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FIGURE 1. A in Helminths of small rodents (Heteromyidae and Cricetidae) in the Yucatan Peninsula, Mexico: an integrative taxonomic approach to their inventory
FIGURE 1. A. Geographic location of Mexico and the area covered by the Mexican states in the Yucatan Peninsula (black area). B. Location of the sites (red dots) where wild small rodents were captured in the states of Campeche, Yucatan and Quintana Roo, Yucatan Peninsula, Mexico. HR, Hobonil ranch; IH, Ich ha lol xaan ecological park; MO, Molas farm; DZ, Dzununcan farm; SF, San Francisco cattle ranch; SC, Santa Cruz cattle ranch; VZ, Vallazoo; AP, Aak ecological park; PR, Papam ranch; KR, Kuncheil cattle ranch; JJ, Jolie jungle eco-hotel; BN, Balam Nah eco-hotel; DG, David Gustavo community; ZL, Zoh Laguna community.
FIGURE 7 in Helminths of small rodents (Heteromyidae and Cricetidae) in the Yucatan Peninsula, Mexico: an integrative taxonomic approach to their inventory
FIGURE 7. Phylogenetic tree based on the ML analysis constructed on partial large subunit ribosomal gene (28S) of cestodes from different hosts. Individual GenBank accession numbers precede species name, followed by host name. Bootstrap support values for ML are provided at the nodes. The new sequences of the present study are in bold.
FIGURE 4. A in Helminths of small rodents (Heteromyidae and Cricetidae) in the Yucatan Peninsula, Mexico: an integrative taxonomic approach to their inventory
FIGURE 4. A. Posterior end of male specimen of Trichuris silviae from Heteromys gaumeri showing the slightly campanulate spicular sheath (arrow), lateral view. B. SEM micrograph of the anterior extremity of Monodontus sp. from Sigmodon toltecus showing the mouth opening, paired cutting plates and cervical papillae (arrow), ventral view. C. Cross section at midbody showing features of the synlophe of female Vexillata vexillata from Heteromys gaumeri. D. Male caudal bursa of Vexillata vexillata from Heteromys gaumeri, ventral view. E. Cross section at midbody showing features of the synlophe of male Heligmosomoidea gen. sp. cf. Vexillata from Ototylomys phyllotis. F. Cross section at midbody showing features of the synlophe of female Carolinensis sp. from Peromyscus yucatanicus. G. Cross section at midbody showing features of the synlophe of male Hassalstrongylus aduncus from Sigmodon toltecus. H. Cross section at midbody showing features of the synlophe of female Hassalstrongylus musculi from Oligoryzomys fulvescens. I. Male caudal bursa of Hassalstrongylus musculi from Ototylomys phyllotis, dorsal view. J. SEM micrograph of female Heligmostrongylus sp. from Peromyscus yucatanicus showing the discontinuous ridges, lateral view. K. Male caudal bursa of Heligmostrongylus sp. from Peromyscus yucatanicus, ventral view. L. Cross section at midbody of female Heligmonellidae gen. sp. from Sigmodon toltecus showing the absence of synlophe. Abbreviations: r, right side; v, ventral side. All cross sections of the synlophe orientated as in figure C.
FIGURE 6 in Helminths of small rodents (Heteromyidae and Cricetidae) in the Yucatan Peninsula, Mexico: an integrative taxonomic approach to their inventory
FIGURE 6. Phylogenetic tree based on the ML analysis constructed on partial large subunit ribosomal gene (28S) of trematodes from different hosts. Individual GenBank accession numbers precede species name, followed by host name. Bootstrap support values for ML are provided at the nodes. The new sequences of the present study are in bold.
FIGURE 3. A in Helminths of small rodents (Heteromyidae and Cricetidae) in the Yucatan Peninsula, Mexico: an integrative taxonomic approach to their inventory
FIGURE 3. A. Scolex of Raillietina sp. (1) from Sigmodon toltecus, apical view. B. Scolex of Hymenolepis sp. from Heteromys gaumeri, dorsoventral view. C. SEM micrograph of scolex of the metacestode of Hydatigera taeniaeformis from Sigmodon toltecus, apical view. D. Large and small rostellar hooks of the metacestode of Hydatigera taeniaeformis from Sigmodon toltecus, lateral view. E. SEM micrograph of scolex of the metacestode of Taenia rileyi from Sigmodon toltecus, apical view. F. Large and small rostellar hooks of the metacestode of Taenia rileyi from Sigmodon toltecus, lateral view.
Bayesian morphological clock versus parsimony: An insight into the relationships and dispersal events of postvacuum Cricetidae (Rodentia, Mammalia)
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Humoral immunity of voles Cricetidae Rodentia in Siberia
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Tempo and mode of evolution of Oryzomyine rodents (Rodentia, Cricetidae, Sigmodontinae): a phylogenomic approach
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Genetic variation of the Chilean endemic long-haired mouse Abrothrix longipilis (Rodentia, Supramyomorpha, Cricetidae) in a geographical and environmental context
<p>Here we make available to the scientific community the dataset used in the study on genetic variation of the sigmodintine rodent <em>Abrothrix longipilis. </em>The dataset consists of transcriptome-derived raw SNPs from 17 individuals of <em>A. longipiis </em>collected from natural populations in Chile and Argentina.</p>
Figure 1 from: Dai X, Zhou L-Y, Xu T-T, Wang Q-Y, Luo B, Li Y-Y, Gu C, Li S-P, Wang A-Q, Wei W-H, Yang S-M (2020) Reproductive responses of the male Brandt's vole, Lasiopodomys brandtii (Rodentia: Cricetidae) to tannic acid. Zoologia 37: 1-11. https://doi.org/10.3897/zoologia.37.e52232
Figure 1 The effect of TA on body weight. The body weight of male Lasiopodomys brandtii provided low dose (3 mg/mL) and high dose (6 mg/mL) tannic acid (TA) from four weeks of age to eight weeks of age. Error bars indicate standard error (n = 6).
Figure 13 from: Dai X, Zhou L-Y, Xu T-T, Wang Q-Y, Luo B, Li Y-Y, Gu C, Li S-P, Wang A-Q, Wei W-H, Yang S-M (2020) Reproductive responses of the male Brandt's vole, Lasiopodomys brandtii (Rodentia: Cricetidae) to tannic acid. Zoologia 37: 1-11. https://doi.org/10.3897/zoologia.37.e52232
Figure 13 The effect of TA on the expression of autophagy-related genes. Relative mRNA expression levels of LC3A and Beclin1 in the testes of male Lasiopodomys brandtii provided low dose (3 mg/mL) and high dose (6 mg/mL) tannic acid (TA). Error bars indicate standard error. Same letters connect bars with no significant differences at p < 0.05 (n = 6).
Figure 10-12 from: Dai X, Zhou L-Y, Xu T-T, Wang Q-Y, Luo B, Li Y-Y, Gu C, Li S-P, Wang A-Q, Wei W-H, Yang S-M (2020) Reproductive responses of the male Brandt's vole, Lasiopodomys brandtii (Rodentia: Cricetidae) to tannic acid. Zoologia 37: 1-11. https://doi.org/10.3897/zoologia.37.e52232
Figure 10-12 The effect of TA on the content of anti-oxidative enzymes in serum. GSH-Px (10), CAT (11), and SOD (12) level in the serum of male Lasiopodomys brandtii provided low dose (3 mg/mL) and high dose (6 mg/mL) tannic acid (TA). Error bars indicate standard error. Same letters connect bars with no significant differences at p < 0.05 (n = 6).
Figure 6-9 from: Dai X, Zhou L-Y, Xu T-T, Wang Q-Y, Luo B, Li Y-Y, Gu C, Li S-P, Wang A-Q, Wei W-H, Yang S-M (2020) Reproductive responses of the male Brandt's vole, Lasiopodomys brandtii (Rodentia: Cricetidae) to tannic acid. Zoologia 37: 1-11. https://doi.org/10.3897/zoologia.37.e52232
Figure 6-9 The effect of TA on the reproduction-related hormones concentration and StAR expression. Concentrations of luteinizing hormone (LH) (6), follicle-stimulating hormone (FSH) (7), and testosterone (T) (8) in the serum and relative mRNA expression levels of steroidogenic acute regulatory protein (StAR) (9) in the testes of male Lasiopodomys brandtii provided low dose (3 mg/mL) and high dose (6 mg/mL) tannic acid (TA). Error bars indicate standard error. Same letters connect bars with no significant differences at p < 0.05 (n = 6).
Figure 4-5 from: Dai X, Zhou L-Y, Xu T-T, Wang Q-Y, Luo B, Li Y-Y, Gu C, Li S-P, Wang A-Q, Wei W-H, Yang S-M (2020) Reproductive responses of the male Brandt's vole, Lasiopodomys brandtii (Rodentia: Cricetidae) to tannic acid. Zoologia 37: 1-11. https://doi.org/10.3897/zoologia.37.e52232
Figure 4-5 The effect of TA on the sperm quality. Sperm density (4), Sperm abnormality rate (5), and Sperm mortality rate (5) in the epididymis of male Lasiopodomys brandtii provided low dose (3 mg/mL) and high dose (6 mg/mL) tannic acid (TA). Error bars indicate standard error. Same letters connect bars with no significant differences at p < 0.05 (n = 6).
Figures 2-3 from: Dai X, Zhou L-Y, Xu T-T, Wang Q-Y, Luo B, Li Y-Y, Gu C, Li S-P, Wang A-Q, Wei W-H, Yang S-M (2020) Reproductive responses of the male Brandt's vole, Lasiopodomys brandtii (Rodentia: Cricetidae) to tannic acid. Zoologia 37: 1-11. https://doi.org/10.3897/zoologia.37.e52232
Figures 2-3 The effect of TA on the reproductive organ weight. Relative testis weight (2) and relative epididymis weight (3) of male Lasiopodomys brandtii provided low dose (3 mg/mL) and high dose (6 mg/mL) tannic acid (TA). Error bars indicate standard error. Same letters connect bars with no significant differences at p < 0.05 (n = 6). Note: Relative testis and epididymis weight were calculated as paired testes and epididymis weight (g) divided by body weight (g).
FIGURE 13 in The Akodon boliviensis species group (Rodentia: Cricetidae: Sigmodontinae) in Argentina: species limits and distribution, with the description of a new entity
FIGURE 13. Akodon polopi, new species (holotype MACN 23486): live trapped specimen.
FIGURE 1 in Taxonomic position of Eothenomys wardi (Arvicolinae: Cricetidae) based on morphological and molecular analyses with a detailed description of the species
FIGURE 1. Collection localities of samples of Oriental voles sequenced in this work.
Fig. 2 in Peromyscus levipes (Rodentia: Cricetidae)
Fig. 2.—Dorsal, ventral, and lateral views of cranium and lateral view of mandible of an adult female Peromyscus levipes from Mexico (Escuela Nacional de Ciencias Biolo´ gicas, 27530). Greatest length of cranium is 27.2 mm. Photograph by Horacio Cabrera Santiago.
Supplementary material 1 from: Shi L, Jiang M, Li M, Shang X, Li X, Huang M, Wu Y, Qiao C, Wang X, Tian X, Shi Y, Wang Z (2021) Regulation of HIF-1α and p53 in stress responses in the subterranean rodents Lasiopodomys mandarinus and Lasiopodomys brandtii (Rodentia: Cricetidae). Zoologia 38: 1-11. https://doi.org/10.3897/zoologia.38.e58607
Figure S1.
Supplementary material 2 from: Brito J, Koch C, Tinoco N, Pardiñas UFJ (2022) A new species of Mindomys (Rodentia, Cricetidae) with remarks on external traits as indicators of arboreality in sigmodontine rodents. Evolutionary Systematics 6(1): 35-55. https://doi.org/10.3897/evolsyst.6.76879
Diagnostic traits of Mindomys (after Weksler et al. 2006)
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