Zhao Y (2012) Auxin biosynthesis: a simple two-step pathway converts tryptophan to indole-3-acetic acid in plants. Mol Plant 5: 334-338Zhao, Y., 2012 Auxin biosynthesis: a simple two-step pathway converts tryptophan to indole-3-acetic acid in plants. Mol. Plant 5: 334-338....
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An object of the present invention is to provide an auxin biosynthesis inhibitor superior to L-AOPP. The object can be attained by a compound represented by general formula (I): wherein, R 1 to R 5 and X are the same as defined in the specification or a salt or solvate thereof.关键...
This review focuses on recent advances in the study of auxin biosynthesis. Auxins are compounds with an aromatic ring and a carboxylic acid group that play an important role in many aspects of plant growth and development. Both plants and some pathogens can produce indole-3-acetic acid (IAA),...
Auxin biosynthesis in the endosperm is controlled by the paternal genome and increased auxin levels delay endosperm cellularization5, revealing an antagonistic parental control of endosperm cellularization converging on auxin biosynthesis and signalling (Fig. 4b). In conclusion, we identified cARFs as ...
YDF is a promising auxin biosynthesis inhibitor and is a useful chemical tool for plant biology and agrochemical studies. 中文翻译: Yucasin DF,一种有效的植物生长素生物合成抑制剂。 植物激素生长素在植物生长发育中起着至关重要的作用。吲哚-3-乙酸(IAA)是一种天然的生长素,主要由TAA1和YUCCA(YUC)...
Auxin biosynthesis inhibitors, identified by a genomics-based approach, provide insights into auxin biosynthesis. Plant Cell Physiol. 2010; 51:524-536. [PubMed: 20234049]Soeno K, Goda H, Ishii T, Ogura T, Tachikawa T, Sasaki E, Yoshida S, Fujioka S, Asami T, Shimada Y: Auxin ...
Auxin concentrations in plants are tightly regulated through both biosynthesis and degradation. In the past few years, much progress was made in the area of auxin metabolism. Genetic and biochemical studies in Arabidopsis unequivocally established a complete tryptophan (Trp)-dependent two-step auxin bio...
Auxinbiosynthesisanditsroleinplantdevelopment YundeZhao SectionofCellandDevelopmentalBiology,UniversityofCaliforniaSanDiego,9500,Gilman Drive,LaJolla,CA92093-0116 Abstract Indole-3-aceticacid(IAA),themainauxininhigherplants,hasprofoundeffectsonplantgrowth anddevelopment.BothplantsandsomeplantpathogenscanproduceIAAto...
ZmNIT2 efficiently hydrolyzes indole-3-acetonitrile (IAN) to IAA and thus could be involved in auxin biosynthesis. Redundant pathways, e.g., via indole-3-acetaldehyde could imply that multiple mutants will be necessary to obtain IAA-deficient plants and to conclusively identify relevant genes for...