首页> 外文期刊>Journal of Phytopathology >The Effects of Bacillus pumilus, Isolated from Wheat Rhizosphere, on Resistance in Wheat Seedling Roots against the Take-all Fungus, Gaeumannomyces graminis var. tritici
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The Effects of Bacillus pumilus, Isolated from Wheat Rhizosphere, on Resistance in Wheat Seedling Roots against the Take-all Fungus, Gaeumannomyces graminis var. tritici

机译:芽孢杆菌,从小麦根际分离的影响,对小麦幼苗根部抗菌性真菌的抗性,Gaeumannomyces Graminis var。 Tritici.

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The aim of this study was to verify that induced resistance was another mechanism through which Bacillus pumilus 7 km can suppress Gaeumannomyces graminis (Sacc.) Von Arx and Oliver var. tritici Walker (Ggt). Also, plant growth-promotion activity of B. pumilus 7 km and its effect on disease severity of take-all were evaluated. Soil was drenched with B. pumilus 7 km and disease severity, root and shoot fresh weights and root and shoot heights were evaluated. The activities of soluble peroxidase (SPOX), ionically cell wall-bound peroxidase (CWPOX), o-1,3-glucanase, o-1,4-glucanase and the contents of total phenolic compounds were also determined. The results indicated that disease severity in the bacterized roots was significantly less than the pathogen control roots. Also this isolate promoted root height, root and shoot fresh weights, compared with the healthy control plants. Wheat plants treated with B. pumilus 7 km showed increased presence of SPOX, CWPOX, o-1,3-glucanase, o-1,4-glucanase and phenolic compounds in bacterized roots challenged with the pathogen. In this treatment, maximum SPOX, o-1,3-glucanase and o-1,4-glucanase activities on day 4 and CWPOX activity on day 8 were recorded. Also, maximum total phenolic concentration on day 6 was recorded. The results suggest that the inhibitory effect of B. pumilus 7 km on the take-all may be related to its ability to enhance defense responses in the wheat roots.
机译:本研究的目的是验证诱导抗性是另一种机制,芽孢杆菌7公里可以抑制Gaeumannomyces graminis(Sacc。)von Arx和Oliver var。 Tritici Walker(GGT)。此外,评估了B.Pumilus的植物生长促进活性7公里及其对疾病严重程度的影响。土壤与B.Pumilus浸透了7公里和疾病严重程度,根和枝条新鲜重量和根部和枝条高度。还测定了可溶性过氧化物酶(SPOX),离子细胞壁结合的过氧化物酶(CWPOX),O-1,3-葡聚糖酶,O-1,4-葡聚糖酶和总酚类化合物的含量的活性。结果表明,细菌根系中的疾病严重程度明显小于病原体控制根。与健康对照植物相比,这种分离株促进了根高,根部和拍摄的新鲜重量。用B.Pumilus治疗的小麦植物7公里显示出在与病原体攻击的细菌根部的静止,CWPOX,O-1,3-葡聚糖酶,O-1,4-葡聚糖酶和酚类化合物的增加。在这种处理中,记录了第4天和第8天的第4天和CWPOX活性的最大SPOX,O-1,3-葡聚糖酶和O-1,4-葡聚糖酶活性。此外,记录了第6天的最大总酚醛浓度。结果表明,B.Pumilus 7公里的抑制作用可能与其加强小麦根中的防御反应的能力有关。

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