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Fungal diversity in adult date palm(Phoenix dactylifera L.) revealed by culture-dependent and culture-independent approaches
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作者 Ines BEN CHOBBA Amine ELLEUCH +6 位作者 Imen AYADI Lamia KHANNOUS Ahmed NAMSI Frederique CERQUEIRA Noureddine DRIRA Néji GHARSALLAH Tatiana VALLAEYS 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2013年第12期1084-1099,共16页
Endophytic flora plays a vital role in the colonization and survival of host plants, especially in harsh environments, such as arid regions. This flora may, however, contain pathogenic species responsible for various ... Endophytic flora plays a vital role in the colonization and survival of host plants, especially in harsh environments, such as arid regions. This flora may, however, contain pathogenic species responsible for various troublesome host diseases. The present study is aimed at investigating the diversity of both cultivable and non-cultivable endophytic fungal floras in the internal tissues(roots and leaves) of Tunisian date palm trees(Phoenix dactylifera). Accordingly, 13 isolates from both root and leaf samples, exhibiting distinct colony morphology, were selected from potato dextrose agar(PDA) medium and identified by a sequence match search wherein their 18S–28S internal transcribed spacer(ITS) sequences were compared to those available in public databases. These findings revealed that the cultivable root and leaf isolates fell into two groups, namely Nectriaceae and Pleosporaceae. Additionally, total DNA from palm roots and leaves was further extracted and ITS fragments were amplified. Restriction fragment length polymorphism(RFLP) analysis of the ITS from 200 fungal clones(leaves: 100; roots: 100) using HaeIII restriction enzyme revealed 13 distinct patterns that were further sequenced and led to the identification of Alternaria, Cladosporium, Davidiella(Cladosporium teleomorph), Pythium, Curvularia, and uncharacterized fungal endophytes. Both approaches confirmed that while the roots were predominantly colonized by Fusaria(members of the Nectriaceae family), the leaves were essentially colonized by Alternaria(members of the Pleosporaceae family). Overall, the findings of the present study constitute, to the authors' knowledge, the first extensive report on the diversity of endophytic fungal flora associated with date palm trees(P. dactylifera). 展开更多
关键词 Date palm tree(Phoenix dactylifera) Endophytic cultivable fungi rdna internal transcribed spacer(ITS) Phylogenetic analysis Total DNA diversity analysis
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外来入侵植物刺萼龙葵(Solanum rostratum Dunal)根际土壤真菌多样性及其次生代谢产物的化感作用研究 被引量:4
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作者 石凯 邵华 +1 位作者 韩彩霞 Zokir Toshmatov 《土壤通报》 CAS CSCD 北大核心 2022年第3期548-557,共10页
【目的】分析外来入侵植物刺萼龙葵根际土壤真菌群落多样性,了解其根际可培养真菌次生代谢产物的植物生长调节活性,并从中筛选具有开发为植物生长调节剂及生物除草剂潜力的菌株。【方法】采集刺萼龙葵根际土壤,提取总DNA,利用高通量测... 【目的】分析外来入侵植物刺萼龙葵根际土壤真菌群落多样性,了解其根际可培养真菌次生代谢产物的植物生长调节活性,并从中筛选具有开发为植物生长调节剂及生物除草剂潜力的菌株。【方法】采集刺萼龙葵根际土壤,提取总DNA,利用高通量测序技术分析土壤真菌群落多样性;同时,利用纯培养手段获得可培养真菌菌株,以乙酸乙酯萃取其发酵产物,并以单子叶植物早熟禾和双子叶植物反枝苋为受试植物,检测其次生代谢产物的促生/抑生活性。【结果】子囊菌门真菌广泛存在于刺萼龙葵根际土壤中,且占绝对优势。Alpha多样性分析发现,刺萼龙葵根际土壤中真菌群落有着非常高的多样性和丰富性。此外,菌株SR02、SR05和SR13对受试植物具有较强的生长抑制作用。【结论】刺萼龙葵根际土壤真菌优势类群明显,尖孢镰刀菌和链格孢在真菌群落中占优势地位;从根际土壤中发现多个具有显著生长促进或抑制作用的菌株,其在刺萼龙葵根际土壤中所起到的生理生态学意义,以及其次生代谢产物是否具有开发为植物生长调节剂及生物农药的潜力,值得进行深入的研究。 展开更多
关键词 生物入侵 刺萼龙葵 高通量测序 internal transcribed spacer ribosomal RNA(ITS rdna) 真菌多样性
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