can resist many types of stressors,including drought,ultraviolet radiation,and extreme temperatures.In this study,we identified the drought tolerance gene Nfcr... Nostoc flagelliforme is a terrestrial cyanobacterium that can resist many types of stressors,including drought,ultraviolet radiation,and extreme temperatures.In this study,we identified the drought tolerance gene NfcrtO,which encodes aβ-carotene ketolase,through screening the transcriptome of N.flagelliforme under water loss stress.Prokaryotic expression of NfcrtO under 0.6 mol/L sorbitol or under 0.3 mol/L NaCl stress significantly increased the growth rate of Escherichia coli.When NfcrtO was heterologously expressed in rice,the seedling height and root length of NfcrtO-overexpressing rice plants were significantly higher than those of the wild type(WT)plants grown on½Murashige and Skoog solid medium with 120 mmol/L mannitol at the seedling stage.Transcriptome analysis revealed that NfcrtO was involved in osmotic stress,antioxidant,and other stress-related pathways.Additionally,the survival rate of the NfcrtO-overexpression lines was significantly higher than that of the WT line under both hydroponic stress(24%PEG and 100 mmol/L H_(2)O_(2))and soil drought treatment at the seedling stage.Physiological traits,including the activity levels of superoxide dismutase,peroxidase,catalase,total antioxidant capacity,and the contents of proline,trehalose,and soluble sugar,were significantly improved in the NfcrtO-overexpression lines relative to those in the WT line under 20%PEG treatment.Furthermore,when water was withheld at the booting stage,the grain yield per plant of NfcrtO-overexpression lines was significantly higher than that of the WT line.Yeast two-hybrid analysis identified interactions between NfcrtO and Dna J protein,E3 ubiquitin-protein ligase,and pyrophosphate-energized vacuolar membrane proton pump.Thus,heterologous expression of NfcrtO in rice could significantly improve the tolerance of rice to osmotic stress,potentially facilitating the development of new rice varieties. 展开更多
关键词 antioxidant enzyme β-carotene ketolase drought resistance Nostoc flagelliforme osmotic stress RICE transcriptome analysis
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水稻抗旱相关基因OsDR1的克隆、鉴定及表达分析
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作者 周立国 刘灶长 +4 位作者 孔德艳 徐凯 夏辉 吴金红 罗利军 《上海农业学报》 2022年第4期76-83,共8页
根据基因表达谱芯片结果,在陆稻品种‘IRAT109’中筛选到抗旱相关基因OsDR1,利用5’-RACE和3’-RACE方法,克隆OsDR1基因的全长cDNA序列,明确基因的转录起始和终止位点。结果显示:OsDR1基因编码的蛋白是卤酸脱卤素酶,具体分子功能未知。q... 根据基因表达谱芯片结果,在陆稻品种‘IRAT109’中筛选到抗旱相关基因OsDR1,利用5’-RACE和3’-RACE方法,克隆OsDR1基因的全长cDNA序列,明确基因的转录起始和终止位点。结果显示:OsDR1基因编码的蛋白是卤酸脱卤素酶,具体分子功能未知。qPCR定量表达分析结果表明,OsDR1基因受低温、盐、PEG模拟干旱等多种逆境诱导表达;在叶片中表达受光照诱导和调节,并且在24 h光周期内呈节律性变化。 展开更多
关键词 节水抗旱稻 OsDR1基因 卤酸脱卤素酶 抗旱性
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栽培稻响应干旱胁迫的生理及分子调控机制 被引量:2
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作者 徐凯 周立国 +9 位作者 余舜武 陈守俊 马孝松 楼巧君 刘鸿艳 廖志刚 夏辉 刘灶长 陈亮 罗利军 《上海农业学报》 2022年第4期56-65,共10页
栽培稻作为主要的粮食作物,消耗了大量的农业用水。解析栽培稻抵抗干旱胁迫的调控机制,培育节水抗旱稻,对于节约淡水资源、保障粮食安全具有重要意义。在长期的进化过程中,栽培稻形成了渗透调节、活性氧有毒物质的清除、气孔调节等多种... 栽培稻作为主要的粮食作物,消耗了大量的农业用水。解析栽培稻抵抗干旱胁迫的调控机制,培育节水抗旱稻,对于节约淡水资源、保障粮食安全具有重要意义。在长期的进化过程中,栽培稻形成了渗透调节、活性氧有毒物质的清除、气孔调节等多种生理生化机制来适应干旱胁迫,这其中涉及大量基因参与的分子调控途径。笔者结合其研究对近年来在栽培稻响应干旱胁迫的生理生化过程、抗旱基因挖掘及其参与的分子调控机制方面取得的进展进行综述,并对存在的问题和未来的发展趋势进行讨论。 展开更多
关键词 水稻 抗旱性 生理机制 功能基因 调控机制
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