数字农科院2.0

Limited Potential Of Harvest Index I.mprovement To Reduce Methane E missions From Rice Paddies

文献类型: 外文期刊

作者: Jiang, Y; Qian, HY; Wang, L; Feng, JF; Huang, S; Hungate, BA; van Kessel, C; Horwath, WR; Zhang, XY; Qin, XB; Li, Y; Feng, XM; Zhang, J; Deng, AX; Zheng, CY; Song, ZW; Hu, SJ; van Groenigen, KJ; Zhang, WJ

作者机构:

关键词: climate change; food security; greenhouse gases; meta-analysis; water management

期刊名称: GLOBAL CHANGE BIOLOGY

ISSN: 1354-1013

年卷期: 2019 年 25 卷 2 期

页码:

收录情况: JCR(2021版)

摘要: Rice is a staple food for nearly half of the world's population, but rice paddies constitute a major source of anthropogenic CH4 emissions. Root exudates from growing rice plants are an important substrate for methane-producing microorganisms. Therefore, breeding efforts optimizing rice plant photosynthate allocation to grains, i.e., increasing harvest index (HI), are widely expected to reduce CH4 emissions with higher yield. Here we show, by combining a series of experiments, meta-analyses and an expert survey, that the potential of CH4 mitigation from rice paddies through HI improvement is in fact small. Whereas HI improvement reduced CH4 emissions under continuously flooded (CF) irrigation, it did not affect CH4 emissions in systems with intermittent irrigation (II). We estimate that future plant breeding efforts aimed at HI improvement to the theoretical maximum value will reduce CH4 emissions in CF systems by 4.4%. However, CF systems currently make up only a small fraction of the total rice growing area (i.e., 27% of the Chinese rice paddy area). Thus, to achieve substantial CH4 mitigation from rice agriculture, alternative plant breeding strategies may be needed, along with alternative management.

分类号:

  • 相关文献

[1]有机肥配施对中国农田土壤容重影响的整合分析. 刘丽媛,徐艳,朱书豪,高艺,郑向群. 2021

[2]Conservation Agriculture, A Way To C.onserve Soil Carbon For S ustainable Agriculture Productivity And Mitigating Climate Change: A Review. Shafi, Jamil,Adeel, Muhammad,Zain, Muhammad,Shafiq, Muhammad,Rizwan, Muhammad,Rui, Yukui,Ahmad, Muhammad Arslan. 2018

[3]Simulated Nh4+-N Deposition Inhibits Ch4 U.ptake And Promotes N2O E mission In The Meadow Steppe Of Inner Mongolia, China. Liu, XR, Zhang, QW, Li, SG, Zhang, LM, Ren, JQ. 2017

[4]Biochar promotes soil organic carbon sequestration and reduces net global warming potential in apple orchard: A two-year study in the Loess Plateau of China. Han J., Zhang A., Kang Y., Han J., Yang B., Hussain Q., Wang X., Zhang M., Khan M.A.. 2022

[5]Promoting coordinative development of phosphogypsum resources reuse through a novel integrated approach: A case study from China. Cao J., Wang Z., Ma X., Yang X., Zhang X., Pan H., Wu J., Xu M., Lin L., Zhang Y., Xiao Y., Luo H.. 2022

[6]Sustainable food cold chain logistics: From microenvironmental monitoring to global impact. Chen Q., Qian J., Yang H., Wu W.. 2022

[7]Effect Of Clay On Greenhouse Gas Emissions And Humification During Pig Manure Composting As Supported By Spectroscopic Evidence. Ren, XN, Wang, Q, Li, RH, Chang, CC, Pan, JT, Zhang, ZQ. 2020

[8]Maize And Rice Double Cropping B.enefits Carbon Footprint And S oil Carbon Budget In Paddy Field. Sun, M, Zhan, M, Zhao, M, Tang, LL, Qin, MG, Cao, CG, Cai, ML, Jiang, Y, Liu, ZH. 2019

[9]Diffusive Flux Of Ch4 And N2O From Agricultural River Networks: Regression Tree And Importance Analysis. Qin, XB, Li, YE, Wan, YF, Fan, MR, Liao, YL, Li, Y, Wang, B, Gao, QZ. 2020

[10]Could propionate formation be used to reduce enteric methane emission in ruminants?. Wang K., Xiong B., Zhao X.. 2023

[11]Water Management To Mitigate The G.lobal Warming Potential Of R ice Systems: A Global Meta-Analysis. Jiang, Yu,Jiang, Yu,Zhang, Weijian,Chen, Ji,Linquist, Bruce,Carrijo, Daniela,van Groenigen, Kees Jan,Huang, Shan,Balaine, Nimlesh. 2019

[12]Selenite Mitigates Cadmium-Induced Oxidative Stress A.nd Affects Cd Uptake I n Rice Seedlings Under Different Water Management Systems. Huang, QQ, Liu, YY, Qin, X, Zhao, LJ, Liang, XF, Xu, YM. 2019

[13]Two-Year Fluctuation Of Cd Bioavailability In A Remediated Rice Field Under Different Water Managements. Li, JR, Xu, YM. 2020

[14]Nitrification performance evaluation of activated sludge under high potassium ion stress during high-ammonia nitrogen organic wastewater treatment. Jiang X., Wang H., Wu P., Wang H., Deng L., Wang W.. 2022

[15]Water Management To Mitigate The Global Warming Potential Of Rice Systems: A Global Meta-Analysis. Jiang, Y, Carrijo, D, Huang, S, Chen, J, Balaine, N, Zhang, WJ, van Groenigen, KJ, Linquist, B. 2019

[16]Estimating potential yield and change in water budget for wheat and maize across Huang-Huai-Hai Plain in the future. Shirazi S.Z., Mei X., Liu B., Liu Y.. 2022

[17]Evaluation of Machine Learning Models for Daily Reference Evapotranspiration Modeling Using Limited Meteorological Data in Eastern Inner Mongolia, North China. Zhang H., Meng F., Xu J., Liu Z., Meng J.. 2022

[18]Effects of optimized water management on the uptake and translocation of cadmium and arsenic in Oryza sativa L. in two contaminated soils. Bao Q., Bao W., Ding Y., Huang Y.. 2022

[19]Combined Effect of Weathered Coal Based Amendments and Soil Water Management on Methylmercury Accumulation in Paddy Soil and Rice Grains [风化煤组配改良剂结合水分管理对水稻根际土壤与稻米甲基汞含量的影响]. Zheng S.-A.,Wu Z.-Y.,Du Z.-L.,Ni R.-X.,Yao Q.-X.. 2021

[20]Watering Techniques And Zero-Valent Iron Biochar Ph Effects On As And Cd Concentrations In Rice Rhizosphere Soils, Tissues And Yield. Islam, MS, Chen, YL, Weng, LP, Ma, J, Khan, ZH, Liao, ZB, Magid, ASIA, Li, YT. 2021

作者其他论文 更多>>