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Characterization of Bacillus and Pseudomonas strains with suppressive traits isolated from tomato hydroponic-slow filtration unit

机译:从番茄水培-慢滤装置分离出具有抑制特性的芽孢杆菌和假单胞菌

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Bacillus and Pseudomonas spp. are known to be involved in plant pathogenic fungi elimination during the slow filtration process used in tomato soilless cultures. We isolated 6-8 strains of both Bacillus and Pseudomonas from the top, middle, and bottom sections of filters and identified them after 16S rDNA sequencing. Four Pseudomonas strains were identified as Pseudomonas fulva, 5 as PseudomonasA plecoglossicida, and 12 as Pseudomonas putida. The use of specific oligonucleotide polymerase chain reaction primer sets designed from gyrB gene sequences additionally permitted the identification of 17 BacillusA cereus and 3 Bacillus thuringiensis strains. Ribotyping with EcoRI pointed out an important polymorphism within Bacillus and Pseudomonas strains. Molecular characterization did not reveal a correlation between the location of isolates within the filter (top, middle, or bottom) and bacterial identification or riboclusters. Functional aspects assessed by community- level physiological profiling showed marked phenotypic differences between Pseudomonas communities isolated from the top and bottom filter layers; differences were lower between Bacillus communities of different layers and far less noticeable between mixed communities of Bacillus and Pseudomonas. These strains were tested for several suppressive activities. Conversely to most Bacillus, the majority of Pseudomonas strains were auxin producers and promoted the growth of tomato plantlet roots. On the other hand, only Bacillus strains displayed antagonistic activities by inhibiting the growth of pathogenic fungi frequently detected in soilless cultures. Siderophores were produced by nearly all bacteria, but at higher amounts by Pseudomonas than Bacillus strains. The biocontrol agent potentiality of certain strains to optimize the slow filtration process and to promote the suppressive potential of nutrient solution is discussed.
机译:芽孢杆菌和假单胞菌属。已知在无土栽培番茄中缓慢过滤过程中涉及植物病原真菌的清除。我们从过滤器的顶部,中部和底部分离出了6-8株芽孢杆菌和假单胞菌菌株,并在16S rDNA测序后对其进行了鉴定。鉴定出4个假单胞菌菌株为深假单胞菌,5个为假单胞菌Aplecoglossicida,12个为假单胞菌。由gyrB基因序列设计的特异性寡核苷酸聚合酶链反应引物组的使用还可以鉴定出17株蜡状芽孢杆菌和3株苏云金芽孢杆菌。用EcoRI进行的机器人分型指出了芽孢杆菌和假单胞菌菌株内的重要多态性。分子表征未揭示分离物在过滤器内(顶部,中间或底部)的位置与细菌鉴定或核糖体之间的相关性。通过社区水平的生理学分析评估的功能方面显示,从顶部和底部过滤层分离出的假单胞菌群落之间在表型上存在显着差异。不同层次的芽孢杆菌群落之间的差异较小,而芽孢杆菌和假单胞菌的混合群落之间的差异则较小。测试了这些菌株的几种抑制活性。与大多数芽孢杆菌相反,大多数假单胞菌菌株是生长素的产生者,并促进了番茄幼苗根的生长。另一方面,仅芽孢杆菌属菌株通过抑制在无土栽培中经常发现的病原真菌的生长而表现出拮抗活性。铁载体几乎由所有细菌产生,但假单胞菌比芽孢杆菌菌株产生的铁载体更高。讨论了某些菌株的生物防治剂潜力,以优化缓慢的过滤过程并促进营养液的抑制潜力。

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