Crop nitrogen use and soil mineral nitrogen accumulation under different crop combinations and patterns of strip intercropping in northwest China

Chun Jie Li;Yu Ying Li;Chang Bing Yu;Jian Hao Sun;Peter Christie;Min An;福锁 张;隆 李

China Agricultural University;Gansu Academy of Agricultural Sciences;Agri-Food and Biosciences Institute;Charles Sturt University;China Association for Science and Technology

发表时间:2011-5

期 刊:Plant and Soil

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=79955006074&partnerID=8YFLogxK

摘要

Increasing crop nitrogen use efficiency while also simultaneously decreasing nitrogen accumulation in the soil would be key steps in controlling nitrogen pollution from agricultural systems. Long-term field experiments were started in 2003 to study the effects of intercropping on crop N use and soil mineral N accumulation in wheat (Triticum aestivum L. cv 2014)/maize (Zea mays L. cv Shendan16), wheat/faba bean (Vicia faba L. cv Lincan No. 5) and maize/faba bean intercropping and monocropping systems. Monocropping was compared with two types of strip intercropping: continuous intercropping (two crops intercropped continuously on the same strips of land every year) and rotational intercropping (two crops grown adjacently and rotated to the other crop's strip every year). Maize/faba bean intercropping had greater crop N uptake than did wheat/faba bean or wheat/maize. Wheat/maize accumulated more mineral N in the top 140 cm of the soil profile during the co-growth stage from maize emergence to maturity of wheat or faba bean. Continuously intercropped maize substantially decreased soil mineral N accumulation under wheat and faba bean rows (60-100 cm soil depth) at maize harvest. Soil mineral N accumulation under wheat rows increased with rotational intercropping with faba bean. Rotational intercropping may potentially alleviate the adverse effects of wheat on N use by other crops and increase the nitrogen harvest index of wheat, maize and faba bean. Intercropping using species with different maturity dates may be more effective in increasing crop N use efficiency and decreasing soil mineral N accumulation.

关键词

Continuous intercropping
Faba bean
Maize
Rotational intercropping
Wheat

相关科学

农业与生物科学
植物科学
土壤科学

文献指纹

地球与环境科学

intercropping

wheat

maize

crop

nitrogen

mineral

soil

harvest

farming system

soil depth

soil profile

field experiment

pollution

land

index

effect

农业与生物学

soil minerals

intercropping

faba beans

China

wheat

nitrogen

corn

crops

continuous cropping

strip cropping

nutrient use efficiency

soil profiles

harvest index

soil depth

Vicia faba

pollution

Triticum aestivum

Zea mays

adverse effects

minerals

developmental stages

uptake mechanisms

soil

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 1.227 1.095
2000 1.005 1.236
2001 0.976 1.207
2002 0.706 1.041
2003 0.875 1.177
2004 1.041 1.092
2005 1.002 1.353
2006 1.072 1.283
2007 0.931 1.06
2008 1.128 1.149
2009 1.334 1.319
2010 1.246 1.424
2011 4.4 1.378 1.498
2012 4.9 1.404 1.452
2013 5.2 1.388 1.627
2014 5.2 1.365 1.47
2015 5.8 1.397 1.389
2016 6.3 1.295 1.47
2017 5.8 1.361 1.484
2018 5.4 1.187 1.261
2019 5.9 1.208 1.285
2020 5.9

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