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Rodriguez, P. E.

Publications and source records attributed to Rodriguez, P. E..

2 recordsLinked to original sources

Two species and two karyotypes? Cytogenetic differentiation between Passiflora foetida L. and P. vesicaria L. (Passifloraceae)

The genus Passiflora L. (Passifloraceae) is widely distributed, primarily in the Neotropics, and comprises over 500 species divided into four main subgenera. The subgenus Passiflora is the most economically relevant and has a basic chromosome number of x = 9, with P. foetida L. being the sole species in the subgenus having a chromosome number of n = 10. However, P. foetida exhibits substantial morphological variation among its varieties, and recently, two of these varieties were reclassified as Passiflora vesicaria L. and P. vesicaria var. galapagensis. This study aimed to cytogenetically characterise both species by estimating genome sizes using flow cytometry, mapping heterochromatic regions by CMA/DAPI staining, and identifying 5S and 35S ribosomal DNA sites using fluorescent in situ hybridization (FISH). The genome sizes were similar across the three accessions analyzed, varying from 2C = 1.00 {+/-} 0.03 pg for P. vesicaria var. galapagensis to 2C = 1.16 {+/-} 0.01 pg for P. vesicaria, indicating small genomes. All three accessions showed 2n = 20, confirming the count for P. foetida and revealing the chromosome numbers of the two P. vesicaria accessions for the first time. Six CMA+ bands were observed in P. foetida, four in P. vesicaria var. galapagensis, and two in P. vesicaria, all co-localised with the 35S rDNA sites. FISH with 5S and 35S rDNA showed six pericentromeric 35S sites of different intensities in P. foetida and four interstitial 5S sites, with one individual having only two interstitial 5S sites, demonstrating a polymorphism at the intrapopulation level not yet recorded for the genus or the species. Passiflora vesicaria exhibited four 35S sites also pericentromeric, as well as two 5S sites, while P. vesicaria var. galapagensis presented four pericentromeric 35S sites and two 5S sites. Therefore, despite these species having the same chromosome number (n = 10) and similar genome sizes, there are karyotypic variations in the number of CMA+ bands and rDNA sites, allowing their discrimination.

plant biology↗

Actin cytoskeleton dynamics affect replication of Human Metapneumovirus

Human Metapneumovirus (hMPV) is responsible for viral respiratory infection with clinical and epidemiological relevance in pediatric, immunocompromised, and elderly populations. Little is known about hMPV in vitro replication processes and their relationship with cellular structures such as the cytoskeleton. Our goal was to evaluate the role of the actin cytoskeleton in hMPV replication at different stages of viral growth. hMPV was isolated in Vero cells from a clinical sample and identified as A2 genotype. The cytopathic effect was detected by the appearance of cell rounding and refractory cell clusters. The growth curve showed that viral replication maximum level was between 48 and 72 hpi. The highest percentage of infected cells and intracellular hMPV-protein were detected at the early stages of the replication cycle. Disruption of actin microfilaments with Cytochalasin D during the early events provoked an increase in both intracellular and extracellular viruses. We demonstrate that the early phase of the hMPV curve is crucial for viral replication; and the disruption of microfilaments during this time increments both viral protein expression and release of viruses to the extracellular space. This study contributes to elucidate wild-type hMPV growth kinetics, providing new insights on the actin cytoskeleton role in viral replication mechanisms.

microbiology↗