Biology Reference
In-Depth Information
Lai, C.S.L., Fisher, S.E., Hurst, J.A., Vargha-Khadem, F., Monaco, A.P., 2001. A forkhead-
domain gene is mutated in a severe speech and language disorder. Nature 413, 519-523.
Launay, T., 2001. Expression and neural control of myogenic regulatory factor genes during
regeneration of mouse soleus. J. Histochem. Cytochem. 49, 887-899.
Lawrence, P.A., Johnston, P., 1984. The genetic specification of pattem in a Drosophila mus-
cle. Cell 36, 775-782.
Lawson, M.A., Tsutsumi, R., Zhang, H., Talukdar, I., Butler, B.K., Santos, S.J., et  al., 2007.
Pulse sensitivity of the luteinizing hormone β promoter is determined by a negative feed-
back loop involving early growth response-1 and Ngfi-A binding protein 1 and 2. Mol.
Endocrinol. 21, 1175-1191.
Lee, S., Miselis, R., River, C., 2002. Anatomical and functional evidence for a neural hypo-
thalamic-testicular pathway that is independent of the pituitary. Endocrinology 143,
4447-4454.
Lelièvre, S.A., 2009. Contributions of extracellular matrix signaling and tissue architecture
to nuclear mechanisms and spatial organization of gene expression control. Biochim.
Biophys. Acta 1790, 925-935.
Levinton, J.S., 2001. Genetics, Paleontology, and Macroevolution, second ed. Cambridge
University Press, Cambridge/New York, p. 449.
Li, C.W., Chen, J.Y., Hua, T.E., 1998. Precambrian sponges with cellular structures. Science
279, 879-882.
Lieberman, B.S., 2003. Taking the pulse of the Cambrian radiation. Integr. Comp. Biol. 43,
229-237.
Ma, X., Hou, X., Edgecombe, G.D., Strausfeld, N.J., 2012. Complex brain and optic lobes in
an early Cambrian arthropod. Nature 490, 258-261.
Maniotis, A.J., Valyi-Nagy, K., Karavitis, J., Moses, J., Boddipali, V., Wang, Y., et  al., 2005.
Chromatin organization measured by Alul restriction enzyme changes with malignancy and
is regulated by the extracellular matrix and the cytoskeleton. Am. J. Pathol. 166, 1187-1203.
Maruyama, R., Choudhury, S., Kowalczyk, A., Bessarabova, M., Beresford-Smith, B.,
Conway, T., et al., 2011. Epigenetic regulation of cell type—specific expression patterns
in the human mammary epithelium. PLoS Genet. 7 (4), e1001369. doi: 10.1371/journal.
pgen.1001369.
Mayerhof, A., Dissen, G.A., Costa, M.F., Ojeda, S.R., 1997. A role for neurotransmitters in
early follicular development: induction of functional follicle-stimulating hormone recep-
tors in newly formed follicles of the rat ovary. Endocrinology 138, 3320-3329.
Miyata, T., Suga, H., 2001. Divergence pattern of animal gene families and relationship with
the Cambrian explosion. BioEssays 23, 1018-1027.
Morales-Ledesma, L., Betanzos-Garcia, R., Dominguez-Casala, R., 2004. Unilateral vagot-
omy performed on prepubertal rats at puberty onset of female rat deregulates ovarian
function. Arch. Med. Res. 35, 279-283.
Müller, G.B., 2007. Evo-devo: extending the evolutionary synthesis. Nat. Rev. Genet. 8,
943-950.
Müller, G.B., Newman, S.A., 2005. The innovation triad: an EvoDevo agenda. J. Exp. Zool. B
Mol. Dev. Evol. 304, 487-503.
Narbonne, G.M., 2005. The Ediacara biota: neoproterozoic origin of animals and their eco-
systems. Available from: < http://pqdweb?RQT=318&pmid=38590&TS=1249654597&
clientId=10763&VInst=PROD&VName=PQD&VType=PQD >
Newman, S., 2006. The developmental genetic toolkit and the molecular homology-analogy
paradox. Biol. Theory 1, 12-16.
Newman, S.A., 2011. Animal egg as evolutionary innovation: a solution to the “embryonic
hourglass” puzzle. J. Exp. Zool. B Mol. Dev. Evol. 316, 467-483.
Search WWH ::




Custom Search