除虫菊上接种菌根真菌对褐蝽的影响

J. Waceke, S. Waudo, R. Sikora
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引用次数: 9

摘要

从除虫菊中分离的5株丛枝菌根真菌(AMF)在温室中进行了促进除虫菊生长和抑制根结线虫(Meloidogyne hapla)的筛选。筛选到的真菌有Glomus spp.(分离株LM61、ML34和ML35)、Scutellospora sp.(分离株KS74)和Gigaspora sp.(分离株LM83)。在6周龄除虫菊幼苗移栽前,将20g混合真菌接种物加入无菌的沙土混合物中。接种物由培养基、孢子、外菌丝和侵染根段组成。接种真菌3个月后,用6000株M. hapla二期幼虫(J-2)接种植株。试验结束,即接种线虫2个月后,测定干梢重、鲜根重、真菌在根系上的定殖率、线虫瘿指数、根系中卵和雌虫的数量以及土壤中J-2的数量。Glomus LM61和Scutellospora KS74显著提高了真菌处理和真菌线虫处理植株的顶生物量。Glomus lm61更有效(最高生物量增加33%)。Glomus ML34、ML35和Gigaspora LM83提高了真菌线虫处理植株的顶生物量。Scutellospora KS74和Glomus ML34分别能显著提高除虫菊鲜根重45%和50%。Glomus LM61、Scutellospora KS74和Gigaspora LM83对线虫的抑制作用分别为86%、32%和37%。所有真菌分离株均显著降低了雌性和J-2的数量。除Glomus ML34和ML35处理植株外,真菌处理植株中线虫的存在不影响真菌的根定植。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response of meloidogyne hapla to mycorrhiza fungi inoculation on pyrethrum
Five arbuscular mycorrhiza fungi (AMF) isolated from pyrethrum were screened in the greenhouse for efficacy in improving pyrethrum growth and in suppressing a root-knot nematode, Meloidogyne hapla. The fungi screened were Glomus spp. (isolates LM61, ML34 and ML35), Scutellospora sp. (isolate KS74) and Gigaspora sp. (isolate LM83). A 20g mixed fungal inoculum was incorporated into sterilized sand-soil mixture before transplanting 6-week-old pyrethrum seedlings. The inoculum consisted of the growth medium, spores, external mycelia and infected root segments. The plants were inoculated with 6000 M. hapla second stage juvenile (J-2) 3 months after fungal inoculation. Dry shoot weights, fresh root weights, percent root colonization by the fungi, nematode gall indices, number of eggs and females in the root system and number of J-2 in the soil were determined at the end of the experiment, two months after nematode inoculation. Glomus LM61 and Scutellospora KS74 significantly improved top biomasses of fungus-treated and fungus-nematodetreated plants. Glomus LM61was more effective (33% top biomass increase). Glomus ML34 and ML35 and Gigaspora LM83 improved top biomasses of fungus-nematode-treated plants. Scutellospora KS74 and Glomus ML34 significantly increased fresh root weights of pyrethrum by 45% and 50%, respectively. Glomus LM61, Scutellospora KS74 and Gigaspora LM83 caused 86%, 32% and 37% nematode suppression, respectively. All the fungal isolates significantly reduced the number of females and J-2. The presence of nematodes in fungus-treated plants did not affect root colonization by the fungi except in plants treated with Glomus ML34 and ML35.
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