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Effects of soil moisture on cotton root length density and yield under drip irrigation with plastic mulch in Aksu Oasis farmland
ChengYi ZHAO, YingYu YAN, Yilihamu Yimamu, JuYan LI, ZhiMin ZHAO, LaoSheng WU
1 Key Laboratory of Oasis Ecology and Desert Environment, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China; 2 General Station of Water and Soil Conversation and Eco-environmental Monitoring of Xinjiang, Urumqi 830000, China; 3 Graduate University of Chinese Academy of Sciences, Beijing 100039, China; 4 Department of Soil and Environmental Sciences, University of California, Riverside, CA 92521, USA
Effects of soil moisture on cotton root length density and yield under drip irrigation with plastic mulch in Aksu Oasis farmland
ChengYi ZHAO, YingYu YAN, Yilihamu Yimamu, JuYan LI, ZhiMin ZHAO, LaoSheng WU
1 Key Laboratory of Oasis Ecology and Desert Environment, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China; 2 General Station of Water and Soil Conversation and Eco-environmental Monitoring of Xinjiang, Urumqi 830000, China; 3 Graduate University of Chinese Academy of Sciences, Beijing 100039, China; 4 Department of Soil and Environmental Sciences, University of California, Riverside, CA 92521, USA
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摘要 Effects of soil moisture on cotton root length density (total root length per unit soil volume) and yield under drip irrigation with plastic mulch were studied through field experiments. The results indicate that spatial distributions of root length density of cotton under various water treatments were basically similar. Horizontally, both root length densities of cotton in wide and narrow rows were similar, and higher than that between mulches. Vertically, root length density of cotton decreased with increasing soil depth. The distribution of root length density is different under different irrigation treatments. In conditions of over-irrigation, the root length density of cotton between mulches would increase. However, it would decrease in both the wide rows and narrow rows. The mean root length density of cotton increased with increasing irrigation water. Water stress caused the root length density to increase in lower soil layers. There is a significant correlation between root length density and yields of cotton at the flower-boll and wadding stages. The regression between irrigation amount and yield of cotton can be expressed as y = -0.0026x2+18.015x-24845 (R2 = 0.959). It showed that the irrigation volume of 3,464.4?m3/hm2 led to optimal root length density. The yield of cotton was 6,360?.8?kg/hm2 under that amount of irrigation.
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ChengYi ZHAO
YingYu YAN
Yilihamu Yimamu
JuYan LI
ZhiMin ZHAO
LaoSheng WU
关键词:  hydraulic architecture  leaf water potential  transpiration  hydraulic resistance  stomatal conductance  hydraulic limitation    
Abstract: Effects of soil moisture on cotton root length density (total root length per unit soil volume) and yield under drip irrigation with plastic mulch were studied through field experiments. The results indicate that spatial distributions of root length density of cotton under various water treatments were basically similar. Horizontally, both root length densities of cotton in wide and narrow rows were similar, and higher than that between mulches. Vertically, root length density of cotton decreased with increasing soil depth. The distribution of root length density is different under different irrigation treatments. In conditions of over-irrigation, the root length density of cotton between mulches would increase. However, it would decrease in both the wide rows and narrow rows. The mean root length density of cotton increased with increasing irrigation water. Water stress caused the root length density to increase in lower soil layers. There is a significant correlation between root length density and yields of cotton at the flower-boll and wadding stages. The regression between irrigation amount and yield of cotton can be expressed as y = -0.0026x2+18.015x-24845 (R2 = 0.959). It showed that the irrigation volume of 3,464.4?m3/hm2 led to optimal root length density. The yield of cotton was 6,360?.8?kg/hm2 under that amount of irrigation.
Key words:  hydraulic architecture    leaf water potential    transpiration    hydraulic resistance    stomatal conductance    hydraulic limitation
收稿日期:  2010-08-03      修回日期:  2010-09-06           出版日期:  2010-12-07      发布日期:  2010-12-07      期的出版日期:  2010-12-07
基金资助: National 973 project (2009CB421302); National Project (2007BAC03A0604) ; key National Natural Science Foundation (40830640)
通讯作者:  ChengYi ZHAO    E-mail:  zcy@ms.xjb.ac.cn
引用本文:    
ChengYi ZHAO, YingYu YAN, Yilihamu Yimamu, JuYan LI, ZhiMin ZHAO, LaoSheng WU. Effects of soil moisture on cotton root length density and yield under drip irrigation with plastic mulch in Aksu Oasis farmland[J]. 干旱区科学, 10.3724/SP.J.1227.2010.00243.
ChengYi ZHAO, YingYu YAN, Yilihamu Yimamu, JuYan LI, ZhiMin ZHAO, LaoSheng WU. Effects of soil moisture on cotton root length density and yield under drip irrigation with plastic mulch in Aksu Oasis farmland. Journal of Arid Land, 2010, 2(4): 243-249.
链接本文:  
http://jal.xjegi.com/CN/10.3724/SP.J.1227.2010.00243  或          http://jal.xjegi.com/CN/Y2010/V2/I4/243
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