Literature DB >> 15121085

Differential expression of the chitin synthase genes of Aspergillus nidulans, chsA, chsB, and chsC, in response to developmental status and environmental factors.

Jeong Im Lee1, Jeong Hwan Choi, Bum Chan Park, Yoon Hee Park, Min Young Lee, Hee-Moon Park, Pil Jae Maeng.   

Abstract

To understand the role of the chitin synthase genes of Aspergillus nidulans, we analyzed the expression of chsA, chsB, and chsC both by Northern blotting and by a vital reporter system with sgfp encoding a modified version of green fluorescent protein, sGFP. chsA was expressed specifically during asexual differentiation, but not during either vegetative growth or sexual differentiation. The expression of chsB was ubiquitous throughout the fungal body and relatively independent of the change in developmental status of the cells. chsC was expressed moderately during sexual development as well as during the early phase of vegetative growth, but was expressed weakly in old vegetative mycelia and in asexual structures. Furthermore its expression was spatially differentiated, i.e., relatively strong in young cleistothecia and in mature ascospores, but negligible in Hülle cells. Osmostress caused by high concentrations (up to 1.2M) of KCl or NaCl stimulated the expression of chsA and chsC, but not that of chsB. Sodium acetate, especially at high concentration (3%), strongly enhanced the expression of all the three genes. Neither heat shock nor the sugar carbon sources tested (glucose, sucrose, or lactose) affected the expression of any of the three chitin synthase genes.

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Year:  2004        PMID: 15121085     DOI: 10.1016/j.fgb.2004.01.009

Source DB:  PubMed          Journal:  Fungal Genet Biol        ISSN: 1087-1845            Impact factor:   3.495


  14 in total

1.  Negative regulation of the vacuole-mediated resistance to K(+) stress by a novel C2H2 zinc finger transcription factor encoded by aslA in Aspergillus nidulans.

Authors:  Dong Soo Park; Yeong Man Yu; Yong Jin Kim; Pil Jae Maeng
Journal:  J Microbiol       Date:  2015-01-28       Impact factor: 3.422

2.  Differential expression of citA gene encoding the mitochondrial citrate synthase of Aspergillus nidulans in response to developmental status and carbon sources.

Authors:  In Sook Min; Ji Young Bang; Soon Won Seo; Cheong Ho Lee; Pil Jae Maeng
Journal:  J Microbiol       Date:  2010-05-01       Impact factor: 3.422

3.  Differential expression of chitin synthase (CHS) and glucan synthase (FKS) genes correlates with the formation of a modified, thinner cell wall in in vivo-produced Beauveria bassiana cells.

Authors:  Aurélien Tartar; Alexandra M Shapiro; Dancia W Scharf; Drion G Boucias
Journal:  Mycopathologia       Date:  2005-11       Impact factor: 2.574

4.  Transcriptional regulation of fksA, a β-1,3-glucan synthase gene, by the APSES protein StuA during Aspergillus nidulans development.

Authors:  Bum-Chan Park; Yun-Hee Park; Soohyun Yi; Yu Kyung Choi; Eun-Hye Kang; Hee-Moon Park
Journal:  J Microbiol       Date:  2014-10-31       Impact factor: 3.422

Review 5.  Regulation of expression, activity and localization of fungal chitin synthases.

Authors:  Luise E Rogg; Jarrod R Fortwendel; Praveen R Juvvadi; William J Steinbach
Journal:  Med Mycol       Date:  2011-04-28       Impact factor: 4.076

6.  Polar localizing class V myosin chitin synthases are essential during early plant infection in the plant pathogenic fungus Ustilago maydis.

Authors:  Isabella Weber; Daniela Assmann; Eckhard Thines; Gero Steinberg
Journal:  Plant Cell       Date:  2005-11-28       Impact factor: 11.277

7.  Systems approaches to predict the functions of glycoside hydrolases during the life cycle of Aspergillus niger using developmental mutants ∆brlA and ∆flbA.

Authors:  Jolanda M van Munster; Benjamin M Nitsche; Michiel Akeroyd; Lubbert Dijkhuizen; Marc J E C van der Maarel; Arthur F J Ram
Journal:  PLoS One       Date:  2015-01-28       Impact factor: 3.240

8.  Early divergence, broad distribution, and high diversity of animal chitin synthases.

Authors:  Anne-C Zakrzewski; Anne Weigert; Conrad Helm; Marcin Adamski; Maja Adamska; Christoph Bleidorn; Florian Raible; Harald Hausen
Journal:  Genome Biol Evol       Date:  2014-02       Impact factor: 3.416

9.  Role of LAMMER Kinase in Cell Wall Biogenesis during Vegetative Growth of Aspergillus nidulans.

Authors:  Yu Kyung Choi; Eun-Hye Kang; Hee-Moon Park
Journal:  Mycobiology       Date:  2014-12-31       Impact factor: 1.858

Review 10.  The Genetics and Biochemistry of Cell Wall Structure and Synthesis in Neurospora crassa, a Model Filamentous Fungus.

Authors:  Pavan K Patel; Stephen J Free
Journal:  Front Microbiol       Date:  2019-10-10       Impact factor: 5.640

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