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土壤中的营养动态和能量动态及其受养食关系的影响。III. 细菌、变形虫和线虫的生物相互作用。

Trophic interactions in soils as they affect energy and nutrient dynamics. III. Biotic interactions of bacteria, amoebae, and nematodes.

机构信息

Natural Resource Ecology Laboratory, Colorado State University, 80523, Fort Collins, Colorado.

出版信息

Microb Ecol. 1977 Dec;4(4):361-71. doi: 10.1007/BF02013279.

Abstract

Bacteria (Pseudomonas), amoebae (Acanthamoeba), and nematodes (Mesodiplogaster) were raised in soil microcosms with and without glucose additions. Nematode and amoebal grazing on bacteria significantly reduced bacterial populations by the end of a 24-day incubation period. Amoebal numbers decreased in the presence of nematodes with a corresponding increase in nematode numbers which reached a maximum of 230 nematodes/g of soil in the treatment with amoebae and glucose additions. After 24 days the nematode populations in the treatments without carbon additions were dominated by resistant dauer larvae indicating the unavailability of food. Although larval numbers were high in the treatments with glucose additions, the adult component of the population was still increasing at the end of the 24-day experiment. The effect of the presence of amoebae on nematode abundance was of the same magnitude as addition of 600Μg glucose-C.

摘要

在添加和不添加葡萄糖的土壤微宇宙中培养细菌(假单胞菌)、变形虫(棘阿米巴)和线虫(双道中肠线虫)。在 24 天的孵育期结束时,线虫和变形虫对细菌的摄食显著减少了细菌的数量。在有线虫存在的情况下,变形虫的数量减少,线虫的数量相应增加,在添加变形虫和葡萄糖的处理中,线虫的数量达到了每克土壤 230 条的最大值。24 天后,在没有碳添加的处理中,线虫种群以具有抗性的 dauer 幼虫为主,表明食物不足。尽管在添加葡萄糖的处理中幼虫数量较高,但在 24 天实验结束时,种群的成虫部分仍在增加。变形虫的存在对线虫丰度的影响与添加 600μM 葡萄糖-C 的影响相同。

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