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1.
Int J Syst Evol Microbiol ; 72(10)2022 Oct.
Article in English | MEDLINE | ID: mdl-36268793

ABSTRACT

The morphology, 16S rRNA gene phylogeny and 16S-23S rRNA gene ITS secondary structures of three strains of marine Cyanobacteria, isolated from inter- and subtidal environments from north Portugal were studied, resulting in the description of Zarconia navalis gen. nov., sp. nov. (Oscillatoriales incertae sedis), Romeriopsis navalis gen. nov., sp. nov. (Leptolyngbyaceae) and Romeriopsis marina sp. nov., named under the International Code of Nomenclature for algae, fungi, and plants. No diacritical morphological characters were found for the new genera and species. The 16S rRNA gene maximum-likelihood and Bayesian phylogenies supported that the genus Zarconia is a member of the Oscillatoriales, morphologically similar to the genera Microcoleus and Phormidium, but distant from them. The genus Romeriopsis is positioned within the Leptolyngbyaceae (Synechococcales) and is closely related to Alkalinema. The secondary structures of the D1-D1', Box B, V2 and V3 helices corroborate the phylogenetic results. Furthermore, our study supports previous observations of polyphyletic Oscillatoriales families and reinforces the need for their taxonomic revision.


Subject(s)
Cyanobacteria , Fatty Acids , Humans , RNA, Ribosomal, 16S/genetics , Phylogeny , DNA, Bacterial/genetics , Bacterial Typing Techniques , Sequence Analysis, DNA , Bayes Theorem , Portugal , Base Composition , Fatty Acids/chemistry
2.
J Nat Prod ; 79(10): 2504-2513, 2016 10 28.
Article in English | MEDLINE | ID: mdl-27680198

ABSTRACT

The glycosylated and halogenated dialkylresorcinol (DAR) compounds bartolosides A-D (1-4) were recently discovered from marine cyanobacteria and represent a novel family of glycolipids, encoded by the brt biosynthetic gene cluster. Here, we report the isolation and NMR- and MS-based structure elucidation of monoglycosylated bartolosides E-K (5-11), obtained from Synechocystis salina LEGE 06099, a strain closely related to the cyanobacterium that produces the diglycosylated 2-4. In addition, a genome region containing orthologues of brt genes was identified in this cyanobacterium. Interestingly, the major bartoloside in S. salina LEGE 06099 was 1 (above 0.5% dry wt), originally isolated from the phylogenetically distant filamentous cyanobacterium Nodosilinea sp. LEGE 06102. Compounds 5-11 are analogues of 1, with different alkyl chain lengths or halogenation patterns. Their structures and the organization of the brt genes suggest that the DAR-forming ketosynthase BrtD can generate structural diversity by accepting fatty acyl-derived substrates of varying length. Compound 9 features a rare midchain gem-dichloro moiety, indicating that the putative halogenase BrtJ is able to act twice on the same midchain carbon.


Subject(s)
Antineoplastic Agents/isolation & purification , Cyanobacteria/chemistry , Glycolipids/isolation & purification , Glycosides/isolation & purification , Resorcinols/isolation & purification , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Cyanobacteria/genetics , Drug Screening Assays, Antitumor , Glycolipids/chemistry , Glycolipids/pharmacology , Glycosides/chemistry , Glycosides/pharmacology , Humans , Marine Biology , Molecular Structure , Multigene Family , Nuclear Magnetic Resonance, Biomolecular , Resorcinols/chemistry
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