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Lamar SK, Frank HK, La Flamme A, Gartrell B, Ormsby D, Nelson N. The effects of annual cycle, source population, and body condition on leukocyte profile and immune challenge in a basal reptile, the tuatara (Sphenodon punctatus). JOURNAL OF EXPERIMENTAL ZOOLOGY. PART A, ECOLOGICAL AND INTEGRATIVE PHYSIOLOGY 2024; 341:60-72. [PMID: 37921244 DOI: 10.1002/jez.2761] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Received: 06/25/2023] [Revised: 09/23/2023] [Accepted: 09/28/2023] [Indexed: 11/04/2023]
Abstract
Leukocyte profiles are broadly used to assess the health status of many species. Reference intervals, and an understanding of the factors that may influence these intervals, are necessary for adequate interpretation of leukograms. Using a data set that spans over three decades, we investigated variation in leukocyte profile in several populations of the evolutionarily unique reptile, the tuatara (Sphenodon punctatus). To do this, we first established reference intervals for each leukocyte type according to best practices. Next, we determined that source population and sampling date were the two most important predictors of leukocyte makeup. We found significant differences in the ratio of heterophils: lymphocytes (H:L) between populations, with tuatara on the more resource-stressed sampling island having a significantly higher ratio of H:L. Finally, we found that sampling location, sex, and life stage did not explain variation in the responses of tuatara to stimulation with Concanavalin A and lipopolysaccharide in both 3-(4,5-dimethylthiazol-2-yl)-2,5-di-phenyltetrazolium bromide and Griess assay experiments. Our results offer important insight into the function of leukocytes in reptiles.
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Affiliation(s)
- Sarah K Lamar
- School of Biological Sciences, Victoria University of Wellington, Wellington, New Zealand
- Centre for Biodiversity and Restoration Ecology, Victoria University of Wellington, Wellington, New Zealand
| | - Hannah K Frank
- School of Biological Sciences, Victoria University of Wellington, Wellington, New Zealand
- School of Science and Engineering, Tulane University, New Orleans, Louisiana, USA
| | - Anne La Flamme
- School of Biological Sciences, Victoria University of Wellington, Wellington, New Zealand
| | - Brett Gartrell
- Wildbase, Tāwharau Ora, School of Veterinary Science, Massey University, Palmerston North, New Zealand
| | - Diane Ormsby
- School of Biological Sciences, Victoria University of Wellington, Wellington, New Zealand
| | - Nicola Nelson
- School of Biological Sciences, Victoria University of Wellington, Wellington, New Zealand
- Centre for Biodiversity and Restoration Ecology, Victoria University of Wellington, Wellington, New Zealand
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Jiang YJ, Gao JF, Lin LH, Li H, Meng QG, Qu YF, Ji X. Single-cell transcriptomes from turtle livers reveal sensitivity of hepatic immune cells to bacteria-infection. FISH & SHELLFISH IMMUNOLOGY 2022; 131:847-854. [PMID: 36273515 DOI: 10.1016/j.fsi.2022.10.033] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 08/27/2022] [Revised: 10/10/2022] [Accepted: 10/17/2022] [Indexed: 06/16/2023]
Abstract
The liver is important in the synthesis, metabolism and storage of nutrients, detoxification and immune response of the body, and the liver immune response against exogenous pathogens from the intestinal tract plays a key role in the immune activities. However, the cellular composition of the liver immune atlas remains sparsely studied in reptiles. We used single-cell RNA sequencing to identify the cellular profile of the liver of the Chinese soft-shelled turtle (Pelodiscus sinensis). We obtained the transcriptional landscape based on 9938 cells from the fractionation of fresh hepatic tissues from two individuals, uninfected and infected with bacteria (Aeromonas hydrophila). We identified seven hepatic immune cell subsets, including plasma, erythroid, T/NK, B, endothelial, dendritic and Kupffer cells. Bacteria-infection altered the number of liver immune cells, as revealed by the fact that the infected turtle had more plasma, endothelial and Kupffer cells and fewer T/NK, dendritic and erythroid cells than did the uninfected turtle. Our study is the first to provide a comprehensive view of the hepatic immune landscape of P. sinensis at the single-cell resolution that outlines the characteristics of immune cells in the turtle liver and provides a liver transcriptome baseline for turtle immunology.
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Affiliation(s)
- Yi-Jin Jiang
- Jiangsu Key Laboratory for Biodiversity and Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, Jiangsu, China
| | - Jian-Fang Gao
- Hangzhou Key Laboratory for Ecosystem Protection and Restoration, College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, 311121, Zhejiang, China
| | - Long-Hui Lin
- Hangzhou Key Laboratory for Ecosystem Protection and Restoration, College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, 311121, Zhejiang, China
| | - Hong Li
- Jiangsu Key Laboratory for Biodiversity and Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, Jiangsu, China
| | - Qing-Guo Meng
- Jiangsu Key Laboratory for Biodiversity and Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, Jiangsu, China
| | - Yan-Fu Qu
- Jiangsu Key Laboratory for Biodiversity and Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, Jiangsu, China.
| | - Xiang Ji
- Zhejiang Provincial Key Laboratory for Water Environment and Marine Biological Resources Protection, College of Life and Environmental Sciences, Wenzhou University, Wenzhou, 325035, Zhejiang, China.
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Thanasak J, Tansatit T, Taowan J, Hirunwiroj N, Chitthichanonte S, Wongmack T. The peripheral blood mononuclear cells preparation and the hematology of Varanus salvator. PLoS One 2022; 17:e0269108. [PMID: 35867719 PMCID: PMC9307208 DOI: 10.1371/journal.pone.0269108] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/15/2021] [Accepted: 05/14/2022] [Indexed: 11/18/2022] Open
Abstract
The objectives of this study were to evaluate the proper anticoagulants coated in blood-collecting tube for the peripheral blood mononuclear cells (PBMCs) isolation and to evaluate the proper culture temperature for the Varanus salvator's PBMCs, in addition, the hematological characteristics also reported. The heparin treated blood (n = 10) and EDTA treated blood (n = 10) from Varanus salvator were obtained for PBMCs evaluation. The PBMCs obtained from the heparin treated blood was significantly higher than that of EDTA treated blood during the culture period (P < 0.05) indicated heparin would be more appropriated anticoagulant for blood collection. The PBMCs cultured under 37°C and 27°C were not significantly difference on first three days but 37°C showed significantly higher effect in the following days (P < 0.05) indicated both temperatures can be used which 37°C should be an optimal for PBMCs preparation. The peripheral blood cells of Varanus salvator (n = 49) were analyzed for hematological profiles and characteristics which the number of erythrocytes 1.19 ± 0.04 x 1012/L (1.17-1.35 x 1012/L) and WBC 2.41 ± 0.13 x 109/L (2.29-2.81 x 109/L) with absolute differential count of heterophils 0.92 ± 0.02 x 109/L (0.87-0.95 x 109/L), lymphocytes 1.17 ± 0.01 x 109/L (1.15-1.23 x 109/L), azurophils 0.40 ± 0.01 x 109/L (0.37-0.42 x 109/L), basophils 0.000 ± 0.001 x 109/L (0.004-0.011 x 109/L) and monocytes 0.027 ± 0.002 x 109/L (0.028-0.039 x 109/L). These results would play an important role on the cell immunological studies of the Varanus salvator in the future.
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Affiliation(s)
- Jitkamol Thanasak
- Faculty of Veterinary Science, Department of Clinical Sciences and Public Health, Mahidol University, Salaya, Phutthamonthon, Nakhon Pathom, Thailand
| | - Tawewan Tansatit
- Faculty of Veterinary Science, Department of Pre-clinic and Applied Animal Science, Mahidol University, Salaya, Phutthamonthon, Nakhon Pathom, Thailand
| | - Jarupha Taowan
- Faculty of Veterinary Science, The Monitoring and Surveillance Center for Zoonotic Diseases in Wildlife and Exotic Animals, Mahidol University, Salaya, Phutthamonthon, Nakhon Pathom, Thailand
| | - Napawan Hirunwiroj
- Faculty of Veterinary Science, Department of Clinical Sciences and Public Health, Mahidol University, Salaya, Phutthamonthon, Nakhon Pathom, Thailand
| | - Sujit Chitthichanonte
- Faculty of Veterinary Science, Department of Clinical Sciences and Public Health, Mahidol University, Salaya, Phutthamonthon, Nakhon Pathom, Thailand
| | - Teetat Wongmack
- Faculty of Veterinary Science, Department of Clinical Sciences and Public Health, Mahidol University, Salaya, Phutthamonthon, Nakhon Pathom, Thailand
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Mina D, Sagonas K, Fragopoulou AF, Pafilis P, Skouroliakou A, Margaritis LH, Tsitsilonis OE, Valakos ED. Immune responses of a wall lizard to whole-body exposure to radiofrequency electromagnetic radiation. Int J Radiat Biol 2016; 92:162-8. [PMID: 26853383 DOI: 10.3109/09553002.2016.1135262] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/13/2022]
Abstract
PURPOSE During the last three decades, the number of devices that emit non-ionizing electromagnetic radiation (EMR) at the wireless communication spectrum has rapidly increased and possible effects on living organisms have become a major concern. The purpose of this study was to investigate the effects of radiofrequency EMR emitted by a widely used wireless communication device, namely the Digital Enhanced Communication Telephony (DECT) base, on the immune responses of the Aegean wall lizard (Podarcis erhardii). MATERIALS AND METHODS Adult male lizards were exposed 24 h/day for 8 weeks to 1880-1900 MHz DECT base radiation at average electric field intensity of 3.2 V/m. Immune reactivity was assessed using the phytohemagglutinin (PHA) skin swelling and mixed lymphocyte reaction (MLR) tests. RESULTS Our results revealed a noticeable suppression (approximately 45%) of inflammatory responses in EMR-exposed lizards compared to sham-exposed animals. T cell-mediated responses were marginally affected. CONCLUSION Daily radiofrequency EMR exposure seems to affect, at least partially, the immunocompetence of the Aegean wall lizard.
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Affiliation(s)
- Despoina Mina
- a Department of Cell Biology and Biophysics, Faculty of Biology , University of Athens , Athens , Greece ;,b Department of Animal and Human Physiology, Faculty of Biology , University of Athens , Athens , Greece
| | - Kostas Sagonas
- b Department of Animal and Human Physiology, Faculty of Biology , University of Athens , Athens , Greece
| | - Adamantia F Fragopoulou
- a Department of Cell Biology and Biophysics, Faculty of Biology , University of Athens , Athens , Greece
| | - Panayiotis Pafilis
- c Department of Zoology and Marine Biology, Faculty of Biology , University of Athens , Athens , Greece
| | - Aikaterini Skouroliakou
- d Department of Energy Technology Engineering , Technological Educational Institute of Athens , Athens , Greece
| | - Lukas H Margaritis
- a Department of Cell Biology and Biophysics, Faculty of Biology , University of Athens , Athens , Greece
| | - Ourania E Tsitsilonis
- b Department of Animal and Human Physiology, Faculty of Biology , University of Athens , Athens , Greece
| | - Efstratios D Valakos
- b Department of Animal and Human Physiology, Faculty of Biology , University of Athens , Athens , Greece
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Middleton DMRL, Nelson NJ, Gartrell BD, La Flamme AC. Presence of antibodies to Salmonella in tuatara (Sphenodon punctatus) sera. Comp Immunol Microbiol Infect Dis 2015; 41:17-27. [PMID: 26264523 DOI: 10.1016/j.cimid.2015.06.001] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/23/2015] [Revised: 06/11/2015] [Accepted: 06/11/2015] [Indexed: 10/23/2022]
Abstract
Colonisation of a host by pathogenic microorganisms is a near constant threat to the health of all vertebrates and most species have evolved an efficient adaptive immune response which produces antibodies following exposure to a specific antigen. The strength of this response can be influenced by many factors including sex and season. Tuatara are exposed to Salmonella through contact with infected skinks and soil; however, no gastrointestinal colonisation of tuatara with Salmonella has been found. Using Western blot and flow cytometry we have demonstrated that tuatara possess antibodies which recognise Salmonella antigens, but many of these antibodies are not specific and are cross-reactive with two closely related and ubiquitous bacteria, Escherichia coli and Citrobacter koseri. Our study describes the anti-Salmonella immune responses in tuatara and will help to inform decisions around maintaining wildlife health, as well as providing important insights into the role and development of adaptive immunity in reptilian species.
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Affiliation(s)
- Danielle M R L Middleton
- Allan Wilson Centre for Molecular Ecology and Evolution, Victoria University of Wellington, P.O. Box 600, Wellington, New Zealand.
| | - Nicola J Nelson
- Allan Wilson Centre for Molecular Ecology and Evolution, Victoria University of Wellington, P.O. Box 600, Wellington, New Zealand
| | - Brett D Gartrell
- Wildbase, Institute of Veterinary, Animal and Biomedical Science, Massey University, Private Bag 11-222, Palmerston North, New Zealand
| | - Anne C La Flamme
- Allan Wilson Centre for Molecular Ecology and Evolution, Victoria University of Wellington, P.O. Box 600, Wellington, New Zealand
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Rousselet E, Levin M, Gebhard E, Higgins BM, DeGuise S, Godard-Codding CAJ. Evaluation of immune functions in captive immature loggerhead sea turtles (Caretta caretta). Vet Immunol Immunopathol 2013; 156:43-53. [PMID: 24094689 DOI: 10.1016/j.vetimm.2013.09.004] [Citation(s) in RCA: 19] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/26/2013] [Revised: 09/10/2013] [Accepted: 09/12/2013] [Indexed: 10/26/2022]
Abstract
Sea turtles face numerous environmental challenges, such as exposure to chemical pollution and biotoxins, which may contribute to immune system impairment, resulting in increased disease susceptibility. Therefore, a more thorough assessment of the host's immune response and its susceptibility is needed for these threatened and endangered animals. In this study, the innate and acquired immune functions of sixty-five clinically healthy, immature, captive loggerhead sea turtles (Caretta caretta) were assayed using non-lethal blood sample collection. Functional immune assays were developed and/or optimized for this species, including mitogen-induced lymphocyte proliferation, natural killer (NK) cell activity, phagocytosis, and respiratory burst. Peripheral blood mononuclear cells (PBMC) and phagocytes were isolated by density gradient centrifugation on Ficoll-Paque and discontinuous Percoll gradients, respectively. The T lymphocyte mitogens ConA significantly induced lymphocyte proliferation at 1 and 2 μg/mL while PHA significantly induced lymphocyte proliferation at 5 and 10 μg/mL. The B lymphocyte mitogen LPS significantly induced proliferation at 1 μg/mL. Monocytes demonstrated higher phagocytic activity than eosinophils. In addition, monocytes exhibited respiratory burst. Natural killer cell activity was higher against YAC-1 than K-562 target cells. These optimized assays may help to evaluate the integrity of loggerhead sea turtle's immune system upon exposure to environmental contaminants, as well as part of a comprehensive health assessment and monitoring program.
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Affiliation(s)
- Estelle Rousselet
- Department of Environmental Toxicology, The Institute of Environmental and Human Health, Texas Tech University, 1207 Gilbert Drive, Lubbock, TX 79416, United States.
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Zimmerman LM, Vogel LA, Bowden RM. Understanding the vertebrate immune system: insights from the reptilian perspective. J Exp Biol 2010; 213:661-71. [DOI: 10.1242/jeb.038315] [Citation(s) in RCA: 285] [Impact Index Per Article: 19.0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/18/2022]
Abstract
Summary
Reptiles are ectothermic amniotes, providing the key link between ectothermic anamniotic fishes and amphibians, and endothermic amniotic birds and mammals. A greater understanding of reptilian immunity will provide important insights into the evolutionary history of vertebrate immunity as well as the growing field of eco-immunology. Like mammals, reptile immunity is complex and involves innate, cell-mediated and humoral compartments but, overall, there is considerably less known about immune function in reptiles. We review the current literature on each branch of the reptilian immune system, placing this information in context to other vertebrates. Further, we identify key areas that are prime for research as well as areas that are lagging because of lack of reagents in non-model systems.
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Affiliation(s)
- L. M. Zimmerman
- School of Biological Sciences, Illinois State University, Normal, IL 61790-4120, USA
| | - L. A. Vogel
- School of Biological Sciences, Illinois State University, Normal, IL 61790-4120, USA
| | - R. M. Bowden
- School of Biological Sciences, Illinois State University, Normal, IL 61790-4120, USA
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Valakos ED, Kourkouli A, Skopeliti M, Pafilis P, Poulakakis N, Voutsas IF, Lymberakis P, Simou C, Voelter W, Tsitsilonis OE. Combining immunological and molecular data to assess phylogenetic relations of some Greek Podarcis species. Comp Biochem Physiol B Biochem Mol Biol 2007; 147:1-10. [PMID: 17347009 DOI: 10.1016/j.cbpb.2006.11.032] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/22/2006] [Revised: 11/01/2006] [Accepted: 11/01/2006] [Indexed: 11/29/2022]
Abstract
Most recent molecular studies revealed the phylogeny of Greek Podarcis species, which for years remained elusive, due to discordant data produced from various chromosomal, complement fixation and protein studies. In this report, we analyzed cellular immune responses of spleen-derived lymphocytes from six allopatric Podarcis species encountered in Greece, by assessing two-way mixed lymphocyte reaction (MLR)-induced proliferation. On the basis of stimulation indices (S.I.) as determined from cultures set up from xenogeneic splenocytes coincubated in pairs, we generated a phylogenetic tree, fully consistent with the phylogenetic relationships of Podarcis as determined by parallel analyses based on partial mitochondrial (mt) DNA sequences. Although the exact mechanisms triggering lymphocyte responses in lizard two-way xenogeneic MLR are not fully understood, our results show the potential use of cell-mediated immune responses as an additional approach to mtDNA analysis, for species delimitation within specific lizard taxa.
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Affiliation(s)
- Efstratios D Valakos
- Department of Animal and Human Physiology, Faculty of Biology, University of Athens, Panepistimiopolis 15784, Ilissia, Athens, Greece.
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Burnham DK, Keall SN, Nelson NJ, Daugherty CH. Effects of sampling date, gender, and tick burden on peripheral blood cells of captive and wild tuatara(Sphenodon punctatus). NEW ZEALAND JOURNAL OF ZOOLOGY 2006. [DOI: 10.1080/03014223.2006.9518453] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 10/19/2022]
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Miller HC, Belov K, Daugherty CH. Characterization of MHC class II genes from an ancient reptile lineage, Sphenodon (tuatara). Immunogenetics 2005; 57:883-91. [PMID: 16261382 DOI: 10.1007/s00251-005-0055-4] [Citation(s) in RCA: 17] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/27/2005] [Accepted: 09/29/2005] [Indexed: 10/25/2022]
Abstract
The organization and evolution of major histocompatibility complex (MHC) genes vary considerably among vertebrate lineages. MHC genes have been well characterized in mammals, birds, amphibians and fish, but little is known about their organization in reptiles, despite the fact that reptiles occupy an important phylogenetic position for understanding the evolutionary history of both mammalian and avian MHC genes. Here we describe the characterization of the first MHC class II B cDNA sequences from a non-avian reptile, the tuatara (Sphenodon spp.). Three class II B sequences were isolated from a tuatara cDNA library, and four additional partial sequences were isolated by reverse transcriptase-polymerase chain reaction. Six of these sequences appear to belong to the same gene family, which we have named SppuDAB. The remaining sequence (named SppuDBB) shares only 43.9% amino acid similarity with SppuDAB and thus appears to represent a separate gene family. SppuDBB may be a non-classical locus as it does not contain all the conserved residues expected of a classical MHC class II gene. Southern blot analysis indicates that only a single copy of SppuDBB exists in tuatara, but that multiple loci related to SppuDAB are present. The SppuDAB sequences have the highest amino acid similarity (57.2-62.4%) with class II B sequences from the spectacled caiman, but only 26.4-48.7% similarity with sequences from other vertebrates. The tuatara sequences do not strongly group with other reptile sequences on a phylogenetic tree, reflecting the antiquity of the Sphenodon lineage and the lack of closely related sequences for comparison.
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Affiliation(s)
- Hilary C Miller
- Allan Wilson Centre for Molecular Ecology and Evolution, School of Biological Sciences, Victoria University of Wellington, New Zealand.
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