Ecological adaptations of amphibians to environmental changes along an altitudinal gradient (Case Study: Bufo gargarizans) from phenotypic and genetic perspectives.

IF 4.4 1区 生物学 Q1 BIOLOGY
Yonggang Niu, Xuejing Zhang, Haiying Zhang, Shengkang Men, Tisen Xu, Li Ding, Xiangyong Li, Lei Wang, Huisong Wang, Kenneth B Storey, Qiang Chen
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引用次数: 0

Abstract

Background: Organisms have evolved a range of phenotypic and genetic adaptations to live in different environments along an altitudinal gradient. Herein, we studied the widely distributed Chinese toad, Bufo gargarizans, as a model and used an integrated phenotype-genotype approach to assess adaptations to different altitudinal environments.

Results: Comparison of populations from four altitudes (50 m, 1200 m, 2300 m, and 3400 m) showed more effective defenses among high-altitude toads. These included thickened epidermis, more epidermal capillaries and granular glands, greater gland size in skin, and higher antioxidant enzyme activities in plasma. High-altitude toads also showed increased erythrocytes and hematocrit and elevated hemoglobin concentration, potentially improving oxygen delivery. Elevated altitude led to a metabolic shift from aerobic to anaerobic metabolism, and high-altitude populations favored carbohydrates over fatty acids to fuel for energy metabolism. Differentially expressed genes were associated with adaptive phenotypic changes. For instance, expression of genes associated with fatty acid metabolism showed greater suppression at high altitude (3400 m), consistent with decreased flux of β-hydroxybutyric acid and lower free fatty acids levels. Moreover, down-regulation of genes involved in carbon metabolism processes at high altitude (3400 m) were coincident with reduced TCA cycle flux. These results suggest that high-altitude toads adopt a metabolic suppression strategy for survival under harsh environmental conditions. Moreover, the hypoxia-inducible factor signaling cascade was activated at high altitude.

Conclusions: Collectively, these results advance our comprehension of adaptation to high-altitude environments by revealing physiological and genetic mechanisms at work in Chinese toads living along altitudinal gradients.

从表型和遗传角度看两栖动物对海拔梯度环境变化的生态适应性(案例研究:Bufo gargarizans)。
背景:生物进化出一系列表型和遗传适应性,以适应沿海拔梯度的不同环境。在此,我们以分布广泛的中华蟾蜍为模型,采用表型-基因型综合方法评估其对不同海拔环境的适应性:结果:对来自四种海拔高度(50米、1200米、2300米和3400米)的种群进行比较后发现,高海拔蟾蜍的防御能力更强。这包括表皮增厚、表皮毛细血管和颗粒状腺体增多、皮肤腺体增大以及血浆中抗氧化酶活性提高。高海拔蟾蜍的红细胞和血细胞比容也有所增加,血红蛋白浓度升高,这可能会改善氧气的输送。海拔升高导致新陈代谢从有氧代谢转向无氧代谢,高海拔种群在能量代谢过程中更倾向于以碳水化合物而不是脂肪酸作为燃料。差异表达的基因与适应性表型变化有关。例如,与脂肪酸代谢相关的基因表达在高海拔地区(3400 米)受到更大抑制,这与β-羟丁酸通量减少和游离脂肪酸水平降低相一致。此外,高海拔地区(3400 米)碳代谢过程相关基因的下调与 TCA 循环通量的减少相吻合。这些结果表明,高海拔地区的蟾蜍为了在恶劣的环境条件下生存,采取了抑制代谢的策略。此外,低氧诱导因子信号级联在高海拔地区被激活:总之,这些结果揭示了沿海拔梯度生活的中华蟾蜍的生理和遗传机制,从而加深了我们对高海拔环境适应性的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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