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Combined effects of elevated temperature and CO2 enhance threat from low temperature hazard to winter wheat growth in North China

机译:高温和二氧化碳的共同作用增强了低温危害对华北冬小麦生长的威胁

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摘要

We examined the growth and yield of winter wheat (Triticum aestivum) in response to the predicted elevated CO2 concentration and temperature to determine the mechanism of the combined impacts in North China Plain. An elevated treatment (CO2: 600 μmol mol−1, temperature: +2.5~3.0 °C, ECTI) and a control treatment (ambient CO2 and temperature, CK) were conducted in open-top chambers from October 2013 to June 2016. Post-winter growth stages of winter wheat largely advanced and shifted to a cooler period of nature season under combined impact of elevated CO2 and temperature during the entire growing season. The mean temperature and accumulated photosynthetic active radiations (PAR) over the post-winter growing period in ECTI decreased by 0.8–1.5 °C and 10–13%, respectively compared with that in CK, negatively impacted winter wheat growth. As a result, winter wheat in ECTI suffered from low temperature hazards during critical period of floret development and anthesis and grain number per ear was reduced by 10–31% in the three years. Although 1000-kernel weight in ECTI increased by 8–9% mainly due to elevated CO2, increasing CO2 concentration from 400 to 600 μmol mol−1 throughout the growth stage was not able to offset the adverse effect of warming on winter wheat growth and yield.
机译:我们根据预测的升高的CO2浓度和温度检查了冬小麦(Triticum aestivum)的生长和产量,以确定华北平原综合影响的机理。在开式室中进行了高温处理(CO2:600μmolmol -1 ,温度:+ 2.5〜3.0 C,ECTI)和对照处理(环境CO2和温度,CK)。 2013年10月至2016年6月。在整个生长季节,由于二氧化碳和温度升高的共同作用,冬小麦的冬后生长阶段大大提前,并转移到自然季节的凉爽时期。与CK相比,ECTI冬后生长期的平均温度和累积的光合活性辐射(PAR)分别降低了0.8–1.5°C和10–13%,这对冬小麦的生长产生了负面影响。结果,在小花发育的关键时期,ECTI中的冬小麦遭受了低温危害,在这三年中,花粉和每穗的籽粒数量减少了10-31%。尽管ECTI中1000内核的重量增加了8–9%,这主要是由于CO2升高,但是在整个生长阶段,CO2浓度从400μmolmol -1 增加不能抵消冬小麦生长和单产升高。

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