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首页> 外文期刊>Australian Journal of Crop Science >Effects of drought stress and superabsorbent polymer on morpho-physiological and biochemical traits of Caper (Capparis spinosa L.)
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Effects of drought stress and superabsorbent polymer on morpho-physiological and biochemical traits of Caper (Capparis spinosa L.)

机译:干旱胁迫和高吸收性聚合物对刺山柑形态生理生化特性的影响

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摘要

Capparis spinosa, commonly known as caper bush, is native to certain hostile growing conditions including sandy or gravelly soils, rocky hillsides, cliffs, stone walls and rock crevices in Mediterranean coastal regions. Caper plant is used for the prevention of soil erosion in sloppy areas. Synthetic superabsorbent polymer was developed as a soil conditioner to heighten plant establishment and growth in drought-prone growing area. During growing seasons of 2016-2017, the effects of soil amendment with the superabsorbent Polymer A200 in four levels (S 1 = 0, S 2 = 75, S 3 = 150 and S 4 = 225 g) were investigated for each caper plant, considering three levels of irrigation (I 1 =0, I 2 = One irrigation per month and I 3 = one irrigation every two months) on the physical properties of the soil as well as their physiological parameters (chlorophyll a, b and total chlorophyll, carotenoid, Tss, electrolyte leakage) and plant height, yield per hectare, WUE, Soil moister, RWC and leaf area of an established caper plant under drying conditions. Analyses of variance showed that the interaction effects of treatments were significant (p<0.01) in all the studied traits. The results showed that water stress significantly decreased the height of a plant, yield per hectare, WUE, Soil moister, RWC, leaf area, total Chlorophylla, Carotenoid and electrolyte leakage, whereas the application of superabsorbent polymer compensated for the negative effect of drought stress, especially in high rates of polymer application (150 g), where the maximum effect was attained for all the studied traits. These findings strongly suggested that the irrigation intervals of caper can lead to an increase in the application of the superabsorbent polymer.
机译:Capparis spinosa,通常被称为雀跃灌木,原产于某些敌对的生长条件,包括地中海沿岸地区的沙质或砾石土壤,多岩石的山坡,悬崖,石墙和岩石缝隙。刺山柑植物用于防止水土流失。合成的超吸收性聚合物被开发为土壤改良剂,以在干旱多发地区提高植物的生长能力。在2016-2017年的生长季节中,针对每种刺山柑植物,研究了四种高吸收性聚合物A200对土壤改良剂的影响(S 1 = 0,S 2 = 75,S 3 = 150和S 4 = 225 g),考虑土壤的物理特性及其生理参数(叶绿素a,b和总叶绿素)的三种灌溉水平(I 1 = 0,I 2 =每月一次灌溉,I 3 =每两个月一次灌溉),类胡萝卜素,Tss,电解质泄漏)和植物高度,每公顷产量,WUE,土壤mo积,RWC和干燥条件下已建立的雀跃植物的叶面积。方差分析表明,在所有研究的性状中,处理之间的交互作用均显着(p <0.01)。结果表明,水分胁迫显着降低了植物的株高,每公顷产量,WUE,土壤水分,RWC,叶面积,总叶绿素,类胡萝卜素和电解质的渗漏,而高吸收性聚合物的应用弥补了干旱胁迫的负面影响。 ,尤其是在高聚合物施用量(150 g)中,其中所有研究的性状均达到最大效果。这些发现强烈表明,雀跃的灌溉间隔可以导致超吸收性聚合物的应用增加。

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