Comparative ontogeny of skin glands in Rhinella and Incilius toads

被引:0
作者
Katherine Porras-Brenes
Nicole Ramírez-Mata
Jennifer L. Stynoski
机构
[1] Universidad Nacional,Escuela de Ciencias Biológicas
[2] John Carroll University,Department of Biology
[3] Universidad de Costa Rica,Escuela de Biología
[4] Instituto Clodomiro Picado,undefined
[5] Universidad de Costa Rica,undefined
来源
Zoomorphology | 2024年 / 143卷
关键词
Bufonidae; Development; Granular gland; Mucous gland; Tadpole; Morphology;
D O I
暂无
中图分类号
学科分类号
摘要
A key component of amphibian antipredator strategies is the chemical defenses that make them toxic and/or distasteful, like the cardiotoxic bufadienolides synthesized by the true toads and stored in granular skin glands. The morphology of adult toad glands is well-described, but the ontogenetic timing and distribution of glands during larval stages are poorly understood. A comparative understanding of granular gland development is needed to elucidate the mechanisms underlying the diversification of toad chemical defenses and their ecological roles across lineages and ontogeny. Herein, we analyzed gland morphology before and after metamorphosis of Rhinella horribilis, Incilius melanochlorus, and I. luetkenii. We hypothesized that granular gland development would begin earlier and progress faster in relatively more toxic Rhinella species. Our results showed that the timeline of skin development, the relative dimensions and quantity of structures, and the appearance of protein and mucin content in granular and mucous glands did not vary among Rhinella and Incilius. Furthermore, epidermal mucus and/or giant cells in larval toads may act as sources of chemical defenses prior to gland development. Our findings suggest that gland development is well-conserved among these genera; it is possible that reported differences in toxin profiles are not due to divergent morphogenesis during larval or metamorphic stages, but rather to differences in molecular function or structural differentiation in juveniles or adults. Therefore, complementary studies using integrative techniques such as immunohistochemistry and comparative transcriptomics are needed to uncover the mechanisms responsible for the diversity of chemical defenses found in bufonid toads across development.
引用
收藏
页码:203 / 214
页数:11
相关论文
共 246 条
  • [1] Acevedo AA(2016)The cane or marine toad, Zootaxa 4103 574-586
  • [2] Lampo M(2015) (Anura, Bufonidae): two genetically and morphologically distinct species J Stat Softw 67 1-48
  • [3] Cipriani R(1963)Fitting linear mixed-effects models using lme4 J Morphol 113 231-243
  • [4] Bates D(1978)Development of the glands of the dermal plicae in Herpetologica 34 302-306
  • [5] Mächler M(1976)The development of noxiousness of J Morphol 148 137-159
  • [6] Bolker B(2018) tadpoles to aquatic insect predators Front Microbiol 9 1-14
  • [7] Walker S(2014)The anatomy of the parotoid gland in Acta Zool 96 460-477
  • [8] Bovbjerg AM(2017) with some histochemical findings II. Bufo Alvarius Ecol Evol 7 8950-8957
  • [9] Brodie ED(1998)Widespread elevational occurrence of antifungal bacteria in Andean amphibians decimated by disease: a complex role for skin symbionts in defense against chytridiomycosis Herpetologica 54 364-369
  • [10] Formanowicz DR(2019)Development of integument and cutaneous glands in larval, juvenile and adult toads ( J Chem Ecol 45 838-848