Title : Nicosulfuron application in agricultural soils drives the selection towards NS-tolerant microorganisms harboring various levels of sensitivity to nicosulfuron.

Pub. Date : 2016 Mar

PMID : 26517995






7 Functional Relationships(s)
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Protein Name
Organism
1 The action mode of sulfonylurea herbicides is the inhibition of the acetohydroxyacid synthase (AHAS) required for the biosynthesis of amino acids valine and isoleucine in plants. Sulfonylurea Compounds ilvB acetolactate synthase like Homo sapiens
2 The action mode of sulfonylurea herbicides is the inhibition of the acetohydroxyacid synthase (AHAS) required for the biosynthesis of amino acids valine and isoleucine in plants. Sulfonylurea Compounds ilvB acetolactate synthase like Homo sapiens
3 The action mode of sulfonylurea herbicides is the inhibition of the acetohydroxyacid synthase (AHAS) required for the biosynthesis of amino acids valine and isoleucine in plants. Valine ilvB acetolactate synthase like Homo sapiens
4 The action mode of sulfonylurea herbicides is the inhibition of the acetohydroxyacid synthase (AHAS) required for the biosynthesis of amino acids valine and isoleucine in plants. Valine ilvB acetolactate synthase like Homo sapiens
5 The action mode of sulfonylurea herbicides is the inhibition of the acetohydroxyacid synthase (AHAS) required for the biosynthesis of amino acids valine and isoleucine in plants. Isoleucine ilvB acetolactate synthase like Homo sapiens
6 The action mode of sulfonylurea herbicides is the inhibition of the acetohydroxyacid synthase (AHAS) required for the biosynthesis of amino acids valine and isoleucine in plants. Isoleucine ilvB acetolactate synthase like Homo sapiens
7 Soil bacteria harboring AHAS enzyme tolerant to the herbicide nicosulfuron were enumerated, isolated, taxonomically identified, and physiologically characterized. nicosulfuron ilvB acetolactate synthase like Homo sapiens