Pathogenicity of Bacillus Strains to Cotton Seedlings and Their Effects on Some Biochemical Components of the Infected Seedlings

A. Aly, O. M. El-Mahdy, Marian M. Habeb, A. Elhakem, Amal A. Asran, M. Youssef, H. Mohamed, R. S. Hanafy
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引用次数: 5

Abstract

Pathogenicity of eight Bacillus strains to seedlings of four cotton cultivars was evaluated under greenhouse conditions. Each of the tested cultivars was individually treated with powdered inoculum of each bacterial strain. Untreated seeds were planted as control treatments in autoclaved soil. Effects of the tested strains on levels and activities of some biochemical components of the infected seedlings were also assayed. The biochemical components included total soluble sugars, total soluble proteins, total free amino acids, peroxidase, polyphenol oxidase, phenols, and lipid peroxidation. ANOVA showed that Bacillus strain (B) was a very highly significant source of variation in damping-off and dry weight. Cotton cultivar (V) was a nonsignificant source of variation in damping-off while it was a significant source of variation in dry weight. B × V interaction was a significant source of variation in damping- off and a nonsignificant source of variation in dry weight. Bacillus strain was the most important source of variation as it accounted for 59.36 and 64.99% of the explained (model) variation in damping-off and dry weight, respectively. The lack of significant correlation between levels and activities of the assayed biochemical components and incidence of damping-off clearly demonstrated that these biochemical components were not involved in the pathogenicity of the tested strains. Therefore, it was hypothesized that the pathogenicity of the tested strains could be due to the effect of cell wall degrading enzymes of pathogenic toxins. Based on the results of the present study, Bacillus strains should be considered in studying the etiology of cotton seedling damping-off.
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芽孢杆菌对棉花幼苗的致病性及其对棉苗生化成分的影响
在温室条件下,测定了8株芽孢杆菌对4个棉花品种幼苗的致病性。每个被试品种分别用每种菌株的粉末接种物处理。未经处理的种子作为对照处理在蒸压土壤中种植。同时还测定了菌株对染病幼苗部分生化成分水平和活性的影响。生化成分包括总可溶性糖、总可溶性蛋白、总游离氨基酸、过氧化物酶、多酚氧化酶、酚类和脂质过氧化。方差分析表明,芽孢杆菌菌株(B)是吸湿和干重变化的非常显著的来源。棉花品种(V)的抗湿性变异不显著,而干重变异显著。B × V相互作用是阻尼变化的显著来源,而干重变化的不显著来源。芽孢杆菌是最重要的变异源,其对减湿和干重的解释(模型)变异分别占59.36%和64.99%。测定的生化成分的水平和活性与阻尼发生率之间缺乏显著的相关性,清楚地表明这些生化成分与被测菌株的致病性无关。因此,我们推测菌株的致病性可能是由于致病毒素的细胞壁降解酶的作用。在此基础上,研究棉花萎蔫病的病因应考虑芽孢杆菌菌株。
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