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Overexpression of MdMIPS1 enhances drought tolerance and water-use efficiency in apple 被引量:2
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作者 HU Ling-yu YUE Hong +4 位作者 ZHANG Jing-yun LI Yang-tian-su GONG Xiao-qing ZHOU Kun MA Feng-wang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2022年第7期1968-1981,共14页
Myo-inositol and its derivatives play important roles in the tolerance of higher plants to abiotic stresses,and myo-inositol-1-phosphate synthase(MIPS)is the rate-limiting enzyme in myo-inositol biosynthesis.In this s... Myo-inositol and its derivatives play important roles in the tolerance of higher plants to abiotic stresses,and myo-inositol-1-phosphate synthase(MIPS)is the rate-limiting enzyme in myo-inositol biosynthesis.In this study,we found that increased myo-inositol biosynthesis enhanced drought tolerance in MdMIPS1-overexpressing apple lines under shortterm progressive drought stress.The effect of myo-inositol appeared to be mediated by the increased accumulation of osmoprotectants such as glucose,sucrose,and proline,and by the increased activities of antioxidant enzymes that eliminate reactive oxygen species.Moreover,enhanced water-use efficiency(WUE)was observed in MdMIPS1-overexpressing apple lines under long-term moderate water deficit conditions that mimicked the water availability in the soil of the Loess Plateau.Enhanced WUE may have been associated with the synergistic regulation of osmotic balance and stomatal aperture mediated by increased myo-inositol biosynthesis.Taken together,our findings shed light on the positive effects of MdMIPS1-mediated myo-inositol biosynthesis on drought tolerance and WUE in apple. 展开更多
关键词 APPLE mdmips1 MYO-INOSITOL water deficit drought tolerance water-use efficiency
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苹果肌醇–1–磷酸合成酶基因MdMIPS1参与高温胁迫应答的功能分析
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作者 孙文静 李小艳 +4 位作者 张静允 周辉 黄小军 马锋旺 龚小庆 《园艺学报》 2025年第12期3143-3156,共14页
通过改变外源和内源苹果植株中的肌醇含量,并对其进行高温处理,解析肌醇在苹果响应高温胁迫中的功能。结果发现,高温胁迫引起苹果叶片枯黄萎蔫,活性氧、丙二醛和电导率迅速升高,叶绿素含量降低;然而100µmol·L^(-1)外源肌醇处... 通过改变外源和内源苹果植株中的肌醇含量,并对其进行高温处理,解析肌醇在苹果响应高温胁迫中的功能。结果发现,高温胁迫引起苹果叶片枯黄萎蔫,活性氧、丙二醛和电导率迅速升高,叶绿素含量降低;然而100µmol·L^(-1)外源肌醇处理显著缓解了高温对苹果植株造成的伤害。MdMIPS1编码肌醇合成的关键限速酶,其在高温胁迫下大量表达。利用实验室前期获得的MdMIPS1过表达的转基因株系(OE,高肌醇含量)进行高温处理,结果表明,与野生型植株相比,OE株系在高温下叶片失绿干枯症状比较轻微,电导率较低,叶绿素含量较高;高温下OE株系的气孔开度更大,光合系统效率更强;与野生型相比,OE植株在高温下表现出更低的活性氧水平、更高的抗氧化酶活性;并且一些编码热激蛋白的基因也在OE植株中表达水平更高。以上这些结果表明,提高肌醇水平能直接提高苹果植株对高温胁迫的抗性。 展开更多
关键词 苹果 肌醇 mdmips1 高温胁迫
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