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名副其实?盐度对“海”蟾蜍(海蟾蜍,Rhinella marina)发育、生长和表型的影响。

Living up to its name? The effect of salinity on development, growth, and phenotype of the "marine" toad (Rhinella marina).

作者信息

Wijethunga Uditha, Greenlees Matthew, Shine Richard

机构信息

School of Biological Sciences A08, University of Sydney, Sydney, NSW, 2006, Australia.

出版信息

J Comp Physiol B. 2016 Feb;186(2):205-13. doi: 10.1007/s00360-015-0944-2. Epub 2015 Nov 9.

Abstract

The highly permeable integument of amphibians renders them vulnerable to chemical characteristics of their environment, especially during the aquatic larval stage. As the cane toad (Rhinella marina, Bufonidae) invades southwards along the east coast of Australia, it is encountering waterbodies with highly variable conditions of temperature, pH, and salinity. Understanding the tolerance of toads to these conditions can clarify the likely further spread of the invader, as well as the adaptability of the species to novel environmental challenges. We measured salinity in waterbodies in the field and conducted laboratory trials to investigate the impacts of salinity on toad viability. Eggs and tadpoles from the southern invasion front tolerated the most saline conditions we found in potential spawning ponds during surveys [equivalent to 1200 ppm (3.5 % the salinity of seawater)]. Indeed, high-salinity treatments increased tadpole body sizes, accelerated metamorphosis, and improved locomotor ability of metamorphs (but did not affect metamorph morphology). At very low salinity [40 ppm (0.1 % seawater)], eggs hatched but larvae did not develop past Gosner stage 37. Our study shows that the egg and larval life stages of cane toads can tolerate wide variation in the salinity of natal ponds and that this aspect of waterbody chemistry is likely to facilitate rather than constrain continued southward expansion of the toad invasion front in eastern Australia.

摘要

两栖动物高度透水的外皮使它们容易受到环境化学特性的影响,尤其是在水生幼体阶段。随着蔗蟾蜍(海蟾蜍,蟾蜍科)沿着澳大利亚东海岸向南入侵,它们正遭遇温度、pH值和盐度条件差异很大的水体。了解蟾蜍对这些条件的耐受性可以阐明这种入侵者可能的进一步扩散情况,以及该物种对新环境挑战的适应能力。我们在野外测量了水体中的盐度,并进行了实验室试验,以研究盐度对蟾蜍生存能力的影响。来自南部入侵前沿的卵和蝌蚪能够耐受我们在调查中发现的潜在产卵池塘中最咸的条件[相当于1200 ppm(海水盐度的3.5%)]。事实上,高盐度处理增加了蝌蚪的体型,加速了变态,并提高了变态后的运动能力(但不影响变态后的形态)。在极低盐度[40 ppm(0.1%海水)]下,卵孵化了,但幼体没有发育到戈斯纳第37阶段。我们的研究表明,蔗蟾蜍的卵和幼体阶段能够耐受出生地池塘盐度的广泛变化,而且水体化学的这一方面可能会促进而不是限制蟾蜍入侵前沿在澳大利亚东部继续向南扩张。

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