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首页> 外文期刊>Microbial Ecology: An International Journal >Selective enhancement of the fluorescent pseudomonad population after amending the recirculating nutrient solution of hydroponically grown plants with a nitrogen stabilizer.
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Selective enhancement of the fluorescent pseudomonad population after amending the recirculating nutrient solution of hydroponically grown plants with a nitrogen stabilizer.

机译:在用氮稳定剂修正水培植物的循环营养液后,选择性增强荧光假单胞菌种群。

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Fluorescent pseudomonads have been associated, via diverse mechanisms, with suppression of root disease caused by numerous fungal and fungal-like pathogens. However, inconsistent performance in disease abatement, after their employment, has been a problem. This has been attributed, in part, to the inability of the biocontrol bacterium to maintain a critical threshold population necessary for sustained biocontrol activity. Our results indicate that a nitrogen stabilizer (N-Serve(R), Dow Agrosciences) selectively and significantly enhanced, by two to three orders of magnitude, the resident population of fluorescent pseudomonads in the amended (i.e., 25 mug ml(-1) nitrapyrin, the active ingredient) and recycled nutrient solution used in the cultivation of hydroponically grown gerbera and pepper plants. Pseudomonas putida was confirmed as the predominant bacterium selectively enhanced. Terminal restriction fragment length polymorphism (T-RFLP) analysis of 16S rDNA suggested that N-Serve(R) selectively increased P. putida and reduced bacterial diversity 72 h after application. In vitro tests revealed that the observed population increases of fluorescent pseudomonads were preceded by an early growth suppression of indigenous aerobic heterotrophic bacteria (AHB) population. Interestingly, the fluorescent pseudomonad population did not undergo this decrease, as shown in competition assays. Xylene and 1,2,4-trimethylbenzene (i.e., the inert ingredients in N-Serve(R)) were responsible for a significant percentage of the fluorescent pseudomonad population increase. Furthermore, those increases were significantly higher when the active ingredient (i.e., nitrapyrin) and the inert ingredients were combined, which suggests a synergistic response. P. putida strains were screened for the ability to produce antifungal compounds and for the antifungal activity against Pythium aphanidermatum and Phytophthora capsici. The results of this study suggest the presence of diverse mechanisms with disease-suppressing potential. This study demonstrates the possibility of using a specific substrate to selectively enhance and maintain desired populations of a natural-occurring bacterium such as P. putida, a trait considered to have great potential in biocontrol applications for plant protection.
机译:荧光假单胞菌已经通过多种机制与抑制由多种真菌和真菌样病原体引起的根部疾病有关。然而,在疾病消除后,其使用后的表现不一致一直是一个问题。这部分归因于生物防治细菌无法维持持续的生物防治活性所必需的临界阈值种群。我们的结果表明,氮稳定剂(N-Serve(R),陶氏农业科学公司(Dow Agrosciences))选择性地显着提高了经修正的荧光假单胞菌的常住种群(即25杯ml(-1)),提高了2-3个数量级。活性成分)和再生营养液,用于水培非洲菊和胡椒植物的栽培。恶臭假单胞菌被确认为选择性增强的主要细菌。对16S rDNA的末端限制性片段长度多态性(T-RFLP)分析表明,N-Serve(R)在施用后72 h有选择地增加恶臭假单胞菌并减少细菌多样性。体外测试显示,观察到的荧光假单胞菌种群增加之前,是早期对本地有氧异养细菌(AHB)种群的生长抑制。有趣的是,荧光假单胞菌种群并未经历这种减少,如竞争测定所示。二甲苯和1,2,4-三甲基苯(即N-Serve®中的惰性成分)在荧光假单胞菌种群增加中占很大比例。此外,当活性成分(即硝普钠)和惰性成分结合时,这些增加明显更高,这表明具有协同作用。筛选恶臭假单胞菌菌株产生抗真菌化合物的能力以及对瓜果腐霉和辣椒疫霉的抗真菌活性。这项研究的结果表明存在多种具有抑制疾病潜力的机制。这项研究证明了使用特定底物选择性增强和维持所需天然细菌(如恶臭假单胞菌)种群的可能性,该特性被认为在植物保护的生物防治应用中具有巨大潜力。

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