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首页> 外文期刊>Soil Biology & Biochemistry >Effects of elevated CO2 concentration on water productivity and antioxidant enzyme activities of rice (Oryza sativa L.) under water deficit stress
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Effects of elevated CO2 concentration on water productivity and antioxidant enzyme activities of rice (Oryza sativa L.) under water deficit stress

机译:CO2浓度升高对水资源缺陷应力水稻(Oryza Sativa L.)水生产率和抗氧化酶活性的影响

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Rice is the foremost staple food in India, safeguarding the food security of the country. Rising levels of atmospheric CO2 concentration affect water productivity and antioxidant enzyme activities of rice, yet the interactive effects of elevated CO2 (ECO2) and water deficit stress (WDS) on rice has remained unclear. The present experiment was conducted for two years under Open Top Chambers (OTCs) to elucidate the effects of ambient CO2 (400 +/- 10 mu mol mol(-1)) and two levels of ECO2 (550 20 mu mol mol(-1) and 700 +/- 20 mu mol mol(-1)) under well watered condition (WW) and water deficit stressed to -60 kPa on water productivity (Wp) and antioxidant enzyme activities in rice. In water deficit treatments, measured amount of water was applied as surface irrigation, each time the soil water potential as measured by tensiometers, reached 60 kPa. The results showed that ECO2 increased the growth and yield characteristics, e.g., leaf area index and productive tillers, resulting in an increase in grain and straw yield under both WW and WDS. The increased concentration of antioxidant enzymes like proline, catalase and peroxidase under ECO2 helped the plant to combat the adverse effects of WDS. Under ECO2, there was a decrease in irrigation water input by 5-14%, resulting in increase in water productivity (Wp) by 35-49% under different water regimes. ECO2 had positive effect on plant height, productive tillers, grain and straw yields even under WDS because the temperature at our study site did not increase beyond 33 degrees C during rice reproductive phase. Our data provides an opportunity to test theoretical models for evaluating rice production under climate change scenario.
机译:米是印度最重要的主食,保护该国的粮食安全。大气CO 2浓度的水平上升影响水生产率和抗氧化酶活性水稻,但升高的CO2(ECO2)和水赤字应力(WDS)对水稻的互动效果尚不清楚。本实验在开口顶腔(OTCS)下进行两年,以阐明环境CO2(400 +/-10μmol(-1))和两种ECO2(55020μmol(-1)的影响在浇水条件下(WW)(WW)的700+/-20μmol(-1))和水分生产率(WP)和水稻中抗氧化酶活性的水分缺陷和水缺损。在水缺陷治疗中,每次通过张力计测量的土壤水电位达到60kPa时,将测量的水量施加为表面灌溉。结果表明,ECO2增加了生长和产量特征,例如叶面积指数和生产分蘖,导致WW和WDS下的晶粒和秸秆产量增加。在Eco2下脯氨酸,过氧化氢酶和过氧化物酶等抗氧化酶的浓度增加有助于植物对WDS的不良反应。在Eco2下,灌溉水投入减少5-14%,导致水生产率增加(WP)在不同的水中制度下的35-49%。 ECO2对植物高度,生产分蘖,谷物和稻草产生的积极影响,即使在WDS下,由于我们的研究现场的温度在水稻生殖期期间的温度不会超过33摄氏度。我们的数据为在气候变化方案下测试了评估水稻产量的理论模型的机会。

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