Effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat-summer maize double cropping system in the low plain of North China

In the dominant winter wheat (WW)-summer maize (SM) double cropping system in the low plain located in the North China, limited access to fresh water, especially during dry season, constitutes a major obstacle to realize high crop productivity. Using the vast water resources of the saline upper aqui...

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Published in:Journal of Integrative Agriculture
Main Authors: Xiu-wei LIU, Til Feike, Su-ying CHEN, Li-wei SHAO, Hong-yong SUN, Xi-ying ZHANG
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2016-12-01
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2095311915613284
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author Xiu-wei LIU
Til Feike
Su-ying CHEN
Li-wei SHAO
Hong-yong SUN
Xi-ying ZHANG
author_facet Xiu-wei LIU
Til Feike
Su-ying CHEN
Li-wei SHAO
Hong-yong SUN
Xi-ying ZHANG
author_sort Xiu-wei LIU
collection DOAJ
container_title Journal of Integrative Agriculture
description In the dominant winter wheat (WW)-summer maize (SM) double cropping system in the low plain located in the North China, limited access to fresh water, especially during dry season, constitutes a major obstacle to realize high crop productivity. Using the vast water resources of the saline upper aquifer for irrigation during WW jointing stage, may help to bridge the peak of dry season and relieve the tight water situation in the region. A field experiment was conducted during 2009–2012 to investigate the effects of saline irrigation during WW jointing stage on soil salt accumulation and productivity of WW and SM. The experiment treatments comprised no irrigation (T1), fresh water irrigation (T2), slightly saline water irrigation (T3: 2.8 dS m−1), and strongly saline water irrigation (T4: 8.2 dS m−1) at WW jointing stage. With regard to WW yields and aggregated annual WW-SM yields, clear benefits of saline water irrigation (T3 & T4) compared to no irrigation (T1), as well as insignificant yield losses compared to fresh water irrigation (T2) occurred in all three experiment years. However, the increased soil salinity in early SM season in consequence of saline irrigation exerted a negative effect on SM photosynthesis and final yield in two of three experiment years. To avoid the negative aftereffects of saline irrigation, sufficient fresh water irrigation during SM sowing phase (i.e., increase from 60 to 90 mm) is recommended to guarantee good growth conditions during the sensitive early growing period of SM. The risk of long-term accumulation of salts as a result of saline irrigation during the peak of dry season is considered low, due to deep leaching of salts during regularly occurring wet years, as demonstrated in the 2012 experiment year. Thus, applying saline water irrigation at jointing stage of WW and fresh water at sowing of SM is most promising to realize high yield and fresh irrigation water saving.
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spelling doaj-eaa1c9d20cba409eada9f49b32c680c02025-11-03T01:14:02ZengKeAi Communications Co., Ltd.Journal of Integrative Agriculture2095-31192016-12-0115122886289810.1016/S2095-3119(15)61328-4Effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat-summer maize double cropping system in the low plain of North ChinaXiu-wei LIU0Til Feike1Su-ying CHEN2Li-wei SHAO3Hong-yong SUN4Xi-ying ZHANG5Key Laboratory of Agricultural Water Resources, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang 050021, P.R.China; Texas A&M AgriLife Research and Extension Center, Uvalde 78801, USA; LIU Xiu-wei, Tel: +86-311-85871762Julius Kühn-Institut (JKI)/Federal Research Centre for Cultivated Plants, Institute for Strategies and Technology Assessment, Kleinmachnow 14532, GermanyKey Laboratory of Agricultural Water Resources, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang 050021, P.R.ChinaKey Laboratory of Agricultural Water Resources, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang 050021, P.R.ChinaKey Laboratory of Agricultural Water Resources, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang 050021, P.R.ChinaKey Laboratory of Agricultural Water Resources, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang 050021, P.R.China; Correspondense ZHANG Xi-ying, Tel: +86-311-85871762In the dominant winter wheat (WW)-summer maize (SM) double cropping system in the low plain located in the North China, limited access to fresh water, especially during dry season, constitutes a major obstacle to realize high crop productivity. Using the vast water resources of the saline upper aquifer for irrigation during WW jointing stage, may help to bridge the peak of dry season and relieve the tight water situation in the region. A field experiment was conducted during 2009–2012 to investigate the effects of saline irrigation during WW jointing stage on soil salt accumulation and productivity of WW and SM. The experiment treatments comprised no irrigation (T1), fresh water irrigation (T2), slightly saline water irrigation (T3: 2.8 dS m−1), and strongly saline water irrigation (T4: 8.2 dS m−1) at WW jointing stage. With regard to WW yields and aggregated annual WW-SM yields, clear benefits of saline water irrigation (T3 & T4) compared to no irrigation (T1), as well as insignificant yield losses compared to fresh water irrigation (T2) occurred in all three experiment years. However, the increased soil salinity in early SM season in consequence of saline irrigation exerted a negative effect on SM photosynthesis and final yield in two of three experiment years. To avoid the negative aftereffects of saline irrigation, sufficient fresh water irrigation during SM sowing phase (i.e., increase from 60 to 90 mm) is recommended to guarantee good growth conditions during the sensitive early growing period of SM. The risk of long-term accumulation of salts as a result of saline irrigation during the peak of dry season is considered low, due to deep leaching of salts during regularly occurring wet years, as demonstrated in the 2012 experiment year. Thus, applying saline water irrigation at jointing stage of WW and fresh water at sowing of SM is most promising to realize high yield and fresh irrigation water saving.http://www.sciencedirect.com/science/article/pii/S2095311915613284winter wheatsummer maizesoil salinitysaline water irrigationsalt balance
spellingShingle Xiu-wei LIU
Til Feike
Su-ying CHEN
Li-wei SHAO
Hong-yong SUN
Xi-ying ZHANG
Effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat-summer maize double cropping system in the low plain of North China
winter wheat
summer maize
soil salinity
saline water irrigation
salt balance
title Effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat-summer maize double cropping system in the low plain of North China
title_full Effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat-summer maize double cropping system in the low plain of North China
title_fullStr Effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat-summer maize double cropping system in the low plain of North China
title_full_unstemmed Effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat-summer maize double cropping system in the low plain of North China
title_short Effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat-summer maize double cropping system in the low plain of North China
title_sort effects of saline irrigation on soil salt accumulation and grain yield in the winter wheat summer maize double cropping system in the low plain of north china
topic winter wheat
summer maize
soil salinity
saline water irrigation
salt balance
url http://www.sciencedirect.com/science/article/pii/S2095311915613284
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