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首页> 外文期刊>International Journal of Agriculture and Biology >Bio-Invigoration of Rhizobacteria Supplemented with Exogenous Salicylic Acid and Glycine Betaine Enhanced Drought Tolerance in Sunflower
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Bio-Invigoration of Rhizobacteria Supplemented with Exogenous Salicylic Acid and Glycine Betaine Enhanced Drought Tolerance in Sunflower

机译:补充外源水杨酸和甘氨酸甜菜碱的根瘤菌的生物敏感增强了向日葵的干旱耐受性

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摘要

Water deficit drastically hamper productivity of sunflower. In this study, the role of bio-invigoration of ACC deaminase rhizobacteria supplemented with chemicals i.e., glycine betaine and salicylic acid in alleviating negative effect of drought stress in sunflower was investigated. The inoculants of rhizobacteria i.e., KS7 and KS42 were applied as seed coating. While plants were foliar sprayed with 0.724 mM salicylic acid and 100 mM glycine betaine solutions at vegetative and flowering stage. Soil moisture was monitored with Time Domain Reflectometer (TDR) on weekly basis. Data on plant water relations, leaf free proline, leaf glycine betaine and total soluble sugars were recorded at flowering stage, while yield was recorded at maturity stage. Maximum improvement in selected plant traits and water use efficiency was caused by treatments where seed inoculation of KS42 and KS7 was supplemented with foliar spray GB or KS42 was combined with SA or sole inoculation of KS42 was performed. This novel approach of using biological and chemical means together may be recommended for field areas, where water deficit conditions limit sunflower production.
机译:水赤字大幅妨碍向日葵的生产力。在这项研究中,研究了ACC脱氨酶的作用,补充有化学品的ACC脱氨酶无菌细菌。,研究了甘氨酸甜菜碱和水杨酸缓解了向日葵中干旱胁迫的负面影响。根瘤菌的接种剂,即KS7和KS42作为种子涂层施用。虽然在营养和开花阶段,植物用0.724mM水杨酸和100mM甘氨酸甜菜碱溶液喷洒。每周用时域反射仪(TDR)监测土壤水分。在开花阶段记录有关植物水关系,叶片游离脯氨酸,叶甘氨酸甜菜碱和总可溶性糖的数据,同时在成熟阶段记录产量。所选择的植物性状和用水效率的最大改善是由处理KS42和KS7的种子接种的处理引起的,将叶面喷射GB或KS42与SA合并,或者进行KS42的唯一接种。这种新颖的使用生物和化学方法的方法可以推荐用于场区域,水赤字条件限制向日葵生产。

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