Navegando por Assunto "Hymenocallis littoralis (Jacq.) Salisb."
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Item Acesso aberto (Open Access) Correlação metabólica entre fungos endofíticos de amaryllidaceae e as plantas hospedeiras na busca por substâncias bioativas(Universidade Federal do Pará, 2016-06-30) SILVA, Suelen Mata da; SANTOS, Alberdan Silva; http://lattes.cnpq.br/5976702134131016The endophytic fungi are a promising source of secondary metabolites with biotechnological applications. These microorganisms inhabit the interior of plant tissues without causing any damage to the host and as a result of this interaction can produce some of the substances synthesized by the host plant. In this context the use of endophytic fungi as a source of biomolecules in the replacement of plant represents economic and environmental advantages. Species in the Amaryllidaceae family produce alkaloids and other metabolites with biological activities. Among these species include Crinum americanum L. and Hymenocallis littoralis (Jacq.) Salisb. However, no data on endophytic fungi from species of the family were found. In the view of the above stated the aim of this work was to scrutinize the biotechnological potential of endophytes of C. americanum and H. littoralis as compared to host plants and to study the interactions between endophytes and host plant. As results 94 endophytic fungi were isolated from two species of the investigated Amaryllidaceae, of which 49 were identified and belonging to the Colettotrichum class, Acremonium, Trichoderma and Fusarium. It was noted that of the total strains tested 56 showed lipids in its extracts, 21coumarins, 29 anthrones and 2 showed alkaloids. 12 strains of endophytic fungi were selected which presented the best results in the detection of classes of metabolites and the extracts were analyzed by Thin-layer chromatography and by Gas chromatography-mass spectrometry in comparison with the methanolic extracts of host plants. It was noted the correlation between the classes of metabolites detected in extracts of the endophytic fungi and host plants, indicating that these micro-organisms are able to produce some of the same substances that the host plants and the assessment of antimicrobial activity highlighted some extracts with activity against Candida parapsilosis. The methanolic extract of leaves of H. littoralis and endophytic fungus MIBA 0796 presented the most relevant outcomes with percentage of inhibition above 60% against yeast. With the study of the interaction between C. americanum endophytes and the host plant it can observe that microorganisms act within the plant cells and in favorable conditions develop and occupy intercellular spaces as well. This location of the Endophytes in plant tissues may facilitate the exchange of genetic material between plants and microorganisms explaining how metabolic correlation found in this research.