胚胎期和幼虫期升温对高海拔库库蛙蝌蚪体质的影响

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Zhiyi Niu , Peng Pu , Tao Zhang , Lun Jia , Xinying Li , Huihui Wang , Miaojun Ma , Xiaolong Tang , Qiang Chen
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引用次数: 0

摘要

全球变暖可能会影响高海拔两栖动物的早期发育阶段,从而影响它们日后的适应能力。然而,这一点在很大程度上尚未得到研究。为了研究胚胎和幼虫阶段所经历的温度是否以及如何影响其后期发育阶段的适应性,我们设计了两个实验,分别用三种温度(24、18 和 12 °C)处理胚胎和幼虫。然后,评估了所有处理中蝌蚪在变态高潮期的生活史特征,包括生长率、存活率、形态、热生理、游泳性能、标准代谢率(SMR)、氧化和抗氧化系统以及代谢酶活性。研究结果表明,温度升高会加速变态,但会减小变态时的体型。此外,胚胎期和幼虫期的升温降低了热耐受范围,并导致氧化应激增加。此外,胚胎期温度过高会显著降低孵化成功率,但对游泳性能和SMR没有显著影响。幼虫期的升温对蝌蚪的存活率和游泳性能有害。效应大小分析表明,胚胎期温度对某些生理特征(如生长发育、存活率和游泳性能)的负面影响比幼体期温度的负面影响更为明显。我们的研究结果突出表明,在评估全球变暖对两栖动物生存的影响时,有必要特别关注两栖动物的早期阶段,尤其是胚胎阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of warming at embryonic and larval stages on tadpole fitness in high-altitude Rana kukunoris

Effects of warming at embryonic and larval stages on tadpole fitness in high-altitude Rana kukunoris

Global warming may affect the early developmental stages of high-altitude amphibians, thereby influencing their later fitness. Yet, this has been largely unexplored. To investigate whether and how the temperatures experienced by embryonic and larval stages affect their fitness at later developmental stages, we designed two experiments in which the embryos and larvae were treated with three temperatures (24, 18 and 12 °C), respectively. Then, the life history traits of the tadpoles during the metamorphotic climax in all treatments were evaluated, including growth rate, survival rate, morphology, thermal physiology, swimming performance, standard metabolic rate (SMR), oxidative and antioxidative system, and metabolic enzyme activities. The results revealed that elevated temperature accelerated metamorphosis but decreased body size at metamorphosis. Additionally, warming during the embryonic and larval stages decreased the thermal tolerance range and induced increased oxidative stress. Furthermore, high embryonic temperature significantly decreased the hatching success, but had no significant effect on swimming performance and SMR. Warming during larval periods was harmful to the survival and swimming performance of tadpoles. The effect size analysis revealed that the negative impacts of embryonic temperature on certain physiological traits, such as growth and development, survival and swimming performance, were more pronounced than those of larval temperature. Our results highlight the necessity for particular attention to be paid to the early stages of amphibians, notably the embryonic stages when evaluating the impact of global warming on their survival.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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