Biology Reference
In-Depth Information
Huang, H., Marsh-Armstrong, N., & Brown, D. D. (1999). Metamorphosis is inhibited in
transgenic Xenopus laevis tadpoles that overexpress type III deiodinase. Proceedings of the
National Academy of Sciences of the United States of America , 96 , 962-967.
Jennings, D. H., & Hanken, J. (1998). Mechanistic basis of life history evolution in anuran
amphibians: Thyroid gland development in the direct-developing frog, Eleutherodactylus
coqui . General and Comparative Endocrinology , 111 , 225-232.
Jermakowicz, W. J., III, Dorsey, D. A., Brown, A. L., Wojciechowski, K., Giscombe, C. L.,
Graves, B. M., et al. (2004). Development of the nasal chemosensory organs in two ter-
restrial anurans: The direct developing frog Eleutherodactylus coqui (Anura:
Leptodactylidae), and the metamorphosing toad, Bufo americanus (Anura: Bufonidae).
Journal of Morphology , 261 , 225-248.
Kawahara, A., Baker, B. S., & Tata, J. R. (1991). Developmental and regional expression of
thyroid hormone receptor genes during Xenopus metamorphosis. Development , 112 ,
933-943.
Kerney, R., Gross, J. B., & Hanken, J. (2010). Early cranial patterning in the direct-
developing frog Eleutherodactylus coqui revealed through gene expression. Evolution &
Development , 12 , 373-382.
Kerney, R., Meegaskumbura, M., Manamendra-Arachchi, K., & Hanken, J. (2007). Cranial
ontogeny in Philautus silus (Anura: Ranidae: Rhacophorinae) reveals few similarities with
other direct-developing anurans. Journal of Morphology , 268 , 715-725.
Kerney, R., Wassersug, R., & Hall, B. K. (2009). Skeletal advance and arrest in giant non-
metamorphosing African clawed frog tadpoles ( Xenopus laevis : Daudin). Journal of Anat-
omy , 216 , 132-143.
Kikuyama, S., Kawamura, K., Tanaka, S., & Yamamoto, K. (1993). Aspects of amphibian
metamorphosis: Hormonal control. International Review of Cytology , 145 , 105-148.
Kollros, J. J. (1961). Mechanisms of amphibian metamorphosis: Hormones. American Zool-
ogist , 1 , 107-114.
Kulkarni, S. S., Singamsetty, S., & Buchholz, D. R. (2010). Corticotropin-releasing factor
regulates development in the indirect developing frog, Eleutherodactylus coqui . General and
Comparative Endocrinology , 169 , 225-230.
Liu, Y.-W., Lo, L.-J., & Chan, W.-K. (2000). Temporal expression and T3 induction of
thyroid hormone receptors a 1 and b 1 during early embryonic and larval development
in zebrafish, Danio rerio . Molecular and Cellular Endocrinology , 159 , 187-195.
Mann, F., &Holt, C. E. (2001). Control of retinal growth and axon divergence at the chiasm:
Lessons from Xenopus . BioEssays , 23 , 319-326.
Marsh-Armstrong, N., Huang, H., Remo, B. F., Liu, T. T., & Brown, D. D. (1999). Asym-
metric growth and development of the Xenopus laevis retina during metamorphosis is
controlled by Type III deiodinase. Neuron , 24 , 871-878.
McComb, D. M., Gelsleichter, J., Manire, C. A., Brinn, R., & Brown, C. L. (2005). Com-
parative thyroid hormone concentration in maternal serum and yolk of the bonnethead
shark ( Sphyrna tiburo ) from two sites along the coast of Florida. General and Comparative
Endocrinology , 144 , 167-173.
McNabb, F. M. A., &Wilson, C. M. (1997). Thyroid hormone deposition in avian eggs and
effects on embryonic development. Integrative and Comparative Biology , 37 , 553-560.
Meegaskumbura, M., Bossuyt, F., Pethiyagoda, R., Manamendra-Arachchi, K., Bahir, M.,
Milinkovitch, M. C., et al. (2002). Sri Lanka: An amphibian hot spot. Science , 298 , 379.
Mir, A., & Heasman, J. (2008). How the mother can help: Studying maternal Wnt signaling
by anti-sense-mediated depletion of maternal mRNAs and the host transfer technique.
Methods in Molecular Biology , 469 , 417-429.
Morvan-Dubois, G., Demeneix, B. A., & Sachs, L. M. (2008). Xenopus laevis as a model for
studying thyroid hormone signalling: From development to metamorphosis. Molecular
and Cellular Endocrinology , 293 , 71-79.
Search WWH ::




Custom Search