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Growth, Differentiation and Sexuality

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isolates of Phaeosphaeria nodorum. Fungal Genet Biol<br />

40:25–37<br />

Bistis GN (1998) Physiological heterothallism <strong>and</strong> sexuality<br />

in Euascomycetes: a partial history. Fungal Genet Biol<br />

23:213–222<br />

Bobrowicz P, Pawlak R, Correa A, Bell-Pedersen D,<br />

Ebbole DJ (2002) The Neurospora crassa pheromone<br />

precursor genes are regulated by the mating type locus<br />

<strong>and</strong> the circadian clock. Mol Microbiol 45:795–804<br />

Butler G, Kenny C, Fagan A, Kurischko C, Gaillardin C,<br />

Wolfe KH (2004) Evolution of the MAT locus <strong>and</strong> its<br />

Ho endonuclease in yeast species. Proc Natl Acad Sci<br />

USA 101:1632–1637<br />

Casselton LA (2002) Mate recognition in fungi. Heredity<br />

88:142–147<br />

Chang S, Staben C (1994) Directed replacement of mt A<br />

by mt a-1 effectsamatingtypeswitchinNeurospora<br />

crassa. Genetics 138:75–81<br />

Cisar CR, TeBeest DO, Spiegel FW (1994) Sequence similarity<br />

of mating type idiomorphs: a method which detects<br />

similarity among the Sordariaceae fails to detect<br />

similar sequences in other filamentous ascomycetes.<br />

Mycologia 86:540–546<br />

Coppin E, Debuchy R (2000) Co-expression of the<br />

mating-type genes involved in internuclear recognition<br />

is lethal in Podospora anserina. Genetics<br />

155:657–669<br />

Coppin E, Arnaise S, Contamine V, Picard M (1993)<br />

Deletion of the mating-type sequences in Podospora<br />

anserina abolishes mating without affecting vegetative<br />

functions <strong>and</strong> sexual differentiation. Mol Gen Genet<br />

241:409–414<br />

Coppin E, Debuchy R, Arnaise S, Picard M (1997) Mating<br />

types <strong>and</strong> sexual development in filamentous ascomycetes.<br />

Microbiol Mol Biol Rev 61:411–428<br />

CoppinE,ArnaiseS,BouhouchK,RobelletX,ZicklerD,Debuchy<br />

R (2005a) Functional study of SMR1, amating<br />

type gene which does not control self/non-self recognition<br />

in Podospora anserina. Fungal Genet Newslett<br />

Suppl 52:176<br />

Coppin E, de Renty C, Debuchy R (2005b) The function<br />

of the coding sequences for the putative pheromone<br />

precursors in Podospora anserina is restricted to fertilization.<br />

Eukaryot Cell 4:407–420<br />

Debuchy R, Arnaise S, Lecellier G (1993) The mat– allele of<br />

Podospora anserina contains three regulatory genes required<br />

for the development of fertilized female organs.<br />

Mol Gen Genet 241:667–673<br />

Desjardins AE, Brown DW, Yun SH, Proctor RH, Lee T,<br />

Plattner RD, Lu SW, Turgeon BG (2004) Deletion <strong>and</strong><br />

complementation of the mating type (MAT) locusof<br />

the wheat head blight pathogen Gibberella zeae. Appl<br />

Environ Microbiol 70:2437–2444<br />

Dettman JR, Harbinski FM, Taylor JW (2001) Ascospore<br />

morphology is a poor predictor of the phylogenetic<br />

relationships of Neurospora <strong>and</strong> Gelasinospora. Fungal<br />

Genet Biol 34:49–61<br />

Dyer PS, Paoletti M, Archer DB (2003) Genomics reveals<br />

sexual secrets of Aspergillus. Microbiology 149:2301–<br />

2303<br />

Ferreira AV, An Z, Metzenberg RL, Glass NL (1998) Characterization<br />

of mat A-2, mat A-3 <strong>and</strong> ΔmatA matingtype<br />

mutants of Neurospora crassa. Genetics 148:1069–<br />

1079<br />

Mating Types in Euascomycetes 321<br />

Foster SJ, Fitt BD (2003) Isolation <strong>and</strong> characterisation of<br />

the mating-type (MAT) locusfromRhynchosporium<br />

secalis. Curr Genet 44:277–286<br />

Fraser JA, Diezmann S, Subaran RL, Allen A, Lengeler KB,<br />

Dietrich FS, Heitman J (2004) Convergent evolution of<br />

chromosomal sex-determining regions in the animal<br />

<strong>and</strong> fungal kingdoms. PLoS Biol 2:e384<br />

Galagan J (2005) Comparative analysis of filamentous fungi.<br />

Fungal Genet Newslett Suppl 52:29<br />

Geiser DM, Timberlake WE, Arnold ML (1996) Loss of<br />

meiosis in Aspergillus. Mol Biol Evol 13:809–817<br />

Glass NL, Kuldau GA (1992) Mating type <strong>and</strong> vegetative<br />

incompatibility in filamentous ascomycetes. Annu Rev<br />

Phytopathol 30:201–224<br />

Glass NL, Lee L (1992) Isolation of Neurospora crassa A<br />

mating type mutants by repeat induced point (RIP)<br />

mutation. Genetics 132:125–133<br />

Glass NL, Lorimer IAJ (1991) Ascomycete mating types. In:<br />

Bennett JW, Lasure LS (eds) More gene manipulations<br />

in fungi. Academic Press, New York, pp 193–216<br />

Glass NL, Nelson MA (1994) Mating type genes in Ascomycetes.<br />

In: Wessels JGH, Meinhardt F (eds) <strong>Growth</strong>,<br />

differentiation <strong>and</strong> sexuality. Springer, Berlin Heidelberg<br />

New York, pp 295–306<br />

Glass NL, Vollmer SJ, Staben C, Grotelueschen J, Metzenberg<br />

RL, Yanofsky C (1988) DNAs of the two matingtype<br />

alleles of Neurospora crassa are highly dissimilar.<br />

Science 241:570–573<br />

Glass NL, Metzenberg RL, Raju NB (1990) Homothallic Sordariaceae<br />

from nature: the absence of strains containing<br />

only the a mating type sequence. Exp Mycol 14:274–<br />

289<br />

Goodwin SB (2002) The barley scald pathogen Rhynchosporium<br />

secalis is closely related to the discomycetes Tapesia<br />

<strong>and</strong> Pyrenopeziza. Mycol Res 106:645–654<br />

Hiscock SJ, Kües U (1999) Cellular <strong>and</strong> molecular mechanisms<br />

of sexual incompatibility in plants <strong>and</strong> fungi. Int<br />

Rev Cytol 193:165–295<br />

Hoffmann B, Eckert SE, Krappmann S, Braus GH (2001)<br />

Sexual diploids of Aspergillus nidulans do not form by<br />

r<strong>and</strong>om fusion of nuclei in the heterokaryon. Genetics<br />

157:141–147<br />

Inderbitzin P, Harkness J, Turgeon BG, Berbee ML (2005)<br />

Lateral transfer of life history strategy in Stemphylium.<br />

Proc Natl Acad Sci USA 102:11390–11395<br />

Jacobsen S, Pöggeler S (2001) Interaction between matingtype<br />

proteins from the homothallic ascomycete Sordaria<br />

macrospora. Fungal Genet Newslett Suppl 48:140<br />

Johnson AD (1995) Molecular mechanisms of cell-type determination<br />

in budding yeast. Curr Opin Genet Dev<br />

5:552–558<br />

Kim H, Borkovich KA (2004) A pheromone receptor gene,<br />

pre-1, is essential for mating type-specific directional<br />

growth <strong>and</strong> fusion of trichogynes <strong>and</strong> female fertility<br />

in Neurospora crassa. Mol Microbiol 52:1781–1798<br />

Kim H, Metzenberg RL, Nelson MA (2002) Multiple functions<br />

of mfa-1, a putative pheromone precursor gene<br />

of Neurospora crassa. Eukaryot Cell 1:987–999<br />

Kronstad JW, Staben C (1997) Mating type in filamentous<br />

fungi. Annu Rev Genet 31:245–276<br />

Kurjan J (1993) The pheromone response pathway in Saccharomyces<br />

cerevisiae. Annu Rev Genet 27:147–179<br />

Lahn BT, Page DC (1999) Four evolutionary strata on the<br />

human X chromosome. Science 286:964–967

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