首页> 外文期刊>Phytopathologia Mediterranea >Combined effects of biocontrol agents and soil amendments on soil microbial populations, plant growth and incidence of charcoal rot of cowpea and wilt of cumin.
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Combined effects of biocontrol agents and soil amendments on soil microbial populations, plant growth and incidence of charcoal rot of cowpea and wilt of cumin.

机译:生物防治剂和土壤改良剂对土壤微生物种群,植物生长以及of豆木炭腐烂和小茴香枯萎的发生的综合影响。

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摘要

Field experiments were conducted for 2 years to determine the effectiveness of combined use of two biocontrol agents, Bacillus firmus and Aspergillus versicolor for control of Macrophomina phaseolina induced charcoal rot of cowpea and Fusarium oxysporum f. sp. cumini induced wilt of cumin. The lowest level of plant mortality (3-4%) due to charcoal rot of cowpea was recorded when bacterium coated seeds were sown in radish compost amended soil compared to the non-amended soil (13.8-20.5%), but this was not significantly better than some other treatments. Cowpea roots from B. firmus coated seeds had better nodulation than any of the individual A. versicolor treatments. Although B. firmus coated seeds+A. versicolor+farmyard manure resulted in maximum nodulation this was not significantly different to B. firmus seed coating. Root colonization by the combined biocontrol agent treatments was better than the individual biocontrol agent treatments. Combining A. versicolor with farmyard manure supported the maximum populations of total fungi and actinomycetes. In both winter seasons, the lowest incidence of wilt (1.0-5.2%) on cumin was recorded when A. versicolor was amended with neem compost compared to the non-amended soil (5.7-10.5%). Maximum colonization of A. versicolor on roots was observed in B. firmus+A. versicolor+farmyard manure amended plots. During both years, the treatment combination of A. versicolor in neem compost amended plots resulted in maximum populations of fungi, bacteria and A. versicolor in the soil, which was greater than in the non-amended soil. Significant increases in disease control were not recorded after single or repeated delivery of A. versicolor. These results suggest that combining B. firmus as seed coatings with A. versicolor as soil applications gives improved control of M. phaseolina and Fusarium induced diseases on legume and seed spice crops in arid soils.
机译:进行了2年的田间试验,以确定两种生物防治剂(牢固的芽孢杆菌和杂色曲霉)联合使用对控制菜豆(Macphophomina phaseolina)诱导的of豆和枯萎镰刀菌(Fusarium oxysporum f)木炭腐烂的有效性。 sp。孜然引起的孜然枯萎。与未改良土壤相比,在萝卜堆肥改良土壤中播种有细菌涂层的种子时,记录到的char豆木炭腐烂造成的植物死亡率最低(3-4%),但这一变化并不显着。比其他治疗更好来自坚硬芽孢杆菌包被种子的豆根比任何单独的杂色芽孢杆菌处理都有更好的结瘤作用。虽然坚硬芽孢杆菌包被种子+ A。杂色+农家肥导致最大结瘤,这与硬芽孢杆菌种子包被无明显差异。组合生物防治剂处理的根定植要好于单个生物防治剂处理。将杂色曲霉和农家肥组合在一起可以支持最大数量的总真菌和放线菌。在两个冬季,与未经改良的土壤相比,用印comp堆肥对杂色曲霉进行枯萎的枯萎发生率最低(1.0-5.2%)。在坚硬芽孢杆菌+ A中观察到根杂色曲霉的最大定植。杂色+农家肥改良地块。在这两年中,在印em堆肥改良区的杂色曲霉的处理组合导致土壤中真菌,细菌和杂色曲霉的最大种群,这比未改良的土壤要大。单次或重复递送杂色曲霉后,未记录到疾病控制的显着增加。这些结果表明,将硬衣芽孢杆菌作为种子包衣与杂色芽孢杆菌作为土壤施用相结合,可以更好地控制干旱土壤中豆类和种子香料作物上的菜豆分枝杆菌和镰刀菌诱发的疾病。

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