The objectives are to understand how hormones regulate gene expression and to correlate hormone-induced changes in gene expression with hormone-mediated changes in growth and development. The specific research aims are to analyze the role(s) of auxin-regulated gene expression in the growth responses mediated by this hormone in soybean seedling tissues. The growth responses of major interest are the control of cell elongation by auxin and the induction of massive tissue proliferation by auxin. A number of cDNA clones have been isolated, and additional clones will be identified, which are representative of mRNAs whose cytoplasmic concentrations increase or decrease rapidly and selectively following auxin treatment. The expression of these mRNAs will be assessed during various developmental stages, auxin-induced growth, and interactions of auxin with other hormones and growth regulators which result in altered and/or aberrant growth responses. Genes that encode these auxin-responsive mRNAs will be sequenced in order a) to determine the amino acid sequence and some properties of the encoded protein, b) to identify conserved regions which may be important to the regulation of their expression, and c) to define antigenic regions of the protein for peptide synthesis and antibody production. Antibodies will be used to identify the cellular localization of the relevant proteins and to quantify their abundance during the noted growth transitions. Auxin responsive genes will be cloned into T-DNA vectors and used in transformation experiments. These experiments are designed to evaluate which sequences are important to the developmental and hormone-regulated pattern of gene expression. Additionally, they will assess the physiological consequences of over expression of the gene (using very strong constitutive or inducible promoters) or of under expression of the gene (using these same promoters to express the negative strand to suppress translation of the mRNA). As progress is made in understanding the role of auxin-regulated gene expression during physiological responses to auxin (e.g. cell elongation or cell proliferation) and in defining cis-elements important in controlling the expression of these genes, analyses of trans-acting factors essential in the selective regulation of these genes will be initiated.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM030317-11
Application #
3277991
Study Section
Physiological Chemistry Study Section (PC)
Project Start
1981-08-01
Project End
1992-05-31
Budget Start
1990-12-01
Budget End
1992-05-31
Support Year
11
Fiscal Year
1991
Total Cost
Indirect Cost
Name
University of Georgia
Department
Type
Schools of Arts and Sciences
DUNS #
City
Athens
State
GA
Country
United States
Zip Code
30602
Sologub, Marina; Litonin, Dmitry; Anikin, Michael et al. (2009) TFB2 is a transient component of the catalytic site of the human mitochondrial RNA polymerase. Cell 139:934-44
Hong, J C; Cheong, Y H; Nagao, R T et al. (1995) Isolation of two soybean G-box binding factors which interact with a G-box sequence of an auxin-responsive gene. Plant J 8:199-211
Hong, J C; Cheong, Y H; Nagao, R T et al. (1994) Isolation and characterization of three soybean extensin cDNAs. Plant Physiol 104:793-6
Ainley, W M; McNeil, K J; Hill, J W et al. (1993) Regulatable endogenous production of cytokinins up to 'toxic' levels in transgenic plants and plant tissues. Plant Mol Biol 22:13-23
Datta, N; LaFayette, P R; Kroner, P A et al. (1993) Isolation and characterization of three families of auxin down-regulated cDNA clones. Plant Mol Biol 21:859-69
Nagao, R T; Goekjian, V H; Hong, J C et al. (1993) Identification of protein-binding DNA sequences in an auxin-regulated gene of soybean. Plant Mol Biol 21:1147-62
Wyatt, R E; Ainley, W M; Nagao, R T et al. (1993) Expression of the Arabidopsis AtAux2-11 auxin-responsive gene in transgenic plants. Plant Mol Biol 22:731-49
Wyatt, R E; Nagao, R T; Key, J L (1992) Patterns of soybean proline-rich protein gene expression. Plant Cell 4:99-110
Conner, T W; Goekjian, V H; LaFayette, P R et al. (1990) Structure and expression of two auxin-inducible genes from Arabidopsis. Plant Mol Biol 15:623-32
Ainley, W M; Key, J L (1990) Development of a heat shock inducible expression cassette for plants: characterization of parameters for its use in transient expression assays. Plant Mol Biol 14:949-67

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