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气候变化对谷类作物物候及其适应选择的影响。

The fingerprints of climate warming on cereal crops phenology and adaptation options.

机构信息

Department of Agronomy, Bahauddin Zakariya University, Multan, 60800, Pakistan.

Department of Agricultural Research for Northern Sweden, Swedish University of Agricultural Sciences, 90183, Umeå, Sweden.

出版信息

Sci Rep. 2020 Oct 22;10(1):18013. doi: 10.1038/s41598-020-74740-3.

Abstract

Growth and development of cereal crops are linked to weather, day length and growing degree-days (GDDs) which make them responsive to the specific environments in specific seasons. Global temperature is rising due to human activities such as burning of fossil fuels and clearance of woodlands for building construction. The rise in temperature disrupts crop growth and development. Disturbance mainly causes a shift in phenological development of crops and affects their economic yield. Scientists and farmers adapt to these phenological shifts, in part, by changing sowing time and cultivar shifts which may increase or decrease crop growth duration. Nonetheless, climate warming is a global phenomenon and cannot be avoided. In this scenario, food security can be ensured by improving cereal production through agronomic management, breeding of climate-adapted genotypes and increasing genetic biodiversity. In this review, climate warming, its impact and consequences are discussed with reference to their influences on phenological shifts. Furthermore, how different cereal crops adapt to climate warming by regulating their phenological development is elaborated. Based on the above mentioned discussion, different management strategies to cope with climate warming are suggested.

摘要

粮食作物的生长和发育与天气、日照长度和生长度日(GDD)有关,这使得它们对特定季节的特定环境有反应。由于人类活动,如燃烧化石燃料和为建筑建设清除林地,全球气温正在上升。温度升高会干扰作物的生长和发育。这种干扰主要导致作物物候发育的转变,并影响其经济产量。科学家和农民通过改变播种时间和品种转变来适应这些物候转变,这可能会增加或减少作物生长时间。尽管如此,气候变暖是一种全球性现象,无法避免。在这种情况下,可以通过农业管理、培育适应气候的基因型和增加遗传生物多样性来提高粮食作物产量,从而确保粮食安全。在这篇综述中,讨论了气候变暖及其影响和后果,以及它们对物候转变的影响。此外,还阐述了不同的粮食作物如何通过调节物候发育来适应气候变暖。基于上述讨论,提出了应对气候变暖的不同管理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ac1/7581754/2195dbfe9f1e/41598_2020_74740_Fig1_HTML.jpg

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