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水稻同期干旱和高温胁迫:可能是预测气候变化的结果:对产量性状、食用特性和促进健康的化合物的影响。

Concurrent Drought and Temperature Stress in Rice-A Possible Result of the Predicted Climate Change: Effects on Yield Attributes, Eating Characteristics, and Health Promoting Compounds.

机构信息

Department of Plant Breeding, Swedish University of Agricultural Sciences, P.O. Box 101, 23053 Alnarp, Sweden.

Department of Food Technology, Engineering and Nutrition, Lund University, P.O. Box 124, 22100 Lund, Sweden.

出版信息

Int J Environ Res Public Health. 2019 Mar 22;16(6):1043. doi: 10.3390/ijerph16061043.

Abstract

Despite the likely increasing co-occurrence of drought and heat stress, not least in equatorial regions, due to climate change, little is known about the combinational effect of these stresses on rice productivity and quality. This study evaluated the impact of simultaneous drought and temperature stress on growth, grain yield, and quality characteristics of seven rice cultivars from Rwanda, grown in climate chambers. Two temperature ranges-23/26 °C night/day and 27/30 °C night/day-together with single or repeated drought treatments, were applied during various plant developmental stages. Plant development and yield were highly influenced by drought, while genotype impacted the quality characteristics. The combination of a high temperature with drought at the seedling and tillering stages resulted in zero panicles for all evaluated cultivars. The cultivar 'Intsindagirabigega' was most tolerant to drought, while 'Zong geng' was the most sensitive. A "stress memory" was recorded for 'Mpembuke' and 'Ndamirabahinzi', and these cultivars also had a high content of bioactive compounds, while 'Jyambere' showed a high total protein content. Thus, climate change may severely impact rice production. The exploitation of genetic diversity to breed novel rice cultivars that combine drought and heat stress tolerance with high nutritional values is a must to maintain food security.

摘要

尽管由于气候变化,干旱和热应激的同时发生的可能性越来越大,尤其是在赤道地区,但人们对这些应激对水稻生产力和质量的综合影响知之甚少。本研究评估了在气候室内生长的来自卢旺达的 7 个水稻品种同时受到干旱和温度胁迫对生长、籽粒产量和品质特性的影响。在不同的植物发育阶段,应用了两种温度范围(夜间/白天 23/26°C 和夜间/白天 27/30°C)以及单一或重复干旱处理。干旱对植物发育和产量有很大影响,而基因型则影响品质特性。在幼苗和分蘖期高温与干旱相结合,导致所有评估品种均无穗。品种“Intsindagirabigega”对干旱的耐受性最强,而“Zong geng”则最敏感。“Mpembuke”和“Ndamirabahinzi”记录了“应激记忆”,这些品种还含有丰富的生物活性化合物,而“Jyambere”则含有较高的总蛋白含量。因此,气候变化可能会严重影响水稻生产。利用遗传多样性培育新型水稻品种,将耐旱耐热性与高营养价值相结合,是维护粮食安全的必要条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32d1/6465994/5337de6a5d6a/ijerph-16-01043-g001.jpg

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