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首页> 外文期刊>Egyptian Journal of Biological Pest Control >Potential of Pseudomonas putida , Bacillus subtilis , and their mixture on the management of Meloidogyne incognita , Pectobacterium betavasculorum , and Rhizoctonia solani disease complex of beetroot ( Beta vulgaris L.)
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Potential of Pseudomonas putida , Bacillus subtilis , and their mixture on the management of Meloidogyne incognita , Pectobacterium betavasculorum , and Rhizoctonia solani disease complex of beetroot ( Beta vulgaris L.)

机译:Pseudomonas piedida,枯草芽孢杆菌的潜力及其对Meloidogyne Incognita,胶杆胸腺瘤和Rhizoctonia solani病复合物的混合物(Beta寻常L.)

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Effects of Pseudomonas putida and Bacillus subtilis alone, and in combinations for the management of Meloidogyne incognita, Pectobacterium betavasculorum, and Rhizoctonia solani disease complex of beetroot (Beta vulgaris L.), were studied. Application of P. putida or B. subtilis to plants with M. incognita or P. betavasculorum or R. solani singly or in combinations caused a significant increase in plant growth parameters?and the activities of defense enzymes. A significant increase in chlorophyll fluorescence attributes, viz., Fv/Fm, ?PSII, qP, NPQ, and ETR were recorded in plants treated with P. putida or B. subtilis over pathogen-inoculated plants. Inoculation of P. putida results in a higher reduction in galling and nematode multiplication than B. subtilis. Maximum reduction in nematode multiplication and galling occurred when a mixture of P. putida and B. subtilis was used. Soft rot and root rot indices were 3 when Pectobacterium betavasculorum and Rhizoctonia solani were inoculated alone. The disease indices were rated 5 when these pathogens and M. incognita were inoculated in combinations. Inoculation of P. putida/B. subtilis with P. betavasculorum or R. solani reduced soft rot and root rot indices to 2 out of 3, while the use of P. putida?+?B. subtilis reduced indices to 1. Disease indices were reduced to 2–3 out of 5, when P. putida?+?B. subtilis were used to plants inoculated with two or three pathogens. The principal component analysis showed significant correlations among the various studied attributes. Two principal components explained a total of 86.1 and 93.4% of the overall data variability. Therefore, the use of P. putida together with B. subtilis had the potential for successful management of disease complex of beetroot.
机译:研究了普韦达和枯草芽孢杆菌的影响,以及甜菜根(Beta Vulgaris L.)的Meloidogyne Incognita,Pectogynyne Incognita,胶杆胸腺嘧啶和Rhizoctonia Solani病复合物的影响。 P. Putida或B.枯草芽孢杆菌的应用在植物中的植物,单独或组合中的植物植物或者甲苯胺植物,或组合引起植物生长参数的显着增加,以及防御酶的活性。叶绿素荧光属性的显着增加,VIZ,FV / FM,?PSII,QP,NPQ和ETR在用P. Putida或B.枯草芽孢杆菌对病原体接种植物治疗的植物中记录。接种p. pivida导致粘合剂和线虫繁殖的降低更高,而不是B.枯草芽孢杆菌。当使用P. Pieida和B.枯草芽孢杆菌的混合物时,发生线虫倍增和粘合的最大减少。当单独接种胶杆βavascusulum和Rhizoctonia solani时,软腐肉和根腐肉指数为3。当这些病原体和M.Incognita接种组合时,疾病指数被评为5。接种p. pivida / b。枯草芽孢杆菌与p. betavascululum或r. solani将软腐肉和根腐烂指数还原为3,而使用p. pielida?+ b。枯草芽孢杆菌减少到1.疾病指数减少到5分中的2-3,当P. Pivida?+?b。枯草芽孢杆菌用于植物用两种或三种病原体接种。主要成分分析显示各种研究属性之间的显着相关性。两个主要成分总数解释了总数据变异的86.1和93.4%。因此,使用P. Pivida与B.枯草芽孢杆菌具有成功管理甜菜根的疾病复合物的潜力。

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