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      The spermatogenic process of the common vampire bat Desmodus rotundus under a histomorphometric view

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          Abstract

          Among all bat species, Desmodus rotundus stands out as one of the most intriguing due to its exclusively haematophagous feeding habits. However, little is known about their spermatogenic cycle. This study aimed at describing the spermatogenic process of common vampire bats through testicular histomorphometric characterization of adult specimens, spermatogenic production indexes, description of stages of the seminiferous epithelium cycle and estimative of the spermatogenic process duration. Morphometrical and immunohistochemical analyzes for bromodeoxiuridine were conducted under light microscopy and ultrastructural analyzes were performed under transmission electron microscopy. Vampire bats showed higher investment in gonadal tissue (gonadosomatic index of 0.54%) and in seminiferous tubules (tubulesomatic index of 0.49%) when compared to larger mammals. They also showed a high tubular length per gram of testis (34.70 m). Approximately half of the intertubular compartment was found to be comprised by Leydig cells (51.20%), and an average of 23.77x10 6 of these cells was found per gram of testis. The germline cells showed 16.93% of mitotic index and 2.51% of meiotic index. The overall yield of spermatogenesis was 60% and the testicular spermatic reserve was 71.44x10 7 spermatozoa per gram of testis. With a total spermatogenesis duration estimated at 37.02 days, vampire bats showed a daily sperm production of 86.80x10 6 gametes per gram of testis. These findings demonstrate a high sperm production, which is commonly observed in species with promiscuous mating system.

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          Most cited references51

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          Haematophagous bats in Brazil, their role in rabies transmission, impact on public health, livestock industry and alternatives to an indiscriminate reduction of bat population.

          F Mayen (2003)
          Haematophagous bats exist only in Latin America, from México to the Northern provinces of Argentina. They are represented by three species, Desmodus rotundus, Diphylla ecaudata and Diaemus youngii. While two species feed only on blood of wild birds, one species, D. rotundus, causes losses feeding on livestock and could be a vector for rabies virus. The cases in which humans were bitten by the bat have increased in Brazil. Bats became a target of control activities by farming communities and local governments. Indiscriminate actions such as poisoning bats and destroying their roosts put the lives of other bat species, which are extremely important for the ecologic balance, at risk. The vaccination of exposed livestock against rabies, which would protect the endangered livestock, is not regularly carried out. The importance and current status of D. rotundus in the transmission of rabies in Brazil, the Public Health aspects, the importance for the livestock industry are shown and the consequences of reducing bat population are discussed. Alternatives to an indiscriminate bat-population reduction in the control of rabies are proposed.
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            Mitochondrial Fusion Is Essential for Steroid Biosynthesis

            Although the contribution of mitochondrial dynamics (a balance in fusion/fission events and changes in mitochondria subcellular distribution) to key biological process has been reported, the contribution of changes in mitochondrial fusion to achieve efficient steroid production has never been explored. The mitochondria are central during steroid synthesis and different enzymes are localized between the mitochondria and the endoplasmic reticulum to produce the final steroid hormone, thus suggesting that mitochondrial fusion might be relevant for this process. In the present study, we showed that the hormonal stimulation triggers mitochondrial fusion into tubular-shaped structures and we demonstrated that mitochondrial fusion does not only correlate-with but also is an essential step of steroid production, being both events depend on PKA activity. We also demonstrated that the hormone-stimulated relocalization of ERK1/2 in the mitochondrion, a critical step during steroidogenesis, depends on mitochondrial fusion. Additionally, we showed that the SHP2 phosphatase, which is required for full steroidogenesis, simultaneously modulates mitochondrial fusion and ERK1/2 localization in the mitochondrion. Strikingly, we found that mitofusin 2 (Mfn2) expression, a central protein for mitochondrial fusion, is upregulated immediately after hormone stimulation. Moreover, Mfn2 knockdown is sufficient to impair steroid biosynthesis. Together, our findings unveil an essential role for mitochondrial fusion during steroidogenesis. These discoveries highlight the importance of organelles’ reorganization in specialized cells, prompting the exploration of the impact that organelle dynamics has on biological processes that include, but are not limited to, steroid synthesis.
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              Methods for quantifying mammalian spermatogenesis: a review.

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                Author and article information

                Contributors
                Role: Editor
                Journal
                PLoS One
                PLoS ONE
                plos
                plosone
                PLoS ONE
                Public Library of Science (San Francisco, CA USA )
                1932-6203
                16 March 2017
                2017
                : 12
                : 3
                : e0173856
                Affiliations
                [1 ]Department of Morphology, Federal University of Rio Grande do Norte, Natal, Rio Grande do Norte, Brazil
                [2 ]Department of Veterinary, Federal University of Viçosa, Viçosa, Minas Gerais, Brazil
                [3 ]Department of Animal Biology, Federal University of Viçosa, Viçosa, Minas Gerais, Brazil
                [4 ]Department of General Biology, Federal University of Viçosa, Viçosa, Minas Gerais, Brazil
                University Hospital of Münster, GERMANY
                Author notes

                Competing Interests: The authors have declared that no competing interests exist.

                • Conceptualization: DBM SLPM.

                • Data curation: SLPM.

                • Formal analysis: SLPM.

                • Funding acquisition: DBM SLPM.

                • Investigation: DBM.

                • Methodology: DBM TARP.

                • Project administration: DBM SLPM.

                • Resources: SLPM LCHPP.

                • Software: SLPM.

                • Supervision: SLPM.

                • Validation: TARP MBDF.

                • Visualization: DBM SLPM.

                • Writing – original draft: DBM MBDF.

                • Writing – review & editing: DBM SLPM.

                Author information
                http://orcid.org/0000-0003-3277-1857
                Article
                PONE-D-16-39491
                10.1371/journal.pone.0173856
                5354406
                28301534
                a754b893-5717-4a43-864b-0df71b6482bc
                © 2017 Morais et al

                This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

                History
                : 3 October 2016
                : 28 February 2017
                Page count
                Figures: 5, Tables: 3, Pages: 18
                Funding
                The authors acknowledge CAPES Foundation, Ministry of Education - Brazil, for the scholarship provided to DBM. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.
                Categories
                Research Article
                Biology and Life Sciences
                Cell Biology
                Cellular Types
                Animal Cells
                Germ Cells
                Sperm
                Spermatocytes
                Biology and Life Sciences
                Anatomy
                Biological Tissue
                Epithelium
                Medicine and Health Sciences
                Anatomy
                Biological Tissue
                Epithelium
                Biology and Life Sciences
                Organisms
                Animals
                Vertebrates
                Amniotes
                Mammals
                Bats
                Biology and Life Sciences
                Cell Biology
                Cellular Types
                Animal Cells
                Germ Cells
                Sperm
                Spermatids
                Biology and Life Sciences
                Cell Biology
                Cellular Types
                Animal Cells
                Germ Cells
                Biology and Life Sciences
                Cell Biology
                Cellular Types
                Animal Cells
                Epithelial Cells
                Sertoli Cells
                Biology and Life Sciences
                Anatomy
                Biological Tissue
                Epithelium
                Epithelial Cells
                Sertoli Cells
                Medicine and Health Sciences
                Anatomy
                Biological Tissue
                Epithelium
                Epithelial Cells
                Sertoli Cells
                Biology and Life Sciences
                Cell Biology
                Cellular Types
                Animal Cells
                Germ Cells
                Sperm
                Spermatogonia
                Biology and Life Sciences
                Organisms
                Animals
                Vertebrates
                Amniotes
                Mammals
                Custom metadata
                All relevant data are within the paper.

                Uncategorized
                Uncategorized

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