Gene Expression during PiDeficiency inPholiota nameko: Accumulation of mRNAs for Two Transporters

Author:

TASAKI Yuji,KAMIYA Yuki,AZWAN A.,HARA Takashi,JOH Toshio

Publisher

Oxford University Press (OUP)

Subject

Organic Chemistry,Molecular Biology,Applied Microbiology and Biotechnology,General Medicine,Biochemistry,Analytical Chemistry,Biotechnology

Reference5 articles.

1. 1) Oshima, Y., Regulatory circuits for gene expression: The metabolism of galactose and phosphatase. In “The Molecular Biology of the YeastSaccharomyces: Metabolism and Gene Expression”, eds. Strathern J. N., Jones E. W., and Broach J. R., Cold Spring Harbor Laboratory Press, Cold Spring Harbor, New York, pp. 159-180 (1982).

2. 2) Johnston, M. and Carlson, M., Regulation of carbon and phosphate utilization. In “The Molecular and Cellular Biology of the YeastSaccharomyces: Gene Expression”, eds. Jones E. W., Pringle J. R., and Broach J. R., Cold Spring Harbor Laboratory Press, Cold Spring Harbor, New York, pp. 193-281 (1992).

3. 15) Harrison, M. J. and van Buuren, M. L., A phosphate transporter from the mycorrhizal fungusGlomus versiforme. Nature(London),378, 626-629 (1995).

4. 25) Joh, T., Malick, D. H., Yazaki, J., and Hayakawa, T., Purification and characterization of secreted acid phosphatase under phosphate-deficient condition inPholiota nameko. Mycoscience,37, 65-70 (1996a).

5. 26) Joh, T., Tasaki, Y., Yazaki, J., and Hayakawa, T., Changes in soluble proteins in the mycelia and the culture filtrate ofPholiota namekoin a phosphate-deficient culture.Nippon Kingakkai kaihou(in Japanese),37, 147-154 (1996b).

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