数字农科院2.0

Integrated crop-livestock production systems in China

文献类型: 外文期刊

作者: Hou, F. J.;Nan, Z. B.;Lin, H. L.;Ren, J. H.;Xie, Y. Z.;Li, X. L.

作者机构:

关键词: crops;environment;grasslands;ponds;rangelands

期刊名称: RANGELAND JOURNAL

ISSN: 1036-9872

年卷期: 2008 年 30 卷 2 期

页码:

收录情况: SCI

摘要: The integrated crop-livestock production system provides most of the food needed by the people of China. Five types of integrated production systems are recognised; rangeland, grain crops, crop/pasture, agro-silvopastoral and ponds. Development of more sustainable and integrated crop-pasture-rangeland-livestock production systems has been recently achieved. Demonstrations of the integrated systems at household, village and regional levels are occurring for rain-fed agriculture on the Loess Plateau, the Hexi Corridor, north-western China and the Karst region of Guizhou Province, southwestern China. These indicate that integration of crop, livestock and forage are effective means of improving agricultural productivity, environmental sustainability and farmers' incomes. Widespread adoption of integrated farming systems should also reduce rangeland degradation.

分类号:

  • 相关文献

[1]Perspectives on livestock production systems in China. Li, X. L.,Yuan, Q. H.,Wan, L. Q.,He, F.. 2008

[2]Dissectingthemoleculargeneticbasisofshadeavoidanceresponseinhigherplants:frommodelspeciestocrops. YurongXie,HaiWang,YongpingZhao,王海洋. 2015

[3]Best management practices for reducing nutrient loads under diverge hydrological conditions: A case study in an agricultural watershed in Southwest China. Meijun Chen,Qiuliang Lei,Lei Chen,Xinzhong Du,Hongbin Liu,Jiafa Luo. 2025

[4]Herders' perception of climate change does not always fit with actual climate change. Li, Xiliang,Wang, Zhen,Hou, Xiangyang,Liu, Zhiying,Sarula,Yin, Yanting,Ding, Yong,Hu, Jing.

[5]The effect of increased atmospheric carbon dioxide concentration on emissions of nitrous oxide, carbon dioxide and methane from a wheat field in a semi-arid environment in northern China. Lam, Shu Kee,Norton, Rob,Chen, Deli,Lin, Erda,Norton, Rob.

[6]Total aboveground plant biomass is more strongly affected by climate than species diversity on a grassland in Liaoning, China. Zhou, C.,Liu, J.,Yang, Y. G.,Sun, Y.,Fang, Y. Z.,Zhang, Q. Q.,Zhou, Y. B.,Wang, Y. N.,Zhou, C.,Yang, Y. F.,Busso, C.,Zhou, Y. B.,Wang, Y. N.,Zhang, Z.,Zhang, Z.,Wang, Z. W.. 2016

[7]Assessment of grassland degradation in Guinan county, Qinghai Province, China, in the past 30 years. Feng, Y.,Lu, Q.,Wang, X.,Tokola, T.,Liu, H..

[8]VALIDATION OF MODIS FAPAR PRODUCTS IN HULUNBER GRASSLAND OF CHINA. Li, Gang,Xin, Xiaoping,Zhang, Hongbin,Li, Gang,Xin, Xiaoping,Zhang, Hongbin,Wang, Daolong,Zhang, Hua,Xin, Xiaoping,Zhang, Hongbin,Liu, Shimin. 2010

[9]Assessment of vulnerability to climate change in the Inner Mongolia steppe at a county scale from 1980 to 2009. Yang, Tingting,Li, Peng,Wu, Xinhong,Hou, Xiangyang,Liu, Pengtao,Yao, Guozheng.

[10]Grassland Canopy Cover And Aboveground B.iomass In Mongolia And I nner Mongolia: Spatiotemporal Estimates And Controlling Factors. John, R, Chen, JQ, Giannico, V, Park, H, Xiao, JF, Shirkey, G, Ouyang, ZT, Shao, CL, Lafortezza, R, Qi, JG. 2018

[11]Identification of spatial distribution and drivers for grasshopper populations based on geographic detectors. Shuhua Wei,Xueqin Liu,Mark Richard McNeill,Ying Wang,Wei Sun,Xiongbing Tu,Guangjun Wang,Liping Ban,Zehua Zhang,Rong Zhang. 2023

[12]Chronic and intense droughts differentially influence grassland carbon-nutrient dynamics along a natural aridity gradient. Wentao Luo,Xiaoan Zuo,Robert J. Griffin-Nolan,Chong Xu,Jordi Sardans,Qiang Yu,Zhengwen Wang,Xingguo Han,Josep Peñuelas. 2022

[13]Differential responses of grassland community nonstructural carbohydrate to experimental drought along a natural aridity gradient. Lin Song,Wentao Luo,Robert J. Griffin-Nolan,Wang Ma,Jiangping Cai,Xiaoan Zuo,Qiang Yu,Henrik Hartmann,Mai He Li,Melinda D. Smith,Scott L. Collins,Alan K. Knapp,Zhengwen Wang,Xingguo Han. 2022

[14]Comparing vegetation indices from Sentinel-2 and Landsat 8 under different vegetation gradients based on a controlled grazing experiment. Qi Qin,Dawei Xu,Lulu Hou,Beibei Shen,Xiaoping Xin. 2021

[15]Richness, not evenness, varies across water availability gradients in grassy biomes on five continents. Smith, Melinda D.,Koerner, Sally E.,Avolio, Meghan L.,Komatsu, Kimberly J.,Eby, Stephanie,Forrestel, Elisabeth J.,Collins, Scott L.,Wilcox, Kevin R.,Ahumada, Rodrigo,Morgan, John W.,Oliva, Gabriel,Onatibia, Gaston R.,Overbeck, Gerhard E.,Pete. 2022

[16]Understanding Herders' Stocking Rate Decisions I.n Response To Policy I nitiatives. Li, P, Bennett, J. 2019

[17]Conversion of croplands to shrublands does not improve soil organic carbon and nitrogen but reduces soil phosphorus in a temperate grassland of northern China. Na Zhu,Yuchun Yan,Keyu Bai,Jingmin Zhang,Chu Wang,Xu Wang,Dawei Xu,Jiahui Liu,Xiaoping Xin,Jinqiang Chen. 2023

[18]Diminishing influence of negative relationship between species richness and evenness on the modeling of grassland α-diversity metrics. Hui Yan,Fei Li,Guixiang Liu. 2023

[19]Compensatory dynamics drive grassland recovery from drought. Luo, Wentao,Ma, Wang,Song, Lin,Te, Niwu,Chen, Jiaqi,Muraina, Taofeek O.,Wilkins, Kate,Griffin-Nolan, Robert J.,Ma, Tianxiao,Qian, Jianqiang,Xu, Chong,Yu, Qiang,Wang, Zhengwen,Han, Xingguo,Collins, Scott L.. 2023

[20]Transfer Learning in Junction With a Light Use Efficiency Model for Estimating Grassland Gross Primary Production. Yu, Ruiyang,Yao, Yunjun,Tang, Qingxin,Zhang, Xueyi,Shao, Changliang,Fisher, Joshua B.,Chen, Jiquan,Zhang, Xiaotong,Li, Yufu,Xu, Jia,Liu, Lu,Xie, Zijing,Ning, Jing,Fan, Jiahui,Zhang, Luna. 2025

作者其他论文 更多>>