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单一基因的等位基因变异增加了耐旱主食谷物的营养价值。

Allelic variation at a single gene increases food value in a drought-tolerant staple cereal.

机构信息

School of Agriculture and Food Sciences, University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Nat Commun. 2013;4:1483. doi: 10.1038/ncomms2450.

Abstract

The production of adequate agricultural outputs to support the growing human population places great demands on agriculture, especially in light of ever-greater restrictions on input resources. Sorghum is a drought-adapted cereal capable of reliable production where other cereals fail, and thus represents a good candidate to address food security as agricultural inputs of water and arable land grow scarce. A long-standing issue with sorghum grain is that it has an inherently lower digestibility. Here we show that a low-frequency allele type in the starch metabolic gene, pullulanase, is associated with increased digestibility, regardless of genotypic background. We also provide evidence that the beneficial allele type is not associated with deleterious pleiotropic effects in the modern field environment. We argue that increasing the digestibility of an adapted crop is a viable way forward towards addressing food security while maximizing water and land-use efficiency.

摘要

为了养活不断增长的人口,农业需要生产足够的农产品,尤其是在投入资源受到越来越多限制的情况下。高粱是一种适应干旱的谷类作物,在其他谷物无法生长的地方也能可靠生长,因此,高粱是解决粮食安全问题的一个很好的候选作物,因为水资源和耕地农业投入品变得越来越稀缺。高粱谷物长期存在的一个问题是其内在消化率较低。在这里,我们发现淀粉代谢基因普鲁兰酶中的一个低频等位基因类型与消化率的提高有关,而与基因型背景无关。我们还提供了证据表明,有益的等位基因类型与现代田间环境中有害的多效性无关。我们认为,提高适应作物的消化率是在最大限度地提高水和土地利用效率的同时解决粮食安全问题的可行途径。

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