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Lopez-Alvarez, N.

Publications and source records attributed to Lopez-Alvarez, N..

2 recordsLinked to original sources

Reconstructing the Phylogeny of Calliandra sect. Androcallis (Fabaceae): Insights from the Inclusion of Colombian Species, with a Focus on the Enigmatic Taxon Calliandra medellinensis

Phylogenetic relationships for the genus Calliandra section Androcallis (Fabaceae) were reconstructed, including previously sequenced species from Central and South America and unexamined species from Colombia, one of Calliandra main diversity centers. Here, we generated novel DNA sequences of Calliandra species from Colombia for the nuclear Internal Transcribed Spacer (ITS) and the chloroplast trnL and trnL-F intergenic spacer. By incorporating a broader taxonomic sampling, the relationships among main clades in Androcallis were clarified, providing a systematics framework in which to test evolutionary hypotheses. Phylogenetic analysis recovered five well-supported clades within Androcallis. Most species within each clade had similar geographical distributions and relationships between the five major clades are strongly supported for the first time. However, core Androcallis relationships, including most species from Colombia sequenced here, remain unclear. A second goal of this study was to determine the taxonomic status of Calliandra medellinensis. This enigmatic taxon emblematic of Medellin, Colombia, is found in limited numbers within the Aburra Valley and has been proposed to be a hybrid taxon. Here, C. medellinensis, C. magdalenae and C. haematocephala were not monophyletic within the core Androcallis clade. This suggests that C. medellinensis could potentially be an interspecific hybrid between C. magdalenae and C. haematocephala, thus challenging the taxonomic status of this species; however, more informative molecular markers should be used in future studies. Specifically, genomic studies should assess interspecific hybridization demographic models. Such insights can illuminate the C. medellinensis origin, guiding conservation strategies and providing valuable evolutionary overviews.

evolutionary biology↗

Myelin contributes to microstructural growth in human sensory cortex during early infancy.

Development of cortical tissue during infancy is critical for the emergence of typical brain functions in cortex. However, how cortical microstructure develops during infancy remains unknown. We measured the longitudinal development of cortex from newborns to six-months-old infants using multimodal quantitative imaging of cortical microstructure. Here we show that infants cortex undergoes profound microstructural tissue growth during the first six months of human life. Comparison of postnatal to prenatal transcriptomic gene expression data demonstrates that myelination and synaptic processes are dominant contributors to this postnatal microstructural tissue growth. Using visual cortex as a model system, we find hierarchical microstructural growth: higher-level visual areas have less mature tissue at birth than earlier visual areas but grow at faster rates. This overturns the prevailing view that visual areas that are most mature at birth develop fastest. Together, in vivo, longitudinal, and quantitative measurements, which we validated with ex vivo transcriptomic data, shed new light on the rate, sequence, and specific biological mechanisms of developing cortical systems. Importantly, our findings propose a new hypothesis that cortical myelination is a key factor in cortical development during early infancy, which has significant implications for diagnosis of neurodevelopmental disorders and delays in infants.

neuroscience↗