Tian Longjia, Shao Guangcheng, Gao Yang, Lu Jia, Zhang Chenqi, Fu Tian, Hu Yihan
College of Agricultural Science and Engineering, Hohai University, Nanjing 210098, China.
China Water Resources Beifang Investigation, Design and Research Co., Ltd., Tianjin 300222, China.
Plants (Basel). 2024 Oct 9;13(19):2828. doi: 10.3390/plants13192828.
The extreme weather and the deteriorating water environment have exacerbated the crisis of freshwater resource insufficiency. Many studies have shown that salty water could replace freshwater to partly meet the water demand of plants. To study the effects of early-stage drought hardening and late-stage salt stress on tomatoes ( L.), we conducted a 2-year pot experiment. Based on the multi-objective demands of high yield, high quality, and water saving, yield indicators, quality indicators, and a water-saving indicator were selected as evaluation indicators. Three irrigation levels (W1: 85% field capacity (FC), W2: 70% FC, W3: 55% FC) and three salinity levels (S2: 2 g/L, S4: 4 g/L, S6: 6 g/L) were set as nine treatments. In addition, a control treatment (CK: W1, 0 g/L) was added. Each treatment was evaluated and scored by principal component analysis. The results for 2022 and 2023 found the highest scores for CK, W2S2, W3S2 and CK, W2S4, W2S2, respectively. Based on response surface methodology, we constructed composite models of multi-objective demands, whose results indicated that 66-72% FC and 2 g/L salinity were considered the appropriate water-salt combinations for practical production. This paper will be beneficial for maintaining high yield and high quality in tomato production using salty water irrigation.
极端天气和不断恶化的水环境加剧了淡水资源短缺危机。许多研究表明,咸水可以替代淡水部分满足植物的用水需求。为研究前期干旱锻炼和后期盐胁迫对番茄(L.)的影响,我们进行了为期两年的盆栽试验。基于高产、优质和节水的多目标需求,选择产量指标、品质指标和节水指标作为评价指标。设置三个灌溉水平(W1:田间持水量的85%(FC),W2:70%FC,W3:55%FC)和三个盐度水平(S2:2g/L,S4:4g/L,S6:6g/L)作为九个处理。此外,添加一个对照处理(CK:W1,0g/L)。通过主成分分析对各处理进行评价和打分。2022年和2023年的结果分别发现CK、W2S2、W3S2和CK、W2S4、W2S2得分最高。基于响应面法,构建了多目标需求的复合模型,其结果表明66 - 72%FC和2g/L盐度被认为是实际生产中合适的水盐组合。本文将有助于利用咸水灌溉维持番茄生产的高产和优质。