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1.
Braz J Microbiol ; 52(4): 2179-2192, 2021 Dec.
Article de Anglais | MEDLINE | ID: mdl-34491570

RÉSUMÉ

The composition of endophytic communities is dynamic and demonstrates host specificity; besides, they have great intra- and interspecific genetic variability. In this work, we isolated leaf endophytic fungi from Serjania laruotteana, identify them using multilocus analysis, and evaluate the genetic variability using IRAP (inter-retrotransposon amplified polymorphism) and REMAP (retrotransposon-microssatellite amplified polymorphism). A total of 261 fungi were isolated and 58 were identified. Multilocus phylogenetic analysis using the partial sequences from the ITS1-5.8S-ITS2 regions, elongation factor 1-alpha, ß-tubulin, actin, glyceraldehyde-3-phosphate dehydrogenase, and calmodulin genes identify that most strains belonged to the Colletotrichum and Diaporthe genera, other isolated genera were Xylaria, Phyllosticta, Muyocopron, Fusarium, Nemania, Plectosphaerella, Corynespora, Bipolaris, and Curvularia. The IRAP and REMAP analyzes were performed with Colletotrichum and Diaporthe genera and showed 100% of polymorphism and high intra- and interspecific variability. This is the first report of the diversity of endophytic fungi from S. laruotteana. In addition, it demonstrated that the IRAP and REMAP can be used to distinguish morphologically similar lineages, revealing differences even strains of the same species.


Sujet(s)
Biodiversité , Champignons , Sapindaceae , Champignons/classification , Champignons/génétique , Typage par séquençage multilocus , Phylogenèse , Rétroéléments/génétique , Sapindaceae/microbiologie
2.
Curr Microbiol ; 75(5): 588-596, 2018 May.
Article de Anglais | MEDLINE | ID: mdl-29299623

RÉSUMÉ

Endophytes are fungi and bacteria that inhabit plant tissues without causing disease. Endophytes have characteristics that are important for the health of the plant and have been isolated from several plants of economic and medicinal interest but rarely from ornamental plants. The current study isolates and identifies endophytic fungi from the leaves of Pachystachys lutea and evaluates the antagonistic activity of these endophytes as well as cellulase production by the endophytes. Fungi were isolated by fragmentation from surface-disinfected leaves and were identified by the sequencing of the ITS gene and the genes coding for EF 1-α and ß-tubulin followed by multilocus sequence analysis. Molecular taxonomic analysis revealed that 78% of the identified fungi belonged to the genus Diaporthe. We also identified strains belonging to the genera Colletotrichum, Phyllosticta, Xylaria, Nemania, and Alternaria. Most of the strains tested were able to inhibit the growth of pathogenic fungi, especially PL09 (Diaporthe sp.), which inhibited the growth of Colletotrichum sp., and PL03 (Diaporthe sp.), which inhibited the growth of Fusarium oxysporum. The production of cellulase ranged from 0.87 to 1.60 µmol/min. Foliar endophytic fungal isolates from P. lutea showed promising results for the in vitro control of plant pathogens and for cellulase production. This paper is the first report on culturable endophytic fungi isolated from the ornamental plant P. lutea.


Sujet(s)
Endophytes/isolement et purification , Endophytes/physiologie , Champignons/isolement et purification , Champignons/physiologie , Magnoliopsida/microbiologie , Maladies des plantes/prévention et contrôle , Antibiose , Colletotrichum/physiologie , Endophytes/classification , Endophytes/génétique , Champignons/classification , Champignons/génétique , Fusarium/physiologie , Magnoliopsida/croissance et développement , Phylogenèse , Maladies des plantes/microbiologie , Feuilles de plante/microbiologie
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