Timper P, Riggs R D
J Nematol. 1998 Dec;30(4):461-7.
An unnamed fungus, designated ARF, that parasitizes eggs and sedentary stages of cyst nematodes is a potential biological control agent of Heterodera glycines. The objectives of this study were to determine whether ARF isolates differ in their ability to suppress nematode numbers in soil and to compare the efficacy of ARF in heat-treated and native soil. The effectiveness of 11 ARF isolates was compared by introducing homogenized mycelium into heat-treated soil. Soybean seedlings were transplanted into pots containing fungus-infested soil and inoculated with H. glycines. After 30 or 60 days, the number of nematodes and the percentage of parasitized eggs were determined. Three isolates (907, 908, and TN14), which were previously reported to be weak egg parasites in vitro, consistently suppressed nematode numbers by 50% to 100%. Of the isolates previously reported to be aggressive egg parasites, four (903, BG2, MS3, and TN12) reduced nematode numbers by 56% to 69% in at least one experimental trial, but the other four had no effect on nematode numbers. When the efficacy of isolate TN14 was tested in heat-treated and native soil, nematode suppression was greater in the heat-treated soil in only one of two trials. In both soil treatments, nematode numbers were reduced by more than 60%. We conclude that virulence toward nematode eggs in vitro is a poor indicator of effectiveness of an ARF isolate in soil, and that the presence of soil microbes may reduce, but does not completely inhibit, activity of isolate TN14.
一种未命名的真菌,命名为ARF,它寄生于孢囊线虫的卵和固定阶段,是大豆孢囊线虫潜在的生物防治剂。本研究的目的是确定ARF分离株在抑制土壤中线虫数量的能力上是否存在差异,并比较ARF在热处理土壤和原生土壤中的功效。通过将均质化的菌丝体引入热处理土壤,比较了11株ARF分离株的有效性。将大豆幼苗移植到含有感染真菌土壤的花盆中,并接种大豆孢囊线虫。30或60天后,测定线虫数量和被寄生卵的百分比。之前报道在体外为弱卵寄生虫的三株分离株(907、908和TN14),始终将线虫数量抑制了50%至100%。在之前报道为侵袭性卵寄生虫的分离株中,有四株(903、BG2、MS3和TN12)在至少一项实验中使线虫数量减少了56%至69%,但另外四株对线虫数量没有影响。当在热处理土壤和原生土壤中测试分离株TN14的功效时,在两项试验中只有一项试验显示热处理土壤中线虫抑制效果更好。在两种土壤处理中,线虫数量均减少了60%以上。我们得出结论,体外对线虫卵的毒力不能很好地指示ARF分离株在土壤中的有效性,并且土壤微生物的存在可能会降低但不会完全抑制分离株TN14的活性。