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In vitro PGPR properties and osmotic tolerance of different Azospirillum native strains and their effects on growth of maize under drought stress

机译:不同氮螺柱菌株的体外PGPR性质和渗透耐受性及其对干旱胁迫下玉米生长的影响

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摘要

Osmotic variations in the soil can affect bacterial growth diminishing the number of inoculated bacteria. In a scenario of water deficit having tolerant bacteria would be beneficial to achieve a better response of the plant to stress. Thus, selection of more resistant bacteria could be useful to design new inoculants to be used in arid zones. In this sense, a group of Azospirillum isolates deposited in INTA collection was characterized in order to select strains tolerant to osmotic stress. The results obtained demonstrated that Az19 strain has similar in vitro PGPR characteristics to Az39, the most used strain in Argentina for inoculants industries, with the advantage of a better tolerance to osmotic and salt stress. Inoculation of maize plants with this strain resulted in a better response against water deficit compared to Az39 strain, encouraging us to further study the behavior of this strain in greenhouse and field trials in view of developing new inoculants suitable for areas with water deficit.
机译:土壤中的渗透变化会影响细菌生长,减少接种细菌的数量。在具有耐受性细菌的水缺口的情况下,可以有利于实现植物对压力的更好反应。因此,选择更耐药细菌可用于设计在干旱区中使用的新涂体。从这个意义上讲,沉积在IntA集合中的一组氮螺旋状菌分离株,以选择耐受渗透胁迫的菌株。得到的结果证明,AZ19菌株对AZ39的体外PGPR特征具有类似于阿尔本地植物行业的最常用的菌株,具有更好的渗透和盐胁迫的优点。与AZ39菌株相比,接种具有这种菌株的玉米植物导致水缺损的反应,鼓励我们进一步研究这种应变在温室和田间试验中的这种应变的行为,鉴于开发适合水资源不足的区域的新型孕育剂。

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