营养液渗透胁迫及叶面施用腐胺和水杨酸对草莓果实的植物化学和品质特性影响

M. Haghshenas, M. J. Nazarideljou, A. Shokoohian
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引用次数: 6

摘要

在无土栽培条件下,研究了水杨酸(SA)和腐胺(PUS)作为植物生长调节剂(pgr)对草莓‘Selva’果实在渗透胁迫下生长参数及植物化学和品质特性的调节作用。研究了不同NaCl浓度(0、7.5、15、30和45 mM)营养液的渗透势(盐度),以及叶面施用PUS(0和1.5 mM)和SA(0和1.5 mM)。结果表明:在渗透胁迫下,植株叶面积(79.6%)、总叶绿素含量(48%)、果实产量(73.5%)、叶片相对含水量(33%)、总蛋白质(33.4%)、总酚(7.8%)和维生素C含量(24.5%)显著降低。渗透胁迫显著提高了叶片过氧化物酶(POD)和超氧化物歧化酶(SOD)活性、叶片离子漏量、可溶性碳水化合物和脯氨酸含量。除SOD活性外,施用pgr对各性状均有显著影响。除叶片离子泄漏、POD活性、可溶性碳水化合物和蛋白质外,盐度和pgr对其他性状均有显著交互作用。当盐度为15 mM时,叶面施用pgr,总酚和维生素C含量最高。综上所述,盐胁迫对草莓果实生长、产量和品质的负面影响得到了改善。
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Phytochemical and Quality Attributes of Strawberry Fruit under Osmotic Stress of Nutrient Solution and Foliar Application of Putrescine and Salicylic Acid
The moderating role of salicylic acid (SA) and putrescine (PUS) as plant growth regulators (PGRs), on the growth parameters and phytochemical and qualitative characteristics of strawberry fruit 'Selva' under osmotic stress was investigated under soilless culture. The osmotic potential (salinity) of the nutrient solution containing different NaCl concentrations (0, 7.5, 15, 30 and 45 mM) and foliar application of PUS (0 and 1.5 mM) and SA (0 and 1.5 mM) were studied. The results showed a significant decrease in plant leaf area (79.6%), total chlorophyll content (48%), fruit yield (73.5%), leaf relative water content (33%), total protein (33.4%), total phenol (7.8%), and vitamin C content (24.5%) under osmotic stress. Moreover, peroxidase (POD) and superoxide dismutase (SOD) enzymes activity, leaf ion leakage, and soluble carbohydrate and proline content increased significantly under osmotic stress. Application of PGRs had a significant effect on all the studied traits (except for SOD activity). Interactive effects of salinity and PGRs were significant on all the traits except for leaf ion leakage, POD activity, soluble carbohydrates, and protein. The highest total phenol and vitamin C contents were obtained with 15 mM salinity along with foliar application of PGRs. In conclusion, foliar application of PUS and SA ameliorate negative effects of salt stress on growth, yield, and quality of strawberry fruit.
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