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We used a crossed experimental design subjecting Rana temporaria larvae to four constant rearing temperatures (18, 22, 26, 28 °C) crossed with three environmentally relevant nitrate concentrations (0, 50, 100 mg×L−1) to investigate the interactive and individual effects of these stressors on metamorphic (i.e., growth and development) and physiological traits (i.e., metabolism and heat tolerance) at the onset of metamorphosis. Leer más.

https://cob.silverchair-cdn.com/cob/content_public/journal/jeb/issue/227/20/31/m_jexbio_227_20.cover.png?Expires=1733647426&Signature=lEN7x-KPGCEoyxRVmshy7XzcRPHahosNit16C7M6QzXz2vTTWXxLzP3aVpoFCLUFFD6dHVh3z7eh3QmK27CJL7Dd3ZZEaLuFtMEIDsbudKU55stSRQeMSyXI2klYduDUbY1JXaaIB6wpQXvI8gTvwsiBQ87-XGimK~hRaHjz2fXl83qryXRnBICV2Xnkn7HfjEeXmakuWdqmmwDW8FzIE1u9FYp1rY0y7MlUqaOO420ameWIMO9ELxWrHcxLUdP5w4sCQ-oJH7Tfemzbz9qbL88~icvazXPkGzYnL0kZefagIfny~73Ai2ISpBd8ezN4gooP4ftdlrtRRQ9BwU8aKg__&Key-Pair-Id=APKAIE5G5CRDK6RD3PGA

hese findings hold significance for ongoing enquiries into the species’ biogeography, morphology and ecological adaptations. In summary, the integration of morphological and osteological data with genetic information offers a promising avenue for potential taxonomic revisions of N. tessellata in the future. Leer más. 

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