Nguyen Nhu H, Bruns Thomas D
Department of Plant Biology, University of Minnesota, St. Paul, MN, 55108, USA,
Microb Ecol. 2015 May;69(4):914-21. doi: 10.1007/s00248-015-0574-y. Epub 2015 Feb 17.
Bacteria have been observed to grow with fungi, and those that associate with ectomycorrhizal fungi have often been thought of as symbionts that may either increase or decrease ectomycorrhizal formation rate or provide other unaccounted benefits. To explore this symbiosis from a community ecology perspective, we sampled ectomycorrhizal root tips over a 3-year period and used 454 pyrosequencing to identify the bacteria that live inside the ectomycorrhizal root tips. The results showed that fungal community composition within the same soil core and fungal taxonomic identity had a stronger effect on bacterial community composition than sample year or site. Members of the Burkholderiales and Rhizobiales were most highly represented, reflecting many previous reports of these bacteria in association with fungi. The repeated occurrences of these two bacterial orders suggest that they may be symbiotic with their fungal hosts, although the nature of such mechanisms, be it symbiotic diazotrophy or otherwise, remains to be thoroughly tested.
人们观察到细菌与真菌共同生长,那些与外生菌根真菌相关联的细菌通常被认为是共生体,它们可能会提高或降低外生菌根的形成率,或者提供其他未被考虑到的益处。为了从群落生态学的角度探究这种共生关系,我们在三年时间里对外生菌根根尖进行了采样,并使用454焦磷酸测序技术来鉴定生活在外生菌根根尖内部的细菌。结果表明,同一土壤核心内的真菌群落组成和真菌分类身份对外生菌根根尖内部细菌群落组成的影响,要比采样年份或采样地点的影响更强。伯克霍尔德氏菌目和根瘤菌目的成员占比最高,这与之前许多关于这些细菌与真菌相关联的报道一致。这两个细菌目反复出现表明,它们可能与其真菌宿主存在共生关系,尽管这种共生机制的本质,无论是共生固氮作用还是其他机制,仍有待深入研究。