Soil Salt Distribution and Tomato Response to Saline Water Irrigation under Straw Mulching.

To investigate better saline water irrigation scheme for tomatoes that scheduling with the compromise among yield (Yt), quality, irrigation water use efficiency (IWUE) and soil salt residual, an experiment with three irrigation quotas and three salinities of irrigation water was conducted under stra...

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Main Authors: Yaming Zhai, Qian Yang, Yunyu Wu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5091775?pdf=render
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spelling doaj-be10777e677a421192eee65d462e7a402020-11-25T01:02:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-011111e016598510.1371/journal.pone.0165985Soil Salt Distribution and Tomato Response to Saline Water Irrigation under Straw Mulching.Yaming ZhaiQian YangYunyu WuTo investigate better saline water irrigation scheme for tomatoes that scheduling with the compromise among yield (Yt), quality, irrigation water use efficiency (IWUE) and soil salt residual, an experiment with three irrigation quotas and three salinities of irrigation water was conducted under straw mulching in northern China. The irrigation quota levels were 280 mm (W1), 320 mm (W2) and 360 mm (W3), and the salinity levels were 1.0 dS/m (F), 3.0 dS/m (S1) and 5.0 dS/m (S2). Compared to freshwater, saline water irrigations decreased the maximum leaf area index (LAIm) of tomatoes, and the LAIm presented a decline tendency with higher salinity and lower irrigation quota. The best overall quality of tomato was obtained by S2W1, with the comprehensive quality index of 3.61. A higher salinity and lower irrigation quota resulted in a decrease of individual fruit weight and an increase of the blossom-end rot incidence, finally led to a reduction in the tomato Yt and marketable yield (Ym). After one growth season of tomato, the mass fraction of soil salt in plough layer under S2W1 treatment was the highest, and which presented a decline trend with an increasing irrigation quota. Moreover, compared to W1, soil salts had a tendency to move to the deeper soil layer when using W2 and W3 irrigation quota. According to the calculation results of projection pursuit model, S1W3 was the optimal treatment that possessed the best comprehensive benefit (tomato overall quality, Yt, Ym, IWUE and soil salt residual), and was recommended as the saline water irrigation scheme for tomatoes in northern China.http://europepmc.org/articles/PMC5091775?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yaming Zhai
Qian Yang
Yunyu Wu
spellingShingle Yaming Zhai
Qian Yang
Yunyu Wu
Soil Salt Distribution and Tomato Response to Saline Water Irrigation under Straw Mulching.
PLoS ONE
author_facet Yaming Zhai
Qian Yang
Yunyu Wu
author_sort Yaming Zhai
title Soil Salt Distribution and Tomato Response to Saline Water Irrigation under Straw Mulching.
title_short Soil Salt Distribution and Tomato Response to Saline Water Irrigation under Straw Mulching.
title_full Soil Salt Distribution and Tomato Response to Saline Water Irrigation under Straw Mulching.
title_fullStr Soil Salt Distribution and Tomato Response to Saline Water Irrigation under Straw Mulching.
title_full_unstemmed Soil Salt Distribution and Tomato Response to Saline Water Irrigation under Straw Mulching.
title_sort soil salt distribution and tomato response to saline water irrigation under straw mulching.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description To investigate better saline water irrigation scheme for tomatoes that scheduling with the compromise among yield (Yt), quality, irrigation water use efficiency (IWUE) and soil salt residual, an experiment with three irrigation quotas and three salinities of irrigation water was conducted under straw mulching in northern China. The irrigation quota levels were 280 mm (W1), 320 mm (W2) and 360 mm (W3), and the salinity levels were 1.0 dS/m (F), 3.0 dS/m (S1) and 5.0 dS/m (S2). Compared to freshwater, saline water irrigations decreased the maximum leaf area index (LAIm) of tomatoes, and the LAIm presented a decline tendency with higher salinity and lower irrigation quota. The best overall quality of tomato was obtained by S2W1, with the comprehensive quality index of 3.61. A higher salinity and lower irrigation quota resulted in a decrease of individual fruit weight and an increase of the blossom-end rot incidence, finally led to a reduction in the tomato Yt and marketable yield (Ym). After one growth season of tomato, the mass fraction of soil salt in plough layer under S2W1 treatment was the highest, and which presented a decline trend with an increasing irrigation quota. Moreover, compared to W1, soil salts had a tendency to move to the deeper soil layer when using W2 and W3 irrigation quota. According to the calculation results of projection pursuit model, S1W3 was the optimal treatment that possessed the best comprehensive benefit (tomato overall quality, Yt, Ym, IWUE and soil salt residual), and was recommended as the saline water irrigation scheme for tomatoes in northern China.
url http://europepmc.org/articles/PMC5091775?pdf=render
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AT qianyang soilsaltdistributionandtomatoresponsetosalinewaterirrigationunderstrawmulching
AT yunyuwu soilsaltdistributionandtomatoresponsetosalinewaterirrigationunderstrawmulching
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