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Influence of plant beneficialStenotrophomonas rhizophilastrain CASB3 on the degradation of diuron-contaminated saline soil and improvement ofLactuca sativagrowth

机译:植物有益植物嗜毒疗法菌根CasB3对利尿症污染盐渍土壤降解的影响及裂变苜蓿改善

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摘要

Diuron is one of the major hazardous pollutants which posses severe risk to the environment and human healthiness. On the other hand, salinity is the most severe environmental stressor that limits crop productivity. Therefore, it is required to address this co-existing abiotic stresses in agricultural soil. Plant growth-promoting rhizobacteria have gained an engaging role in the degradation of pesticides in agricultural soil. However, their role against the restoration of diuron-contaminated saline soil is still not known. Thus, in this study, diuron-degrading, salinity-tolerantStenotrophomonas rhizophilastrain CASB3 was isolated and characterized. Strain CASB3 showed important PGP traits under normal and diuron or salt stresses. Complete degradation of 10-50 mg L(-1)diuron in the aqueous medium under normal and salinity stress conditions was achieved within 48-120 h and 48-192 h, respectively. A unique pathway for diuron biodegradation was proposed based on GC-MS analysis. In a greenhouse study, CASB3 inoculated into diuron-contaminated saline soil efficiently degraded diuron (50 mg kg(-1)) by 94% in 42 days and simultaneously resulted in an enhancement of root-shoot length (47.22-63.41%), fresh-dry biomass (136.36-156.66%), and photosynthetic pigments (36.93-92.28%) inLactuca sativaplants. These results suggest the strain CASB3 could be used as a bioresource for the reclamation of diuron-contaminated saline soils.
机译:Diuron是主要危险污染物之一,对环境和人类健康有严重的风险。另一方面,盐度是最严重的环境压力源,限制了作物生产率。因此,需要在农业土壤中解决这种共存的非生物胁迫。植物生长促进的根瘤菌在农业土壤中农药的降解中取得了有效的作用。然而,它们对恢复利尿剂污染的盐渍土壤的作用仍然不知道。因此,在该研究中,分离和表征共罗朗降解,盐度 - 普罗兰科托洛莫氏菌菌根reshophilastrain Casb3。菌株Casb3在正常和利尿剂或盐胁迫下显示出重要的PGP性状。在正常和盐度应力条件下,在48-120h和48-192h中,在水性培养基中完全降解10-50mg L(-1 )IIURON。基于GC-MS分析提出了一种独特的Diuron生物降解途径。在温室研究中,Casb3接种到执导盐渍土壤中有效地降解了Diuron(50mg kg(-1)),在42天内通过94%,同时导致根茎长度的增强(47.22-63.41%),新鲜 - 生物量(136.36-156.66%)和光合颜料(36.93-92.28%)inlactuca饱和肽。这些结果表明应变CasB3可用作融入利尿剂污染的盐土壤的生物源。

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