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相对湿度降低会加剧热应激对水稻籽粒重量和品质的不利影响。

Detrimental effects of heat stress on grain weight and quality in rice ( L.) are aggravated by decreased relative humidity.

作者信息

Yan Haoliang, Wang Chunhu, Liu Ke, Tian Xiaohai

机构信息

Hubei Collaborative Innovation Center for Grain Industry/College of Agriculture, Yangtze University, Jingzhou Hubei, China.

出版信息

PeerJ. 2021 Apr 9;9:e11218. doi: 10.7717/peerj.11218. eCollection 2021.

Abstract

There is concern over the impact of global warming on rice production due increased heat stress, coupled with decreased relative humidity (RH). It is unknown how rice yield and quality are affected by heat stress and decreased RH during the grain filling stage. We conducted experiments in controlled growth chambers on six rice cultivars, varying in heat tolerance using 12 combinative treatments of three factors: two RH levels (75% and 85%), three temperature levels (the daily maximum temperature at 33 °C, 35 °C, and 37 °C), and two durations (8 d and 15 d after anthesis). Results showed that RH75% with temperature treatments significantly reduced grain weight, which was higher than RH85%. The same trend was also observed for both head rice rate and chalkiness. R168 was the most heat-tolerant cultivar, but it still had some differences in grain weight, head rice rate, and chalkiness between the two RH regimes. The lower RH was most detrimental at 35 °C, and to a lesser extent at 33 °C, but had a negligible effect at 37 °C. Our results provide a better understanding of temperature and RH's interaction effects on rice quality during the grain filling stage, suggesting that RH should be considered in heat tolerance screening and identification to facilitate rice breeding and genetic improvement.

摘要

由于热胁迫加剧以及相对湿度(RH)降低,全球变暖对水稻生产的影响引发了人们的关注。目前尚不清楚灌浆期的热胁迫和相对湿度降低如何影响水稻产量和品质。我们在可控生长室内对六个耐热性不同的水稻品种进行了实验,采用了三个因素的12种组合处理:两个相对湿度水平(75%和85%)、三个温度水平(日最高温度分别为33℃、35℃和37℃)以及两个持续时间(开花后8天和15天)。结果表明,温度处理下相对湿度75%显著降低了粒重,且高于相对湿度85%时的粒重。整精米率和垩白度也呈现相同趋势。R168是最耐热的品种,但在两种相对湿度条件下,其粒重、整精米率和垩白度仍存在一些差异。较低的相对湿度在35℃时危害最大,在33℃时危害较小,但在37℃时影响可忽略不计。我们的研究结果有助于更好地理解灌浆期温度和相对湿度对水稻品质的交互作用,表明在耐热性筛选和鉴定中应考虑相对湿度,以促进水稻育种和遗传改良。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0198/8040870/ce4d19f46f49/peerj-09-11218-g001.jpg

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