Soru

Zorluk: ZorVertebrates: Poikilothermic Classes (Pisces, Amphibia, Reptilia)

A comparative physiological study evaluates respiratory mechanisms and nitrogenous waste excretion across three representative adult poikilothermic vertebrates inhabiting aquatic, semi-aquatic, and terrestrial environments: a bony fish (*Tilapia zillii*), a toad (*Amietophrynus regularis*), and an agama lizard (*Agama agama*). Which of the following options correctly matches each adult organism with its primary respiratory structures and its chief nitrogenous excretory product?

  1. *Tilapia zillii*: Gills and Ammonia; *Amietophrynus regularis*: Lungs/skin and Urea; *Agama agama*: Lungs and Uric acidCevap
  2. B
    *Tilapia zillii*: Gills and Urea; *Amietophrynus regularis*: Gills/lungs and Ammonia; *Agama agama*: Lungs and Urea
  3. C
    *Tilapia zillii*: Gills and Uric acid; *Amietophrynus regularis*: Lungs/skin and Ammonia; *Agama agama*: Skin/lungs and Uric acid
  4. D
    *Tilapia zillii*: Gills and Ammonia; *amietophrynus Regularis*: Lungs/skin and Uric acid; *Agama Agama*: Lungs and Urea

Cevap

The correct combination pairs *Tilapia zillii* with gills and ammonia excretion, *Amietophrynus regularis* (adult toad) with lungs/skin and urea excretion, and *Agama agama* with lungs and uric acid excretion.
The correct response accurately reflects the evolutionary physiological adaptations of poikilothermic vertebrates. Bony fish (*Tilapia zillii*) reside in water and excrete toxic ammonia directly across their gills. Adult toads (*Amietophrynus regularis*) live in moist terrestrial habitats and excrete urea while utilizing both lungs and moist skin for gas exchange. Agama lizards (*Agama agama*) are fully adapted to dry environments, possessing impermeable scaly skin, lung respiration, and uricotelic excretion (uric acid paste) for maximum water conservation.

Adım Adım Çözüm

1
Analyze the respiratory structures of adult specimens across Pisces, Amphibia, and Reptilia.
Fish (*Tilapia zillii*) utilize vascularized gills for aquatic respiration; adult amphibians (*Amietophrynus regularis*) utilize lungs supplemented by cutaneous respiration through moist skin; reptiles (*Agama agama*) rely strictly on lungs due to waterproof keratinized epidermal scales.
Evolutionary transition from aquatic to terrestrial environments requires specialized respiratory surfaces.
2
Analyze the chief nitrogenous excretory products based on habitat water availability.
Aquatic teleosts excrete highly toxic, soluble ammonia (ammonotelic); semi-terrestrial adult amphibians convert waste to less toxic urea (ureotelic); terrestrial reptiles excrete non-toxic, insoluble uric acid paste to minimize water loss (uricotelic).
Nitrogenous waste excretion directly reflects osmoregulatory adaptations to environmental water availability.
3
Synthesize the anatomical and physiological pairs to select the accurate profile.
Only the combination matching *Tilapia zillii* (Gills / Ammonia), *Amietophrynus regularis* (Lungs and skin / Urea), and *Agama agama* (Lungs / Uric acid) is physiologically and taxonomically correct.
All paired traits must align with the established characteristics of Pisces, adult Amphibia, and Reptilia.

Anahtar Kavram

Comparative physiological adaptations in poikilothermic vertebrates (respiratory surfaces and nitrogenous excretion).
Bu soruyu puanla