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1  the D28A and D28N variants could synthesize acetolactate as a major product.
2      Rapid formation of optically active (R)-acetolactate by both variants, but not by the parental e
3                                          The acetolactate configuration produced by the Glu636 varian
4 ed diacetyl reductase, acetoin reductase and acetolactate decarboxylase.
5                                          (S)-Acetolactate is the predominant enantiomer produced by t
6 omerase (KARI) catalyzes conversion of (2 S)-acetolactate or (2 S)-aceto-2-hydroxybutyrate to 2,3-dih
7 ), resulting in the formation of acetoin and acetolactate, respectively (typically, 1% of the total r
8               Genomic and cDNA clones of the acetolactate synthase (ALS) gene of Chlamydomonas reinha
9 get the codon for Pro-196 of SuRA, a tobacco acetolactate synthase (ALS) gene.
10 e, male fertility genes (Ms26 and Ms45), and acetolactate synthase (ALS) genes (ALS1 and ALS2).
11  the other four herbicides contain different acetolactate synthase (ALS) inhibiting compounds.
12                                              Acetolactate synthase (ALS) is the first committed step
13 nzyme of isoleucine and valine biosynthesis, acetolactate synthase (ALS), is specifically inhibited b
14 cassettes containing the herbicide-resistant acetolactate synthase (hr-ALS) gene or the green fluores
15 ants is opposite that produced by the enzyme acetolactate synthase and the Asp28-substituted variants
16  ilvI gene encoding the large subunit of the acetolactate synthase enzyme.
17 carboligase, pyruvate decarboxylase, and the acetolactate synthase found in fermentative Bacteria.
18                         We replaced the rice acetolactate synthase gene (ALS) with a mutated version
19 n the portion of chromosome 2 containing the ACETOLACTATE SYNTHASE gene, which confers herbicide resi
20 t endogenous plant genes, namely the tobacco acetolactate synthase genes (ALS SuRA and SuRB), for whi
21 ibrary screening for targeted mutagenesis of ACETOLACTATE SYNTHASE in rice, recovering novel candidat
22  conditions, whereas methionine synthase and acetolactate synthase were not.
23 tive ldh (L-lactate dehydrogenase) and alsS (acetolactate synthase) genes to impede anaerobic growth,
24 t RsaD posttranscriptionally regulates alsS (acetolactate synthase) mRNA and enzyme levels.
25 heir mitochondria, and decreased activity of acetolactate synthase, a ThPP-requiring enzyme found in
26 te decarboxylase, acetohydroxy acid synthase/acetolactate synthase, benzoylformate decarboxylase, gly
27 tohydroxyacid synthase (AHAS), also known as acetolactate synthase, is a flavin adenine dinucleotide-
28  sulfometruron methyl, a potent inhibitor of acetolactate synthase.
29 nfiguration as produced by the related plant acetolactate synthase.
30 ris lysyl oxidase, and Klebsiella pneumoniae acetolactate synthase.
31 weed rye-grass sensitive or resistant to the acetolactate-synthase (ALS) inhibiting herbicide pyroxsu
32 applied to make a directed P178S mutation of acetolactate synthase1 gene through in planta gene editi