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淡水蛇渔游蛇(Natrix piscator)脾细胞免疫反应的光周期调节

Photoperiodic regulation of the splenocyte immune responses in the fresh water snake, Natrixpiscator.

作者信息

Tripathi Manish Kumar, Singh Ramesh

机构信息

Department of Zoology, Udai Pratap Autonomous College, Varanasi, 221 002, Uttar Pradesh, India.

Department of Zoology, Udai Pratap Autonomous College, Varanasi, 221 002, Uttar Pradesh, India.

出版信息

Dev Comp Immunol. 2022 Jul;132:104403. doi: 10.1016/j.dci.2022.104403. Epub 2022 Mar 23.

DOI:10.1016/j.dci.2022.104403
PMID:35339533
Abstract

Photoperiod and melatonin are important regulators of immunity. We hypothesized that these two factors play an important role in the regulation of immune responses in the Natrix piscator. Animals were kept in either short or long days and splenocyte immune responses were studied. Respiratory burst activity of splenocytes was assessed through reduction of nitrobluetetrazolium salt while production of nitric oxide was assessed indirectly by nitrite assay. Density gradient centrifugation was used to isolate splenic lymphocytes which were utilized to study proliferation with and without mitogens. Super oxide production by splenocytes was reduced significantly in the cultures obtained from animals kept either in short or long days. Nitrite release was decreased when animals were subjected to long days. The photoperiodic alterations acted differentially on proliferations of the splenic lymphocytes. Spontaneous and mitogen-induced proliferation of splenic lymphocytes were enhanced in cultures obtained from snakes maintained in short days when compared with cultures from snakes obtained either from long day or natural day length conditions. In vitro melatonin significantly enhanced the splenic lymphocyte proliferation of the cultures obtained from animals kept in long days when compared with splenic lymphocyte proliferations of the cultures obtained from long day animals or the animals kept in natural day length conditions. We found evidence which suggest that photoperiod may influence seasonal energy budgets and induce adjustments which optimize energy allocation for costly physiological processes such as immune function. In seasonally breeding animals such as Natrix piscator, the pineal hormone melatonin assists in the suppression of reproduction and elevation of immunity, which are the crucial adaptation for perpetuation of species.

摘要

光周期和褪黑素是免疫的重要调节因子。我们假设这两个因素在渔游蛇免疫反应的调节中发挥重要作用。将动物饲养在短日照或长日照条件下,并研究脾细胞的免疫反应。通过硝基蓝四唑盐的还原评估脾细胞的呼吸爆发活性,而通过亚硝酸盐测定间接评估一氧化氮的产生。采用密度梯度离心法分离脾淋巴细胞,用于研究有无丝裂原时的增殖情况。在短日照或长日照饲养的动物所获得的培养物中,脾细胞产生的超氧化物显著减少。当动物处于长日照时,亚硝酸盐释放减少。光周期变化对脾淋巴细胞的增殖有不同影响。与从长日照或自然日照时长条件下获得的蛇的培养物相比,从短日照饲养的蛇所获得的培养物中,脾淋巴细胞的自发增殖和丝裂原诱导增殖增强。与从长日照动物或自然日照时长条件下饲养的动物所获得的培养物中的脾淋巴细胞增殖相比,体外褪黑素显著增强了从长日照饲养的动物所获得的培养物中的脾淋巴细胞增殖。我们发现有证据表明,光周期可能影响季节性能量预算,并诱导进行调整,以优化对免疫功能等代价高昂的生理过程的能量分配。在像渔游蛇这样的季节性繁殖动物中,松果体激素褪黑素有助于抑制繁殖并提高免疫力,这是物种延续的关键适应方式。

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