Ichinomiya Masayuki, Ohta Akinori, Horiuchi Hiroyuki
Department of Biotechnology, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, 113-8657 Tokyo, Japan.
Curr Genet. 2005 Sep;48(3):171-83. doi: 10.1007/s00294-005-0004-7. Epub 2005 Oct 12.
The chsA and chsC encode classes II and I chitin synthases, respectively, of the filamentous fungus Aspergillus nidulans. The DeltachsA DeltachsC double mutants (DeltaAC mutants) show defects in asexual development: a striking reduction in the number of conidiophores and aberrant conidiophore morphology. Here, we examined the involvement of regulatory genes for asexual development (brlA, abaA, and medA) in the conidiation defects of the DeltaAC mutants. Spatial expression patterns of brlA, abaA, and medA in conidiophores of the wild-type strains and DeltaAC mutants were examined by in-situ staining using a reporter gene; expression of either gene was detected at abnormal sterigmata in the DeltaAC mutants as well as at normal ones in the wild-type strain. However, abaA expression was not prominent at a subset of conidiophores developing long chains of aberrant sterigmata, suggesting that induction of the abaA expression was retarded in the DeltaAC mutants. Based on these results and those previously presented, possible mechanisms involved in the conidiation defects are discussed.
chsA和chsC分别编码丝状真菌构巢曲霉的II类和I类几丁质合成酶。chsA缺失chsC缺失的双突变体(ΔAC突变体)在无性发育方面表现出缺陷:分生孢子梗数量显著减少且分生孢子梗形态异常。在此,我们研究了无性发育调控基因(brlA、abaA和medA)在ΔAC突变体分生孢子形成缺陷中的作用。通过使用报告基因的原位染色,检测了野生型菌株和ΔAC突变体分生孢子梗中brlA、abaA和medA的空间表达模式;在ΔAC突变体的异常小梗以及野生型菌株的正常小梗中均检测到了这三个基因的表达。然而,在发育出长链异常小梗的一部分分生孢子梗中,abaA的表达并不显著,这表明ΔAC突变体中abaA表达的诱导受到了阻碍。基于这些结果以及之前发表的结果,我们讨论了分生孢子形成缺陷可能涉及的机制。