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Fungal Endophytes of Alpinia officinarum Rhizomes: Insights on Diversity and Variation across Growth Years Growth Sites and the Inner Active Chemical Concentration

机译:高良姜根茎的真菌内生菌:关于生长年生长部位和内部活性化学物质浓度的多样性和变异的见解

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摘要

In the present study, the terminal-restriction fragment length polymorphism (T-RFLP) technique, combined with the use of a clone library, was applied to assess the baseline diversity of fungal endophyte communities associated with rhizomes of Alpinia officinarum Hance, a medicinal plant with a long history of use. A total of 46 distinct T-RFLP fragment peaks were detected using HhaI or MspI mono-digestion-targeted, amplified fungal rDNA ITS sequences from A. officinarum rhizomes. Cloning and sequencing of representative sequences resulted in the detection of members of 10 fungal genera: Pestalotiopsis, Sebacina, Penicillium, Marasmius, Fusarium, Exserohilum, Mycoleptodiscus, Colletotrichum, Meyerozyma, and Scopulariopsis. The T-RFLP profiles revealed an influence of growth year of the host plant on fungal endophyte communities in rhizomes of this plant species; whereas, the geographic location where A. officinarum was grown contributed to only limited variation in the fungal endophyte communities of the host tissue. Furthermore, non-metric multidimensional scaling (NMDS) analysis across all of the rhizome samples showed that the fungal endophyte community assemblages in the rhizome samples could be grouped according to the presence of two types of active indicator chemicals: total volatile oils and galangin. Our present results, for the first time, address a diverse fungal endophyte community is able to internally colonize the rhizome tissue of A. officinarum. The diversity of the fungal endophytes found in the A. officinarum rhizome appeared to be closely correlated with the accumulation of active chemicals in the host plant tissue. The present study also provides the first systematic overview of the fungal endophyte communities in plant rhizome tissue using a culture-independent method.
机译:在本研究中,末端限制性片段长度多态性(T-RFLP)技术结合克隆文库的使用,被用于评估与药用植物高加索根茎相关的真菌内生菌群落的基线多样性。具有悠久的使用历史。使用来自A. officinarum根茎的HhaI或MspI单消化靶向的,扩增的真菌rDNA ITS序列检测到总共46个不同的T-RFLP片段峰。代表性序列的克隆和测序导致对10个真菌属成员的检测:Pestalotiopsis,皮氏杆菌属,青霉菌,Marasmius,镰刀菌,Exserohilum,Mycoleptodiscus,Colletotrichum,Meyerozyma和Scopulariopsis。 T-RFLP谱揭示了寄主植物的生长年期对该植物根茎中真菌内生菌群落的影响。然而,A。officinarum的生长地理位置仅对宿主组织的真菌内生菌群落产生有限的变化。此外,对所有根茎样品进行的非度量多维标度(NMDS)分析表明,根茎样品中的真菌内生菌群落组合可以根据两种活性指示剂化学品的存在进行分组:总挥发油和高良姜精。我们目前的结果首次解决了一个多样的真菌内生菌群落能够在内部定植厚朴农杆菌的根茎组织的问题。在 A中发现的真菌内生菌的多样性。根茎似乎与宿主植物组织中活性化学物质的积累密切相关。本研究还提供了使用不依赖于培养的方法对植物根茎组织中真菌内生菌群落的首次系统概述。

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