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首页> 外文期刊>Mycorrhiza >Bacterial effects on arbuscular mycorrhizal fungi and mycorrhiza development as influenced by the bacteria, fungi, and host plant
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Bacterial effects on arbuscular mycorrhizal fungi and mycorrhiza development as influenced by the bacteria, fungi, and host plant

机译:受细菌,真菌和寄主植物影响,细菌对丛枝菌根真菌和菌根发育的影响

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Bacterial strains from mycorrhizal roots (three belonging to Comamonadaceae and one to Oxalobacteraceae) and from non-mycorrhizal roots (two belonging to Comamonadaceae) of Medicago truncatula and two reference strains (Collimonas fungivorans Ter331 and Pseudomonas fluorescens C7R12) were tested for their effect on the in vitro saprophytic growth of Glomus mosseae BEG12 and on its colonization of M. truncatula roots. Only the Oxalobacteraceae strain, isolated from barrel medic mycorrhizal roots, and the reference strain P. fluorescens C7R12 promoted both the saprophytic growth and root colonization of G. mosseae BEG12, indicating that they acted as mycorrhiza helper bacteria. Greatest effects were achieved by P. fluorescens C7R12 and its influence on the saprophytic growth of G. mosseae was compared to that on Gigaspora rosea BEG9 to determine if the bacterial stimulation was fungal specific. This fungal specificity, together with plant specificity, was finally evaluated by comparing bacterial effects on arbuscular mycorrhizal symbiosis when each of the fungal species was inoculated to two different plant species (M. truncatula and Lycopersicon esculentum). The results obtained showed that promotion of saprophytic growth by P. fluorescens C7R12 was expressed in vitro towards G. mosseae but not towards G. rosea. Bacterial promotion of mycorhization was also expressed towards G. mosseae, but not G. rosea, in roots of M. truncatula and L. esculentum. Taken together, results indicated that enhancement of arbuscular mycorrhiza development was only induced by a limited number of bacteria, promotion by the most efficient bacterial strain being fungal and not plant specific.
机译:测试了截叶苜蓿的菌根(三个属于Comamonadaceae,一个属于草杆菌属)和非菌根(两个属于Comamonadaceae)的细菌菌株和两个参考菌株(Collimonas fungivorans Ter331和Pseudomonas fluorescens C7R12的作用)。体Glosus mosseae BEG12的体外腐生生长及其在M. truncatula根上的定植。只有从桶状菌根的菌根中分离的草杆菌科菌株和荧光假单胞菌C7R12促进了苔藓菌BEG12的腐生生长和根部定殖,表明它们充当了菌根辅助细菌。荧光假单胞菌C7R12取得了最大的效果,并比较了其对mosseae腐生菌生长的影响与对Gigaspora rosea BEG9的影响,以确定细菌刺激是否具有真菌特异性。最后,通过比较每种真菌物种接种到两种不同的植物物种(M. truncatula和番茄Lycopersicon esculentum)时,细菌对丛枝菌根共生的影响,最终评估了这种真菌特异性和植物特异性。所获得的结果表明,由荧光假单胞菌C7R12促进腐生性生长在体外针对G. mosseae而不对玫瑰G. rosea表达。细菌促进菌丝菌化也表达于M. truncatula和L. esculentum的根中的G. mosseae,而不是G. rosea。两者合计,结果表明,丛枝菌根发育的增强仅由有限数量的细菌诱导,最有效的细菌菌株是真菌而不是植物特异性的,从而促进了丛枝菌根的生长。

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