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Effect of biocontrol strains of Trichoderma on plant growth, Pythium ultimum populations, soil microbial communities and soil enzyme activities

机译:木霉生物防治菌株对植物生长,腐霉数量,土壤微生物群落和土壤酶活性的影响

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摘要

Five strains of Trichoderma with known biocontrol activities were assessed for their effect upon pea growth and their antagonistic activity against large Pythium ultimum inocula. The effect of Trichoderma inocula upon the indigenous soil microflora and soil enzyme activities in the presence and absence of Pythium is assessed. In the absence of Pythium, Trichoderma strain N47 significantly increased the wet shoot weight by 15% but did not significantly affect the dry weight, whilst strains T4 and N47 significantly increased the root weights by 22% and 8% respectively. Strains TH1 and N47 resulted in significantly greater root lengths. Pythium inoculation significantly reduced the root length and the number of lateral roots and nodules, and significantly increased the root and rhizosphere soil fungal populations. Pythium inoculation significantly reduced the plant wet and dry shoot weights and significantly increased the wet and the dry shoot/root ratio. All the Trichoderma strains reduced the number of lesions caused by Pythium and increased the number of lateral roots. The effect of the Pythium on emergence and shoot growth was significantly reduced by all the Trichoderma strains except strain To10. Inoculation with Trichoderma strains TH1 and T4 resulted in significantly greater wet root weights (62% and 57%, respectively) in the presence of Pythium compared to the Pythium control. Strain N47 significantly increased the shoot/root ratio compared to the Pythium control. Inoculation with Trichoderma strains T4, T12 and N47 significantly reduced Pythium populations. Pythium increased the activity of C, N and P cycle enzymes, whilst four Trichoderma strains reduced this effect, indicating reduced plant damage and C leakage. Overall, strains T4 and N47 had the greatest beneficial characteristics, as both these strains improved plant growth in the absence of Pythium and reduced plant damage in the presence of Pythium. The dual properties of these strains improve the commercial application, giving them an advantage over single action inocula, especially in the absence of plant pathogens.
机译:评价了五种具有已知生物防治活性的木霉属菌株对豌豆生长的影响以及它们对终极腐霉菌接种物的拮抗活性。评估在存在和不存在腐霉菌的情况下木霉菌接种对本地土壤微生物区系和土壤酶活性的影响。在不存在腐霉菌的情况下,木霉属菌株N47显着增加了湿枝重15%,但未显着影响干重,而菌株T4和N47分别显着增加了根重22%和8%。菌株TH1和N47导致更大的根长。接种腐霉菌可以显着减少根的长度,减少侧根和根瘤的数量,并显着增加根和根际土壤真菌的种群。接种腐霉菌可以显着降低植物的干茎和干茎重量,并显着增加干茎和干茎/根的比率。所有木霉属菌株均减少了由腐霉菌引起的病变,并增加了侧根的数量。除木霉To10菌株外,所有木霉属菌株均能明显降低腐霉菌对出苗和芽生长的影响。与腐霉对照相比,在腐霉存在下,接种木霉菌株TH1和T4会导致湿根重明显增加(分别为62%和57%)。与腐霉对照相比,菌株N47显着增加了芽/根比。接种木霉菌T4,T12和N47可显着减少腐霉菌种群。腐霉菌增加了C,N和P循环酶的活性,而四种木霉菌株降低了这种作用,表明减少了植物的伤害和C的泄漏。总体而言,菌株T4和N47具有最大的有益特性,因为这两种菌株在不存在腐霉菌的情况下都改善了植物的生长,并在存在腐霉菌的情况下降低了对植物的伤害。这些菌株的双重特性改善了商业应用,使其比单作用接种更具优势,尤其是在没有植物病原体的情况下。

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