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Studio dell'aggregazione cellulare in ceppi vinari di Saccharomyces ...

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Kurtzman, C.P., Fell, J.W., (1998). The Yeasts, a Taxonomic Study 4th<br />

edn. Amsterdam, The Netherlands, Elsevier Scienze B. V.<br />

Kussell, E., and Leibler, S. (2005) Phenotypic <strong>di</strong>versity, population growth,<br />

and <strong>in</strong>formation <strong>in</strong> fluctuat<strong>in</strong>g environments. Science 309: 2075–2078.<br />

Kuthan M, Devaux F, Janderova B, Slan<strong>in</strong>ova I, Jacq C & Palkova Z<br />

(2003) Domestication of wild <strong>Saccharomyces</strong> cerevisiae is accompanied<br />

by changes <strong>in</strong> gene expression and colony morphology. Mol Microbiol 47:<br />

745–754.<br />

Lambrechts, M.G., Bauer, F.F., Marmur, J., and Pretorius, I.S. (1996)<br />

Muc1, a muc<strong>in</strong>-like prote<strong>in</strong> that is regulated by Mss10, is critical for<br />

pseudohyphal <strong>di</strong>fferentiation <strong>in</strong> yeast. Proc Natl Acad Sci U S A 93: 8419-<br />

8424.<br />

Lemaire, K., Van de Velde, S., Van Dijck, P., and Thevele<strong>in</strong> J.M. (2004)<br />

Glucose and sucrose act as agonist and mannose as antagonist ligands of<br />

the G prote<strong>in</strong>-coupled receptor Gpr1 <strong>in</strong> the yeast <strong>Saccharomyces</strong><br />

cerevisiae. Mol Cell 16: 293–299.<br />

Lengeler, K.B., Davidson, R.C., D’Souza, C., Harashima, T., Shen, W.C.,<br />

Wang, P., et al. (2000) Signal transduction cascades regulat<strong>in</strong>g fungal<br />

development and virulence. Microbiol Mol Biol Rev 64: 746–785.<br />

Li F & Palecek SP (2003) EAP1 a Can<strong>di</strong>da albicans gene <strong>in</strong>volved <strong>in</strong><br />

b<strong>in</strong>d<strong>in</strong>g human epithelial cells. Eukaryot Cell 2: 1266–1273.<br />

Li, F. & Palecek, S. P. EAP1, a Can<strong>di</strong>da albicans gene <strong>in</strong>volved <strong>in</strong> b<strong>in</strong>d<strong>in</strong>g<br />

human epithelial cells. Eukaryot. Cell 2, 1266–1273 (2003).<br />

Li, F., and Palecek, S.P. (2003) EAP1, a Can<strong>di</strong>da albicans gene <strong>in</strong>volved<br />

<strong>in</strong> b<strong>in</strong>d<strong>in</strong>g human epithelial cells. Eukaryot Cell 2: 1266–1273.<br />

Liu, H.P. (2001) Transcriptional control of <strong>di</strong>morphism <strong>in</strong> Can<strong>di</strong>da albicans.<br />

Curr Op<strong>in</strong> Microbiol 4: 728–735.<br />

Lo WS, Raites EI, Drang<strong>in</strong>is AM (1997). Development of pseudohyphae<br />

by embedded haploid and <strong>di</strong>ploid yeasts. Curr Genet 32, 197-202<br />

Lo, W.S., and Drang<strong>in</strong>is, A.M. (1996) FLO11, a yeast gene related to the<br />

STA genes, encodes a novel cell surface floccul<strong>in</strong>. J Bacteriol 178: 7144-<br />

7151.<br />

P<strong>in</strong>na Clau<strong>di</strong>a<br />

138<br />

<strong>Stu<strong>di</strong>o</strong> dell’aggregazione <strong>cellulare</strong> <strong>in</strong> <strong>ceppi</strong> v<strong>in</strong>ari <strong>di</strong> <strong>Saccharomyces</strong> cerevisiae<br />

Tesi <strong>di</strong> Dottorato <strong>in</strong> Biotecnologie Microbiche Agroalimentari<br />

Università degli Stu<strong>di</strong> <strong>di</strong> Sassari

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