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地鼠龟(Gopherus polyphemus)组成性免疫的季节性适应

Seasonal Acclimation of Constitutive Immunity in Gopher Tortoises Gopherus polyphemus.

作者信息

Goessling Jeffrey M, Guyer Craig, Mendonça Mary T

出版信息

Physiol Biochem Zool. 2016 Nov/Dec;89(6):487-497. doi: 10.1086/688694. Epub 2016 Aug 31.

Abstract

Studies have suggested a role for natural seasonal change to drive patterns of disease, especially within ectothermic vertebrates. In light of recent climate change, it is important to understand baseline disease resistance in a seasonal context to further understand the role that changes in seasonal weather patterns may have in increasing disease frequency. Herein we found support for the seasonal acclimation hypothesis in Gopherus polyphemus (gopher tortoise), which indicated that natural seasonal variation causes differences in baseline immune function across seasonal acclimation states. We found that an innate immune parameter, bactericidal ability (BA), was significantly elevated in the summer (P < 0.00001). Circulating leukocyte profiles varied significantly among seasons, with heterophils and monocytes increased (P = 0.00019 and P = 0.0001, respectively) and lymphocytes decreased (P < 0.00001) during winter. We assayed baseline glucocorticoid concentration (e.g., corticosterone [CORT]) across seasons and sampling conditions to test whether CORT drove the seasonal pattern in immunological acclimation. CORT was significantly lowest during winter and in animals temporarily maintained in seminatural conditions. These changes in CORT occurred independently of the immunological adjustments, suggesting that the seasonal pattern of immunity was not mediated by CORT secretion. The reduction in lymphocytes and BA and also BA during winter suggest that seasonal acclimation is likely a restraint on energetic output when temperature is low and physiological performance is thermally constrained. While these parameters were reduced in winter, the increase in heterophils and monocytes may indicate a compensatory immune adjustment to increase the number of innate phagocytic cells.

摘要

研究表明,自然季节变化对疾病模式有推动作用,尤其是在变温脊椎动物中。鉴于近期的气候变化,在季节背景下了解基线抗病能力对于进一步理解季节性天气模式变化在增加疾病频率方面可能发挥的作用至关重要。在此,我们在穴小海龟(Gopherus polyphemus)中发现了对季节驯化假说的支持,这表明自然季节变化会导致不同季节驯化状态下基线免疫功能存在差异。我们发现,一个先天性免疫参数——杀菌能力(BA)在夏季显著升高(P < 0.00001)。循环白细胞谱在不同季节间有显著差异,冬季嗜异性粒细胞和单核细胞增加(分别为P = 0.00019和P = 0.0001),淋巴细胞减少(P < 0.00001)。我们测定了不同季节和采样条件下的基线糖皮质激素浓度(如皮质酮[CORT]),以测试CORT是否驱动免疫驯化的季节性模式。CORT在冬季以及暂时饲养在半自然条件下的动物中显著最低。CORT的这些变化独立于免疫调节发生,这表明免疫的季节性模式并非由CORT分泌介导。冬季淋巴细胞和BA的减少以及BA的降低表明,当温度较低且生理性能受到热限制时,季节驯化可能是对能量输出的一种限制。虽然这些参数在冬季降低,但嗜异性粒细胞和单核细胞的增加可能表明一种补偿性免疫调节,以增加先天性吞噬细胞的数量。

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