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气候变化导致非洲干旱胁迫下普通豆的营养质量和适宜种植区减少。

Reduction in nutritional quality and growing area suitability of common bean under climate change induced drought stress in Africa.

机构信息

Plant & AgriBiosciences Research Centre (PABC), Ryan Institute, National University of Ireland Galway, University Road, Galway, H91 REW4, Ireland.

International Center for Tropical Agriculture (CIAT), Km. 17 Recta Cali-Palmira A. A., 6713, Cali, Colombia.

出版信息

Sci Rep. 2018 Nov 1;8(1):16187. doi: 10.1038/s41598-018-33952-4.

Abstract

Climate change impacts on food security will involve negative impacts on crop yields, and potentially on the nutritional quality of staple crops. Common bean is the most important grain legume staple crop for human diets and nutrition worldwide. We demonstrate by crop modeling that the majority of current common bean growing areas in southeastern Africa will become unsuitable for bean cultivation by the year 2050. We further demonstrate reductions in yields of available common bean varieties in a field trial that is a climate analogue site for future predicted drought conditions. Little is known regarding the impact of climate change induced abiotic stresses on the nutritional quality of common beans. Our analysis of nutritional and antinutritional compounds reveals that iron levels in common bean grains are reduced under future climate-scenario relevant drought stress conditions. In contrast, the levels of protein, zinc, lead and phytic acid increase in the beans under such drought stress conditions. This indicates that under climate-change induced drought scenarios, future bean servings by 2050 will likely have lower nutritional quality, posing challenges for ongoing climate-proofing of bean production for yields, nutritional quality, human health, and food security.

摘要

气候变化对粮食安全的影响将包括对作物产量的负面影响,并且可能对主食作物的营养质量产生影响。普通豆是全世界人类饮食和营养中最重要的粮食豆类主食。我们通过作物模型证明,到 2050 年,东南非地区的大部分当前普通豆种植区将不再适合豆科植物种植。我们进一步在一个田间试验中证明,未来预测的干旱条件下的气候模拟站点,现有普通豆品种的产量将会减少。关于气候变化引起的非生物胁迫对普通豆营养质量的影响知之甚少。我们对营养和抗营养化合物的分析表明,在与未来气候情景相关的干旱胁迫条件下,普通豆粒中的铁含量降低。相比之下,在这种干旱胁迫条件下,豆类中的蛋白质、锌、铅和植酸水平会增加。这表明,在气候变化引起的干旱情景下,到 2050 年,未来的豆类食用量可能会降低营养质量,这对为产量、营养质量、人类健康和粮食安全进行抗气候豆类生产提出了挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b9d/6212502/3e09731c5703/41598_2018_33952_Fig1_HTML.jpg

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