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homoserine/soja

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A novel degenerated primer pair detects diverse genes of acyl homoserine lactone synthetase in Rhizobiaceae family.

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A novel degenerated primer set was designed to amplify acyl homoserine lactone (AHL) synthetase genes from members of the family Rhizobiaceae. The primer set successfully amplified AHL synthetase genes from pure cultures of AHL producers from Rhizobiaceae, but not from AHL producers out of the

Homoserine kinase and threonine synthase in methionine-overproducing soybean tissue cultures.

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To gain understanding of the regulation of methionine level in plants, we assayed homoserine kinase and threonine synthase in extracts of wild type and several methionine-overproducing soybean [Glycine max (L.) Merr.] callus lines. The specific activity of homoserine kinase was depressed by 45-73%,

Zoospore interspecific signaling promotes plant infection by Phytophthora.

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BACKGROUND Oomycetes attack a huge variety of economically and ecologically important plants. These pathogens release, detect and respond to signal molecules to coordinate their communal behaviors including the infection process. When signal molecules are present at or above threshold level, single

Identification of cystathionine γ-synthase and threonine synthase from Cicer arietinum and Lens culinaris.

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In plants, cystathionine γ-synthase (CGS) and threonine synthase (TS) compete for the branch-point metabolite O-phospho-L-homoserine. These enzymes are potential targets for metabolic engineering studies, aiming to alter the flux through the competing methionine and threonine biosynthetic pathways,

A physical map of a gene-dense region in soybean linkage group A2 near the black seed coat and Rhg (4) loci.

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Soybean ( Glycine max L. Merrill) linkage group A2 contains a major resistance gene to the soybean cyst nematode ( Heterodera glycines Ichinohe) at the Rhg (4) locus near a gene encoding aspartokinase homoserine dehydrogenase (AK-HSDH) and also near the I locus affecting seed coat color. To identify

Characterization of soybean tissue culture cell lines resistant to methionine analogs.

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Several hundred soybean [Glycine max (L.) Merr.] cell lines resistant to ethionine were isolated either with or without chemical mutagenesis. of these, 26 were found to contain 2 to 22 times higher than normal levels of uncombined methionine. These 26 cell lines also contained higher than normal
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