克拉氏Nerodia clarkii X筋膜Nerodia的性能与免疫权衡试验

IF 2.6 Q2 Agricultural and Biological Sciences Copeia Pub Date : 2020-07-21 DOI:10.1643/CP-19-281
W. H. Hawthorne, J. Goessling
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引用次数: 2

摘要

所有生物体都受到有限能量的限制,因此必须以这种方式分配资源,以最大限度地提高适应性。由于它们对生存的重要性,免疫力和性能在选择性环境中通常都很受欢迎,因此可能是相互权衡的结果。为了验证这一折衷假设,我们将其性能与水生蛇野生杂交种群(克氏Nerodia clarkii X Nerodia fasciata)的三种组成性免疫指标进行了比较:对绵羊红细胞的凝集反应(SRBC)、嗜异性淋巴细胞比(HLR)和杀菌能力(BA)。通过锻炼蛇直到失去扶正反应(LRR)并测量疲劳时的血浆乳酸浓度来量化表现。在免疫测定中,对折衷假设的支持是混合的。杀菌能力与LRR呈正相关(P=0.003,R2=0.263);这与我们的权衡假设相反,并表明个人同时投资于这两种特质。我们未能发现SRBC与性能之间存在显著关系。HLR和LRR之间存在显著的负相关(P=0.005,R2=0.237)。嗜异性:淋巴细胞比率是先天免疫和后天免疫之间的平衡,也是基线应激的指标。这一结果表明,与HLR较低的蛇相比,HLR较高的蛇受到约束,表现不佳,因此表明应激在影响表现方面的潜在作用。或者,这一结果可能表明,免疫系统中先天免疫和后天免疫之间的内部权衡驱动了免疫和性能之间的权衡。Snout–vent长度(SVL)与我们的性能指标显著正相关(P=0.012,R2=0.192)。这一结果可以通过选择驱动性能的提高和/或运动装置的个体发育来解释。同样,SVL也是蛇免疫的重要驱动因素。总之,这些结果清楚地表明,对生存至关重要的多种生理特征之间存在着重要联系。
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A Test of Tradeoffs between Performance and Immunity in Water Snakes (Nerodia clarkii X Nerodia fasciata)
All organisms are constrained by limited energy and thus must allocate resources in such a way to maximize fitness. Due to their importance to survival, immunity and performance are each often favored in selective environments and thus may be tradeoffs of each other. To test this tradeoff hypothesis, we compared performance to three constitutive measures of immunity in a wild hybrid population of water snakes (Nerodia clarkii X Nerodia fasciata): agglutination response to sheep red blood cells (SRBC), heterophil: lymphocyte ratio (HLR), and bactericidal ability (BA). Performance was quantified by exercising snakes up to the point of loss of righting response (LRR) and measuring plasma lactate concentration at this point of fatigue. Support for the tradeoff hypothesis was mixed among the immune assays. Bactericidal ability had a significant positive correlation with LRR (P = 0.003, R2 = 0.263); this was counter to our tradeoff hypothesis and suggests that individuals invest in both traits simultaneously. We failed to detect a significant relationship between SRBC and performance. A significant negative relationship was found between HLR and LRR (P = 0.005, R2 = 0.237). Heterophil: lymphocyte ratio is a balance between innate and acquired immunity that is also indicative of baseline stress. This result showed that snakes with higher HLR are constrained and perform poorly compared to snakes with lower HLR, thus indicating a potential role of stress in affecting performance. Alternatively, this result may denote that internal tradeoffs in the immune system between innate and acquired immunity drive tradeoffs between immunity and performance. Snout–vent length (SVL) was significantly positively correlated with our performance measure (P = 0.012, R2 = 0.192). This result may be explained by selection driving increases in performance and/or ontogenetic development of the locomotor apparatus. Similarly, SVL was an important driver of immunity in snakes. Together, these results clearly show an important link exists between multiple physiological traits that are each vital to survival.
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来源期刊
Copeia
Copeia 生物-动物学
CiteScore
2.10
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Founded in 1913, Copeia is a highly respected international journal dedicated to the publication of high quality, original research papers on the behavior, conservation, ecology, genetics, morphology, evolution, physiology, systematics and taxonomy of extant and extinct fishes, amphibians, and reptiles. Copeia is published electronically and is available through BioOne. Articles are published online first, and print issues appear four times per year. In addition to research articles, Copeia publishes invited review papers, book reviews, and compiles virtual issues on topics of interest drawn from papers previously published in the journal.
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