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Protozoa as Agents Responsible for the Decline of Xanthomonas campestris in Soil

机译:原生动物是土壤中黄单胞菌衰落的媒介

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A streptomycin-resistant mutant of Xanthomonas campestris was used to assess the persistence of the plant pathogen in soil and the changes in populations that might be important for its survival. In soil into which large numbers of the organism were introduced, a marked decline in its abundance occurred, but after about 1 week its population density reached a level of about 105 and did not continue to fall during the test period. No such marked decline was evident in sterile soil inoculated with X. campestris. The bacterium did not lose viability if starved for carbon or inorganic nitrogen. Although abundant in soil, the numbers of propagules capable of producing antibiotics or lytic enzymes active against X. campestris did not increase coincident with the pathogen's decline, and no increase in tartrate-extractable toxins was observed. Neither bdellovibrios nor bacteriophages active against the xanthomonad were found in the soil, but a marked increase in the frequency of protozoa paralleled the phase of rapid diminution in the X. campestris population. In actidione-treated soil, in which protozoan activity was severely limited, the high cell density of the pathogen was maintained. On the basis of these data, it is concluded that predation by protozoa is responsible for the abrupt fall in frequency of the bacterium in natural soil.
机译:耐黄霉素链霉菌的突变体被用于评估植物病原体在土壤中的持久性以及可能对其生存至关重要的种群变化。在引入了大量生物的土壤中,其丰度发生了显着下降,但是在大约1周后,其种群密度达到了大约105的水平,并且在测试期间没有继续下降。在接种了野油菜(X. campestris)的无菌土壤中,没有明显下降的迹象。如果缺乏碳或无机氮,细菌不会丧失生存力。尽管在土壤中丰富,但是能够产生对野菜双歧杆菌有活性的抗生素或裂解酶的繁殖体的数量并没有随病原体的减少而增加,也没有观察到酒石酸可提取毒素的增加。在土壤中均未发现对黄腐病菌有活性的弧菌和噬菌体,但原生动物频率的显着增加与桔小实蝇种群的快速减少相平行。在原生动物活性受到严格限制的经Actidione处理的土壤中,病原体保持了较高的细胞密度。根据这些数据,可以得出结论,原生动物的捕食是造成天然土壤中细菌频率突然下降的原因。

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