Automated Author Profile

Pezzi, Pedro Henrique

Current S-Index

3.6

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.5

Average Dataset Index per dataset

Total Datasets

8

Total datasets for this author

Average FAIR Score

76.0%

Average FAIR Score per dataset

Total Citations

0

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Pezzi_etal_2022.zip

VCF files and fastsimcoal models according to Pezzi et al. paper. (2022)

Authors

  • Pezzi, Pedro Henrique
0 Citations0 Mentions15% FAIR0.1 Dataset Index
10.6084/m9.figshare.19650081.v12022

Tree and Matrix - Comparative analyses of mitochondrial genomes bring new evolutionary insights for stink bugs (Hemiptera: Pentatomidae)

Stink bugs (Pentatomidae) are a speciose group of insects that feed mostly on plants. Many species are considered agricultural pests of economically important crops around the globe. Mitochondrial genomes are valuable for evolutionary and phylogenetic studies, but have been little explored for Pentatomidae. Here, we assembled and annotated the mitochondrial genomes of four pentatomid species (Diceraeus melacanthus, Euschistus heros, Piezodorus guildinii, and Stiretrus anchorago) and performed a comparative analysis for this family and its subfamilies. Stink bug mitogenomes disclosed a conserved gene order and content, although we detected two uncommon armless tRNAs in E. heros and D. melacanthus. Phylogenetic results indicate that Pentatominae is polyphyletic, showing that internal relationships of Pentatomidae should be further investigated. Stink bug mitochondrial genes are under strong purifying selection, except for ATP8 which showed signs of positive selection.

Authors

  • Gonçalves, Leonardo ;
  • Pezzi, Pedro Henrique ;
  • Bianchi, Filipe Michels
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.193552642022

Pezzi_etal_2022.zip

VCF files and fastsimcoal models according to Pezzi et al. paper. (2022)

Authors

  • Pezzi, Pedro Henrique
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.196500812022

Supplementary Tables - Four new stink bug mitogenomes corroborate the internal inconsistencies in the classification of Pentatomidae (Hemiptera)

Stink bugs (Pentatomidae) are a speciose group of insects that feed mostly on plants. Many species are considered agricultural pests of economically important crops around the globe. Mitochondrial genomes are valuable for evolutionary and phylogenetic studies, but have been little explored for Pentatomidae. Here, we assembled and annotated the mitochondrial genomes of four pentatomid species (Diceraeus melacanthus, Euschistus heros, Piezodorus guildinii, and Stiretrus anchorago) and performed a comparative analysis for this family and its subfamilies. Stink bug mitogenomes disclosed a conserved gene order and content, although we detected two uncommon armless tRNAs in E. heros and D. melacanthus. Phylogenetic results indicate that Pentatominae is polyphyletic, showing that internal relationships of Pentatomidae should be further investigated. Stink bug mitochondrial genes are under strong purifying selection, except for ATP8 which showed signs of positive selection.

Authors

  • Gonçalves, Leonardo ;
  • Pezzi, Pedro Henrique ;
  • Bianchi, Filipe Michels
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.193549372022

Supplementary Tables - Four new stink bug mitogenomes corroborate the internal inconsistencies in the classification of Pentatomidae (Hemiptera)

Stink bugs (Pentatomidae) are a speciose group of insects that feed mostly on plants. Many species are considered agricultural pests of economically important crops around the globe. Mitochondrial genomes are valuable for evolutionary and phylogenetic studies, but have been little explored for Pentatomidae. Here, we assembled and annotated the mitochondrial genomes of four pentatomid species (Diceraeus melacanthus, Euschistus heros, Piezodorus guildinii, and Stiretrus anchorago) and performed a comparative analysis for this family and its subfamilies. Stink bug mitogenomes disclosed a conserved gene order and content, although we detected two uncommon armless tRNAs in E. heros and D. melacanthus. Phylogenetic results indicate that Pentatominae is polyphyletic, showing that internal relationships of Pentatomidae should be further investigated. Stink bug mitochondrial genes are under strong purifying selection, except for ATP8 which showed signs of positive selection.

Authors

  • Gonçalves, Leonardo ;
  • Pezzi, Pedro Henrique ;
  • Bianchi, Filipe Michels
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.19354937.v12022

Tree and Matrix - Comparative analyses of mitochondrial genomes bring new evolutionary insights for stink bugs (Hemiptera: Pentatomidae)

Stink bugs (Pentatomidae) are a speciose group of insects that feed mostly on plants. Many species are considered agricultural pests of economically important crops around the globe. Mitochondrial genomes are valuable for evolutionary and phylogenetic studies, but have been little explored for Pentatomidae. Here, we assembled and annotated the mitochondrial genomes of four pentatomid species (Diceraeus melacanthus, Euschistus heros, Piezodorus guildinii, and Stiretrus anchorago) and performed a comparative analysis for this family and its subfamilies. Stink bug mitogenomes disclosed a conserved gene order and content, although we detected two uncommon armless tRNAs in E. heros and D. melacanthus. Phylogenetic results indicate that Pentatominae is polyphyletic, showing that internal relationships of Pentatomidae should be further investigated. Stink bug mitochondrial genes are under strong purifying selection, except for ATP8 which showed signs of positive selection.

Authors

  • Gonçalves, Leonardo ;
  • Pezzi, Pedro Henrique ;
  • Bianchi, Filipe Michels
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.19355264.v12022

Coprophagy in detritivores: methodological design for feeding studies in terrestrial isopods (Crustacea, Isopoda, Oniscidea)

ABSTRACT Isopods consume feces in laboratory conditions. We investigated the effects of coprophagy on food consumption and assimilation and on isopod biomass to determine the best methodological design for feeding performance experiments. We used three species of isopods representing different eco-morphological groups and two leaves with different nitrogen content. We tested three treatments: (1) free access to feces; (2) periodic removal of feces and (3) net acting as a barrier to the feces. We did not find significant difference in any isopod or leaf species for consumption rate. Assimilation efficiency did not differ significantly for any isopod or leaf either. Only growth rate was significantly different, but only for the species Atlantoscia floridana (Van Name, 1940) with the leaf Machaerium stipitatum, and it may be due to the short duration of experiments and the isopods’ susceptibility to environmental changes. Thus, we recommend the treatment access to study consumption and growth rates since it does not require any special material or extra time. If the focus is assimilation efficiency, we suggest the treatment removal because it provides more accurate values. Furthermore, more fragile species such as A. floridana require larger sample number and/or longer experiment duration for more reliable data analyses.

Authors

  • Pezzi, Pedro Henrique ;
  • Araujo, Paula Beatriz ;
  • Wood, Camila Timm
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.9276332.v12019

Coprophagy in detritivores: methodological design for feeding studies in terrestrial isopods (Crustacea, Isopoda, Oniscidea)

ABSTRACT Isopods consume feces in laboratory conditions. We investigated the effects of coprophagy on food consumption and assimilation and on isopod biomass to determine the best methodological design for feeding performance experiments. We used three species of isopods representing different eco-morphological groups and two leaves with different nitrogen content. We tested three treatments: (1) free access to feces; (2) periodic removal of feces and (3) net acting as a barrier to the feces. We did not find significant difference in any isopod or leaf species for consumption rate. Assimilation efficiency did not differ significantly for any isopod or leaf either. Only growth rate was significantly different, but only for the species Atlantoscia floridana (Van Name, 1940) with the leaf Machaerium stipitatum, and it may be due to the short duration of experiments and the isopods’ susceptibility to environmental changes. Thus, we recommend the treatment access to study consumption and growth rates since it does not require any special material or extra time. If the focus is assimilation efficiency, we suggest the treatment removal because it provides more accurate values. Furthermore, more fragile species such as A. floridana require larger sample number and/or longer experiment duration for more reliable data analyses.

Authors

  • Pezzi, Pedro Henrique ;
  • Araujo, Paula Beatriz ;
  • Wood, Camila Timm
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.92763322019