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A comprehensive method of evaluating the impact of drought and salt stress on tomato growth and fruit quality based on EPIC growth model

机译:一种综合评价干旱和盐胁迫对史诗生长模型的番茄生长和果实质量影响的综合方法

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摘要

Owing to the severe shortages of fresh water in arid and semi-arid areas, growers are forced to apply deficit irrigation with fresh or saline water. To quantify the impacts of water deficit and salt stress individually and the interaction on tomato yield and quality, three pot experiments were conducted from spring 2016 to autumn 2017. The EPIC growth model was also used to simulate fruit growth process. Three irrigation treatments used were full irrigation, 2/3 and 1/2 of the full irrigation. Salt stress varied with the season: 0, 3 parts per thousand, 6 parts per thousand, 9 parts per thousand for 2016 season, 0, 3 parts per thousand for 2016-2017 season and 0, 2 parts per thousand, 3 parts per thousand, 4 parts per thousand for 2017 season. Decreases in single fruit weights were associated with increasing soil salt content. However, fruit quality parameters including CI (color index), TSS (total soluble solids) and TSSC (total soluble sugar content) improved significantly with increasing salt content of soil. In the absence of salt stress, the application of 2/3 of full irrigation showed a 18.9% and 1.0% increase of yield per plant, respectively in 2016 and 2017 seasons with comparison to full irrigation, mainly owing to the increase of fruits number per plant. Fruit quality also improved with increasing Fn (fruit firmness), CI, TSS and TSSC by 7.9%, 43.8%, 9.8% and 3.8% in 2016 season, and by 4.7%, 0.7%, 20.9% and 34.2% in 2017 season, respectively. Fruit quality parameters were more affected by salt stress than drought, the interactive impact of water and salt on fruit quality parameters was not significant. At mild water stress (2/3 of full irrigation) with moderate salt stress (salt content of 3 parts per thousand), although yield showed a decline of 20.3%-32.0%, fruit quality parameters of Fn, CI, TSS and TSSC increased by 4.9%-43.4% through 2016 and 2017 seasons. Two of van Genuchten and Hoffman models (i.e. non-linear and exponential reduction model) were used to evaluate the relations of relative yield and soil salt content with acceptable accuracy, R-2 of 0.989 and 0.971, respectively. Soil salt content at which yield decreased by 50% is 4.0 parts per thousand, and 4.7 parts per thousand, respectively in the non-linear reduction model and the exponential reduction model. The EPIC growth model simulated fruit growth process with acceptable accuracy for no stress, water stress and salt stress, with R-2 of 0.863, 0.839 and 0.895, respectively. The two yield reduction models and the relationship between fruit quality parameters and soil salt content showed that there are tradeoffs between tomato yield and fruit quality in saline soils.
机译:由于干旱和半干旱地区淡水的严重短缺,种植者被迫用新鲜或盐水施加赤字灌溉。为了量化水赤字和盐胁迫的影响以及番茄产量和质量的相互作用,从2016年春季到2017年秋季进行了三个盆栽试验。史诗增长模型也用于模拟果实生长过程。使用的三种灌溉治疗是全灌溉,2/3和1/2的全灌溉。盐胁迫随季节而变化:0,每千份,每千份3份,每千份6份,2016季度9份,0,30016 - 2017年季节为0,每千季度为0,每千元2份,2017季度4份千分之一。单一果实重量的降低与增加土壤盐含量有关。然而,随着土壤盐含量的增加,果实质量参数包括CI(颜色指数),TSS(总可溶性固体)和TSC(总可溶性糖含量)显着改善。在没有盐胁迫的情况下,每株产量的2/3的2/3的施用分别在2016年和2017年季节增加了18.9%和1.0%,与全灌溉相比,主要是由于每款植物。水果质量也随着FN(果实硬度),CI,TSS和TSSC的增加7.9%,2016季度,43.8%,9.8%和3.8%,2017年赛季的4.7%,0.7%,20.9%和34.2%。分别。水果质量参数受到盐压力的影响,而不是干旱,水和盐对水果质量参数的互动影响并不重要。在温和的水分胁迫(每灌注2/3),中等盐胁迫(盐含量为3‰),虽然产量显示出20.3%-32.0%,FN,CI,TSS和TSSC的果实质量参数增加到2016年和2017年季节的4.9%-43.4%。 Van Genuchten和霍夫曼模型(即非线性和指数减少模型)用于评估相对产量和土壤盐含量的关系,分别具有可接受的精度,r-2和0.971。土壤盐含量分别在非线性减少模型和指数减少模型中分别为4.0分别为4.0分别为4.0分别为4.0分别为4.0分别为4.0分别。史诗增长模型模拟果实生长过程,可接受的准确性,无应力,水分应激和盐胁迫,R-2分别为0.863,0.839和0.895。两种产量减少模型和果实质量参数与土壤盐含量的关系表明,盐渍土中番茄产量和果实质量之间存在权衡。

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