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1.
Sci Rep ; 14(1): 17219, 2024 07 26.
Artigo em Inglês | MEDLINE | ID: mdl-39060371

RESUMO

Fire plays a key role in grasslands, determining the distribution and evolution of species and boundaries with neighboring ecosystems. Evidence of community-wide responses to fire is largely based on taxonomic and functional descriptors, while the phylogenetic dimension is overlooked. Here we evaluated how the taxonomic and phylogenetic structure of grassland plant communities responded to a time since fire (TSF) gradient. We sampled 12 communities in Southern Brazil under varying TSF and calculated taxonomic species richness (S) and dominance (D), phylogenetic diversity (PD), and mean phylogenetic distances (MPD). We used Structural Equation Models to test the relationships between the environmental gradient and community descriptors. Communities with longer TSF presented higher PD and MPD but lower species richness and increased taxonomic dominance. These sites were dominated by monocots, specifically C4 grasses, but also presented exclusive clades, whereas recently-burned sites presented lower taxonomic dominance and more species distributed in a wider variety of clades. Our results indicate that these scenarios are interchangeable and dependent on fire management. Fire adaptation was not constrained by phylogenetic relatedness, contrasting with previous findings for tropical savannahs and indicating that temperate and tropical non-forest ecosystems from South America respond differently to fire, possibly due to different evolutionary histories.


Assuntos
Biodiversidade , Incêndios , Pradaria , Filogenia , Brasil , Plantas/classificação , Plantas/genética , Poaceae/genética , Poaceae/classificação , Ecossistema
2.
Ecology ; 104(3): e3900, 2023 03.
Artigo em Inglês | MEDLINE | ID: mdl-36315032

RESUMO

Encounters between flowers and invertebrates are key events for the functioning of tropical forests. Assessing the structure of networks composed of the interactions between those partners leads to a better understanding of ecosystem functioning and the effects of environmental factors on ecological processes. Gathering such data is, however, costly and time-consuming, especially in the highly diverse tropics. We aimed to provide a comprehensive repository of available flower-invertebrate interaction information for the Atlantic Forest, a South American tropical forest domain. Data were obtained from published works and "gray literature," such as theses and dissertations, as well as self-reports by co-authors. The data set has ~18,000 interaction records forming 482 networks, each containing between one and 1061 interaction links. Each network was sampled for about 200 h or less, with few exceptions. A total of 641 plant genera within 136 different families and 39 orders were reported, with the most abundant and rich families being Asteraceae, Fabaceae, and Rubiaceae. Invertebrates interacting with these plants were all arthropods from 10 orders, 129 families, and 581 genera, comprising 2419 morphotypes (including 988 named species). Hymenoptera was the most abundant and diverse order, with at least six times more records than the second-ranked order (Lepidoptera). The complete data set shows Hymenoptera interacting with all plant orders and also shows Diptera, Lepidoptera, Coleoptera, and Hemiptera to be important nodes. Among plants, Asterales and Fabales had the highest number of interactions. The best sampled environment was forest (~8000 records), followed by pastures and crops. Savanna, grasslands, and urban environments (among others) were also reported, indicating a wide range of approaches dedicated to collecting flower-invertebrate interaction data in the Atlantic Forest domain. Nevertheless, most reported data were from forest understory or lower strata, indicating a knowledge gap about flower-invertebrate interactions at the canopy. Also, access to remote regions remains a limitation, generating sampling bias across the geographical range of the Atlantic Forest. Future studies in these continuous and hard-to-access forested areas will yield important new information regarding the interactions between flowers and invertebrates in the Atlantic Forest. There are no copyright restrictions on the data set. Please cite this data paper if the data are used in publications and teaching events.


Assuntos
Himenópteros , Lepidópteros , Humanos , Animais , Ecossistema , Invertebrados , Florestas , Plantas , Flores , Polinização
3.
Sci Rep ; 10(1): 19708, 2020 11 12.
Artigo em Inglês | MEDLINE | ID: mdl-33184441

RESUMO

Grassland ecosystems are evolutionarily linked to disturbances such as grazing and fire. These disturbances define grassland plant communities and habitat heterogeneity, which influence animal communities. We evaluated the influence of fire disturbance on plant and bird communities and on habitat structure by sampling grassland fragments with different time elapsed since the last fire event. Habitat structure was sampled using plant life forms and abiotic variables and birds were sampled through point counts. We recorded 862 bird individuals from 70 species. Intermediately-burnt sites harbor higher habitat heterogeneity and plant species richness in comparison with recently or long-burnt sites. Bird abundance and taxonomic diversity decreased linearly as time since fire increased. Finally, time since fire influenced the relative distribution of plant life forms and bird food guilds. Our results indicate that fire management should be included in the framework for conservation and sustainable use of grasslands, because it promotes habitat heterogeneity and diversity. To maintain habitat heterogeneity and the related habitat-specific bird species and functional groups, conservation efforts should maintain grassland patches under different management intensities and frequencies on a landscape level. However, studies focused on determining the periodicity with which fire management should be used are still lacking.


Assuntos
Aves/classificação , Herbivoria/fisiologia , Animais , Aves/fisiologia , Brasil , Conservação dos Recursos Naturais , Ecossistema , Incêndios , Pradaria , Filogenia , Dinâmica Populacional
4.
Zoologia (Curitiba, Impr.) ; 39: e21045, 2022.
Artigo em Inglês | VETINDEX | ID: biblio-1395179

RESUMO

Natural history collections (NHCs) contain valuable information that can be used in different fields of knowledge, and aid in the development of society, science, and technology. The role of curators and taxonomists in maintaining and improving biological collections is essential, as these are fundamental for the understanding of biodiversity. However, the role of taxonomists and the importance of NHCs to society have been undervalued in recent years. We, while attending a graduate program on collections at PUCRS, noted a gap in knowledge about scientific collections. Was this gap, which continued from our undergraduate to graduate years, a mere coincidence or widespread in biological science programs in Brazil? We queried 126 Brazilian institutions of higher education to assess the presence of courses related to natural-history collections and taxonomy. A total of 25 private and 37 public universities from 126 institutions searched, have a program of study in biological sciences in the curriculum on their websites. About 16% offer some course related to NHCs or taxonomy, and all of them are public institutions. Despite the budget cutting made by the Brazilian government that make it even more difficult to recognize NHCs and related areas, we believe that there should be more links among researchers from different areas and especially between the levels of basic and higher education, so that students are exposed to this subject early in their education. We, as Brazilian students, believe that more information on NHC-related issues and taxonomic subjects is urgently needed in biological science programs.(AU)


Assuntos
Humanos , Inquéritos e Questionários , História Natural/tendências , Coleção , Estudantes , Brasil , Classificação
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