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Badia, C. C. V.

Publications and source records attributed to Badia, C. C. V..

2 recordsLinked to original sources

Atypical plastid genome evolution: Cereus Mill. from distinct environments harbor one of the largest plastid genomes in Cactaceae

BackgroundCactaceae has successfully radiated in xeric habitats across the Americas, presenting very distinct morphologies and evolutionary patterns within tribes. This study presents the complete plastomes of C. jamacaru subsp. jamacaru and C. hildmannianus subsp. hildmannianus, which inhabit distinct habitats, providing insights into their genomic structure and evolutionary history, with implications for conservation. Methods and ResultsChloroplast genomes of the two Cereus were assembled and analyzed to investigate plastome evolution in Cactoideae. Fresh cladodes were collected and their mesophyll manually extracted, chloroplasts were extracted from the mesophyll, and cpDNA sequenced using Illumina MiSeq. De novo assembly and annotation were conducted using BLAST, Expasy, and tRNAScan as validation tools. We compared the genome structure, gene content, codon usage, and RNA editing predictions between tribes. The genome was 141.884 and 141.600 bp for C. jamacaru and C. hildmannianus, respectively, and dotplot analysis confirmed highly syntenic plastomes. The genes trnV-GAC, trnV-UAC, rpl23, ndhA, ndhE, ndhG, ndhI, and ndhK were lost, and ndhB, ndhC, ndhF, and rpl33 are pseudogenes. The tRNAval losses indicate putative superwobbling or nuclear-coded tRNA import from cytosol. We identified an insertion in rps18 for both Cereus, suggesting that intron retention may be in course for these species. We identified [~]190 single sequence repeats and 50 tandem repeats for each species, and eight exclusive RNA editing sites. Synteny analysis revealed rearrangements distinguishing taxa within Cactoideae. Phylogenetic results supported Cereus monophyly, corroborating existing classifications, and clarifies unresolved relationships, enhancing understanding of phylogenetic relationships within Cactaceae. ConclusionsOur results provide evidence on the evolutionary patterns and putative signatures of adaptation to distinct environments, providing insights into genomic evolution and conservation of Cereus.

evolutionary biology↗

MOLECULAR AND MORPHOMETRIC APPROACHES IN RECENTLY RADIATED SPECIES: Inga subnuda SALZM. EX BENTH AND Inga vera WILLD. (LEGUMINOSAE, MIMOSOID CLADE)

The species-rich genus Inga (Leguminosae) presents ca. 300 species widespread throughout the Neotropics and is recognized by its recent and rapid diversification. Forty-eight species of Inga are endemic of the Brazilian Atlantic Forest. Among them, Inga subnuda, with two subspecies: subsp. subnuda, which occurs from the state of Paraiba to Rio de Janeiro; and subsp. luschnathiana, which occurs from Espirito Santo to the state of Santa Catarina. Both subspecies occur in sympatry in the southeastern region and share floral and leaf characters, which hampers the morphological delimitation. The co-occurrence of Inga vera subsp. affinis. with both I. subnuda subspecies results in intermediate morphologies between I. vera subsp. affinis and I. subnuda subsp. luschnathiana, making the distinction between the latter species even harder. We sampled 94 individuals from 8 natural populations and evaluated morphological characters previously described as distinctive among the subspecies of I. subnuda in addition to others not measured yet. We used 84 plastid (trnD-trnT spacer) and 58 nuclear (ITS 1 and 2) sequences to characterize the phylogenetic relationships between the taxa. The results obtained point out I. subnuda subsp. subnuda as a more structured taxon in relation to the other subspecies, whilst I. subnuda subsp. luschnathiana and I. vera subsp. affinis constituted a cohesive group. The apportionment of haplotypes differed between the markers used, thus evincing a retention of ancestral polymorphism between the subspecies, given their recent diversification. This paper explores different lines of evidence, thus contributing to the delimitation of these species. Demographic and biogeographic scenarios are also discussed. A new status of for the taxon currently circumscribed as Inga subnuda subsp. luschnathiana is suggested.

plant biology↗