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1.
Front Microbiol ; 15: 1369263, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38873164

RESUMO

A comprehensive study was conducted in the Cuatro Ciénegas Basin (CCB) in Coahuila, Mexico, which is known for its diversity of microorganisms and unique physicochemical properties. The study focused on the "Archaean Domes" (AD) site in the CCB, which is characterized by an abundance of hypersaline, non-lithifying microbial mats. In AD, we analyzed the small domes and circular structures using metagenome assembly genomes (MAGs) with the aim of expanding our understanding of the prokaryotic tree of life by uncovering previously unreported lineages, as well as analyzing the diversity of bacteria and archaea in the CCB. A total of 325 MAGs were identified, including 48 Archaea and 277 Bacteria. Remarkably, 22 archaea and 104 bacteria could not be classified even at the genus level, highlighting the remarkable novel diversity of the CCB. Besides, AD site exhibited significant diversity at the phylum level, with Proteobacteria being the most abundant, followed by Desulfobacteria, Spirochaetes, Bacteroidetes, Nanoarchaeota, Halobacteriota, Cyanobacteria, Planctomycetota, Verrucomicrobiota, Actinomycetes and Chloroflexi. In Archaea, the monophyletic groups of MAGs belonged to the Archaeoglobi, Aenigmarchaeota, Candidate Nanoarchaeota, and Halobacteriota. Among Bacteria, monophyletic groups were also identified, including Spirochaetes, Proteobacteria, Planctomycetes, Actinobacteria, Verrucomicrobia, Bacteroidetes, Candidate Bipolaricaulota, Desulfobacteria, and Cyanobacteria. These monophyletic groups were possibly influenced by geographic isolation, as well as the extreme and fluctuating environmental conditions in the pond AD, such as stoichiometric imbalance of C:N:P of 122:42:1, fluctuating pH (5-9.8) and high salinity (5.28% to saturation).

2.
J Evol Biol ; 2024 Mar 21.
Artigo em Inglês | MEDLINE | ID: mdl-38512341

RESUMO

The processes that generate biodiversity start on a microevolutionary scale, where each individual's history can impact the species' history. This manuscript presents a theoretical study that examines the macroevolutionary patterns that emerge from the microevolutionary dynamics of populations inhabiting two patches. The model is neutral, meaning that neither survival nor reproduction depends on a fixed genotype, yet individuals must have minimal genetic similarity to reproduce. We used historical sea level oscillation over the past 800 thousand years to hypothesize periods when individuals could migrate from one patch to another. In our study, we keep track of each speciation and extinction event, build the complete and extant phylogenies, and characterize the macroevolutionary patterns regarding phylogeny balance, acceleration of speciation, and crown age. We also evaluate ecological patterns: richness, beta diversity, and species distribution symmetry. The balance of the complete phylogeny can be a sign of the speciation mode, contrasting speciation induced by migration and isolation (vicariance). The acceleration of the speciation process is also affected by the geographical barriers and the duration of the isolation period, with high isolation times leading to accelerated speciation. We report the correlation between ecological and macroevolutionary patterns and show it decreases with the time spent in isolation. We discuss, in light of our results, the challenge of integrating present-time community ecology with macroevolutionary patterns.

3.
Ann Am Assoc Geogr ; 113(9): 2126-2148, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37982018

RESUMO

Geographically isolated places are often sites of exported environmental risks, intense resource extraction, exploitation and marginalization, and social policy neglect. These conditions create unique challenges related to vulnerability and adaptation that have direct disaster management implications. Our research investigates the relationship between geographic isolation and flood-related social vulnerability across Peru's ecological regions. Ecoregions have different relationships with colonialism and capitalism that shape vulnerability, and we hypothesize that the relationship between vulnerability and geographic isolation varies across ecoregions. Using mapping techniques and spatial regression analysis, we find that relationships between vulnerability and geographic isolation vary regionally, with differences that suggest alignment with regional contexts of extraction. We find notable differences in vulnerability related to public health infrastructure and access to services and between ecoregions with sharply contrasting histories of natural resource extraction and investment and disinvestment.

4.
Mol Ecol ; 31(19): 5074-5088, 2022 10.
Artigo em Inglês | MEDLINE | ID: mdl-35951172

RESUMO

Secondary contact of recently diverged species may have several outcomes, ranging from rampant hybridization to reinforced reproductive isolation. In plants, selfing tolerance and disjunct reproductive phenology may lead to reproductive isolation at contact zones. However, they may also evolve under both allopatric or parapatric frameworks and originate from adaptive and/or neutral forces. Inferring the historical demography of diverging taxa is thus a crucial step to identify factors that may have led to putative reproductive isolation. We explored various competing demographypotheses to account for the rapid divergence of a fir species complex (Abies flinckii-A. religiosa) distributed in "sky-islands" across central Mexico (i.e., along the Trans-Mexican Volcanic Belt; TMVB). Despite co-occurring in two independent sympatric regions (west and centre), these taxa rarely interbreed because of disjunct reproductive phenologies. We genotyped 1147 single nucleotide polymorphisms, generated by GBS (genotyping by sequencing), across 23 populations, and compared multiple scenarios based on the geological history of the TMVB. The best-fitting model revealed one of the most rapid and complete speciation cases for a conifer species-pair, dating back to ~1.2 million years ago. Coupled with the lack of support for stepwise colonization, our coalescent inferences point to an early cessation of interspecific gene flow under parapatric speciation; ancestral gene flow during divergence was asymmetrical (mostly from western firs into A. religiosa) and exclusive to the most ancient (i.e., central) contact zone. Factors promoting rapid reproductive isolation should be explored in other slowly evolving species complexes as they may account for the large tropical and subtropical diversity.


Assuntos
Abies , Traqueófitas , Abies/genética , Demografia , Fluxo Gênico , Especiação Genética , Hibridização Genética , México , Filogenia , Traqueófitas/genética
5.
Rev. peru. biol. (Impr.) ; 29(1): e21497, ene.-mar. 2022. tab, graf
Artigo em Inglês | LILACS-Express | LILACS | ID: biblio-1377190

RESUMO

Abstract Isla Santay is an important Ecuadorian conservation area for native species, but with little information on mammals. Between August 2018 and January 2019, the richness and abundance of medium and large mammals was studied in two areas with different land use: undisturbed, and disturbed. We used a combination of camera trapping, direct observation, and indirect evidence (i.e. tracks, scat) for quantifying species richness. We recorded a total of six species, all observed in both zones, and three of them are currently included on the Red List of Mammals in Ecuador. In the undisturbed zone, Leopardus pardalis was the most frequently observed species and showed the highest activity; in the disturbed zone, L. pardalis and Procyon cancrivorus were the most active. Additionally, we reported the presence of Lontra longicaudis and Philander melanurus for the first time in this reserve. Several species that we expected to observe, such as Didelphis marsupialis, Nasua nasua, Eira barbara, Galictis vittata, and Herpailurus yaguarondi, were not recorded. Isla Santay presented low species richness, probably due to environmental pollution and geographic isolation. Nonetheless, Isla Santay is a critical area for the preservation of mammalian species from western Ecuador, especially for species at risk. Future research should prioritize both the preservation of ecological processes and the understanding of the negative effects of human impacts on local biodiversity.


Resumen Isla Santay es una importante área ecuatoriana de conservación para especies nativas, pero que posee poca información sobre mamíferos. Entre agosto de 2018 y enero 2019, la riqueza y abundancia de mamíferos medianos y grandes fue estudiada en dos zonas con diferente uso de suelo: no disturbada, y disturbada. La riqueza de especies fue cuantificada mediante una combinación de fototrampeo, observación directa y evidencias indirectas (rastros, heces, etc.). Registramos seis especies en ambas zonas, de las cuales tres están incluidas en la lista roja de mamíferos del Ecuador. En la zona no disturbada, Leopardus pardalis fue la especie más frecuente y mostró más actividad; mientras que esta misma especie junto con Procyon cancrivorus lo fueron en la zona intervenida; Lontra longicaudis y Philander melanurus fueron registradas por primera vez para la reserva. Especies esperadas como Didelphis marsupialis, Nasua nasua, Eira barbara, Galictis vittata, y Herpailurus yaguarondi estuvieron ausentes. Isla Santay presentó una baja riqueza de especies, probablemente debido a amenazas como la contaminación ambiental y aislamiento geográfico. A pesar de esto, Isla Santay ayuda en la protección de mamíferos en la región, especialmente para especies amenazadas. Futuras investigaciones deben priorizar la preservación de los procesos ecológicos y a entender el efecto negativo de los impactos antropogénicos en su biodiversidad.

6.
J Fish Biol ; 99(5): 1719-1728, 2021 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-34392530

RESUMO

Individuals of the same species may present different reproductive tactics depending on the environment in which they develop and mature. The present study aimed to define the gonadal development phases of males and females of Astyanax rivularis and to carry out a comparative analysis of the reproductive development of specimens captured in two isolated environments of the São Francisco River basin in Serra da Canastra, Brazil (Point 1: low vegetation and river showing calm and crystalline waters with small well formations; Point 2: current waters, and well-established areas of arboreal vegetation). Thus, the gonads of A. rivularis specimens were collected, fixed and processed with techniques for light microscopy. Five maturation phases of the females' reproductive cycle were established: immature, developing, spawning capable, regressing and regenerating. Three maturation phases of the males' reproductive cycle were observed: spawning capable, regressing, and regenerating. There are differences in the phases of gonadal development of A. rivularis between the two sampling points so that, possibly, animals upstream of the waterfall demonstrate a delay in the reproductive cycle in relation to animals downstream.


Assuntos
Characidae , Animais , Brasil , Feminino , Gônadas , Masculino , Reprodução , Rios
7.
Plant Dis ; 105(4): 896-903, 2021 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-33044140

RESUMO

Maize yellow mosaic virus (MaYMV) hosted in various gramineous plants was assigned to the genus Polerovirus (family Luteoviridae) in 2018. However, little is known about its genetic diversity and population structure. In this study, 509 sugarcane leaf samples with mosaic symptoms were collected in 2017 to 2019 from eight sugarcane-growing provinces in China. Reverse-transcription PCR results revealed that four positive-sense RNA viruses were found to infect sugarcane, and the incidence of MaYMV among samples from Fujian, Sichuan, and Guangxi Provinces was 52.1, 9.8, and 2.5%, respectively. Based on 82 partial MaYMV sequences and 46 whole-genome sequences from different host plants, phylogenetic analysis revealed that MaYMV populations are very closely associated with their source geographical regions (China, Africa, and South America). Pairwise identity analysis showed significant variability in genome sequences among MaYMV isolates with genomic nucleotide identities of 91.1 to 99.9%. In addition to codon mutations, insertions or deletions also contributed to genetic variability in individual coding regions, especially in the readthrough protein (P3-P5 fusion protein). Low gene flow and significant genetic differentiation of MaYMV were observed among the three geographical populations, suggesting that environmental adaptation is an important evolutionary force that shapes the genetic structure of MaYMV. Genes in the MaYMV genome were subject to strong negative or purification selection during evolution, except for the movement protein (MP), which was under positive selection pressure. This finding suggests that the MP may play an important role in MaYMV evolution. Taken together, our findings provide basic information for the development of an integrated disease management strategy against MaYMV.


Assuntos
Luteoviridae , Vírus do Mosaico , China , Evolução Molecular , Genoma Viral/genética , Luteoviridae/genética , Vírus do Mosaico/genética , Filogenia , Doenças das Plantas , América do Sul , Zea mays
8.
Zebrafish ; 16(1): 115-127, 2019 02.
Artigo em Inglês | MEDLINE | ID: mdl-30457941

RESUMO

Astyanax bimaculatus, a ubiquitous species in many Neotropical basins, is characterized by a complex taxonomy and are currently considered a species complex. The goal of this study was to analyze 31 populations (N = 136) of this species from southeastern Brazil using cytogenetic techniques: conventional staining, nucleolar organizer region (Ag-NOR), C-banding, and 18S and 5S recombinant DNA fluorescent in situ hybridization (FISH) probes; and molecular techniques: S72, RAG2, and COI. All populations were 2n = 50 (6m + 20sm +18st +6a); Ag-NORs were predominantly simple, C-banding revealed high variation levels within and among basins, and the FISH probes 18S and 5S were restricted to chromosome pairs 14 and 7, respectively. The S72 was uninformative for phylogenetic analyses, and RAG2 showed no variation among populations. The COI gene revealed three haplogroups. The most basal was composed of Pandeiros population (São Francisco Basin) that diverged in the Middle Miocene. The second was composed of A. altiparanae from the Upper Paraná Basin and Espírito Santo Stream (Paraíba do Sul Basin), whereas the third was composed of Astyanax lacustris from São Francisco and coastal basins. The second and third haplogroups diverged in the Pleistocene, indicating that diversification of the bimaculatus complex was driven by tectonic activity and sea-level fluctuations.


Assuntos
Distribuição Animal , Evolução Biológica , Characidae/genética , Filogeografia , Animais , Brasil , Cariótipo , Filogenia
9.
Bull Entomol Res ; 108(6): 739-749, 2018 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-29345218

RESUMO

Prodiplosis longifila is reported as a pest of a wide range of species cultivated in America, including citrus, solanaceous species and asparagus. This species has different behavioural traits that are primarily centred on the oviposition habit and the feeding of larvae, which can change depending on the host. However, scarce information is available on population studies and the natural history of this insect, and uncertainty exists about the taxonomic identity and the geographic distribution of this species. The main objective was to perform a phylogenetic and genetic study of P. longifila populations and to define whether the North American and South American populations belong to the same species or whether a differentiation process had occurred due to geographic distance. A second objective was to determine whether this species showed genetic differentiation by host specialization in South America. The phylogenetic and population analyses based on DNA barcodes (cytochrome oxidase I gene) and a region of the ribosomal DNA (ITS2) revealed divergent clades attributable to geographic distance and host specificity. The North American and South American P. longifila insects were confirmed to be genetically distinct, and the genetic distances exceeded the values expected for intraspecific variation. In South America, the population analysis of P. longifila from tomato, sweet pepper (Solanaceae), Tahiti lime and key lime (Rutaceae) hosts evidenced high genetic differentiation between populations associated with different hosts and an absence of gene flow between these groups, suggesting the corresponding formation of cryptic species.


Assuntos
Dípteros/genética , Evolução Molecular , Especiação Genética , Herbivoria , Distribuição Animal , Animais , Colômbia , DNA Mitocondrial/análise , DNA Espaçador Ribossômico/análise , Equador , Complexo IV da Cadeia de Transporte de Elétrons/análise , Florida , Filogenia , Filogeografia
10.
Genet. mol. res. (Online) ; 12(3): 3775-3787, Set, 2013. ilus, map, tab, graf
Artigo em Inglês | Sec. Est. Saúde SP, SESSP-SUCENPROD, Sec. Est. Saúde SP | ID: biblio-1063083

RESUMO

The biological characteristics of Aedes aegypti (Diptera, Culicidae), which is a vector of dengue and yellow fever, make this organism a good model for studying population structure and the events that may influence it under the effect of human activity. We assessed the genetic variability of five A. aegypti populations using RAPD-PCR technique and six primers. Four populations were from Brazil and one was from the USA. A total of 165 polymorphic DNA loci were generated. Considering the six primers and the five populations, the mean value of inter-population genetic diversity (Gst) was 0.277, which is considered high according to the Wright classification. However, pairwise comparisons of the populations gave variable Gst values ranging from 0.044 to 0.289. This variation followed the population’s geographic distance to some extent but was also influenced by human activity...


Assuntos
Humanos , Animais , Aedes , Aedes/crescimento & desenvolvimento , Aedes/genética
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