Institute of Applied Ecology, Nanjing Agricultural University, Nanjing, China.
Institute of Crop Sciences, Chinese Academy of Agricultural Sciences/Key Laboratory of Crop Physiology and Ecology, Ministry of Agriculture, Beijing, China.
Glob Chang Biol. 2017 Nov;23(11):4728-4738. doi: 10.1111/gcb.13737. Epub 2017 Jun 1.
Breeding high-yielding rice cultivars through increasing biomass is a key strategy to meet rising global food demands. Yet, increasing rice growth can stimulate methane (CH ) emissions, exacerbating global climate change, as rice cultivation is a major source of this powerful greenhouse gas. Here, we show in a series of experiments that high-yielding rice cultivars actually reduce CH emissions from typical paddy soils. Averaged across 33 rice cultivars, a biomass increase of 10% resulted in a 10.3% decrease in CH emissions in a soil with a high carbon (C) content. Compared to a low-yielding cultivar, a high-yielding cultivar significantly increased root porosity and the abundance of methane-consuming microorganisms, suggesting that the larger and more porous root systems of high-yielding cultivars facilitated CH oxidation by promoting O transport to soils. Our results were further supported by a meta-analysis, showing that high-yielding rice cultivars strongly decrease CH emissions from paddy soils with high organic C contents. Based on our results, increasing rice biomass by 10% could reduce annual CH emissions from Chinese rice agriculture by 7.1%. Our findings suggest that modern rice breeding strategies for high-yielding cultivars can substantially mitigate paddy CH emission in China and other rice growing regions.
通过增加生物量来培育高产水稻品种是满足全球不断增长的粮食需求的关键策略。然而,增加水稻生长会刺激甲烷(CH )排放,从而加剧全球气候变化,因为水稻种植是这种强大温室气体的主要来源。在这里,我们在一系列实验中表明,高产水稻品种实际上可以减少典型稻田土壤中的 CH 排放。在 33 个水稻品种中平均,生物量增加 10%会导致碳含量高的土壤中 CH 排放量减少 10.3%。与低产品种相比,高产品种显著增加了根孔隙率和甲烷消耗微生物的丰度,这表明高产品种更大、更具多孔性的根系通过促进 O 向土壤的输送,促进了 CH 的氧化。我们的结果还得到了荟萃分析的支持,该分析表明,高产水稻品种强烈减少了高有机 C 含量稻田土壤中的 CH 排放。基于我们的结果,将水稻生物量增加 10%可能会使中国水稻农业的年 CH 排放量减少 7.1%。我们的研究结果表明,现代高产水稻品种的培育策略可以大大减轻中国和其他水稻种植地区稻田 CH 的排放。