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  • Distinct Characteristics of Indole-3-Acetic Acid and Phenylacetic Acid, Two Common Auxins in Plants.

Distinct Characteristics of Indole-3-Acetic Acid and Phenylacetic Acid, Two Common Auxins in Plants.

Plant & cell physiology (2015-06-17)
Satoko Sugawara, Kiyoshi Mashiguchi, Keita Tanaka, Shojiro Hishiyama, Tatsuya Sakai, Kousuke Hanada, Kaori Kinoshita-Tsujimura, Hong Yu, Xinhua Dai, Yumiko Takebayashi, Noriko Takeda-Kamiya, Tatsuo Kakimoto, Hiroshi Kawaide, Masahiro Natsume, Mark Estelle, Yunde Zhao, Ken-Ichiro Hayashi, Yuji Kamiya, Hiroyuki Kasahara
ABSTRACT

The phytohormone auxin plays a central role in many aspects of plant growth and development. IAA is the most studied natural auxin that possesses the property of polar transport in plants. Phenylacetic acid (PAA) has also been recognized as a natural auxin for >40 years, but its role in plant growth and development remains unclear. In this study, we show that IAA and PAA have overlapping regulatory roles but distinct transport characteristics as auxins in plants. PAA is widely distributed in vascular and non-vascular plants. Although the biological activities of PAA are lower than those of IAA, the endogenous levels of PAA are much higher than those of IAA in various plant tissues in Arabidopsis. PAA and IAA can regulate the same set of auxin-responsive genes through the TIR1/AFB pathway in Arabidopsis. IAA actively forms concentration gradients in maize coleoptiles in response to gravitropic stimulation, whereas PAA does not, indicating that PAA is not actively transported in a polar manner. The induction of the YUCCA (YUC) genes increases PAA metabolite levels in Arabidopsis, indicating that YUC flavin-containing monooxygenases may play a role in PAA biosynthesis. Our results provide new insights into the regulation of plant growth and development by different types of auxins.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Acetic acid, natural, ≥99.5%, FG
Sigma-Aldrich
Acetic acid, ≥99.5%, FCC, FG
Sigma-Aldrich
3-Indoleacetic acid, 98%
Sigma-Aldrich
Water, for molecular biology, sterile filtered
Sigma-Aldrich
Water, deuterium-depleted, ≤1 ppm (Deuterium oxide)
Sigma-Aldrich
Acetonitrile solution, contains 0.1 % (v/v) trifluoroacetic acid, suitable for HPLC
Sigma-Aldrich
Acetonitrile solution, contains 0.05 % (v/v) trifluoroacetic acid
Sigma-Aldrich
Acetonitrile solution, contains 0.1 % (v/v) formic acid, suitable for HPLC
Sigma-Aldrich
3-Indoleacetic acid, suitable for plant cell culture, crystalline
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Water, Nuclease-Free Water, for Molecular Biology
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Water, sterile-filtered, BioReagent, suitable for cell culture
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Water, PCR Reagent
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E-Toxate Water, endotoxin, free
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Water, for embryo transfer, sterile-filtered, BioXtra, suitable for mouse embryo cell culture
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Acetic acid, for luminescence, BioUltra, ≥99.5% (GC)
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Water, for cell biology, sterile ultrafiltered
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Acetic acid-12C2, 99.9 atom % 12C
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Acetonitrile solution, contains 10.0% acetone, 0.05% formic acid, 40.0% 2-propanol
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Water, BioPerformance Certified
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Acetonitrile solution, contains 0.05 % (w/v) ammonium formate, 5 % (v/v) water, 0.1 % (v/v) formic acid, suitable for HPLC
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Zirconium(IV) oxide, nanopowder, <100 nm particle size (TEM)
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5α-Androstan-17β-ol-3-one, purum, ≥99.0% (TLC)
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Acetonitrile, anhydrous, 99.8%
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Acetonitrile, ≥99.5%, ACS reagent
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Phenylacetic acid, ≥99%, FCC, FG
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Zirconium(IV) oxide, powder, 5 μm, 99% trace metals basis
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Zirconium(IV) oxide, 99.99% trace metals basis (purity excludes ~2% HfO2)
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Estradiol, meets USP testing specifications
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Indole-3-acetic acid sodium salt, BioReagent, suitable for plant cell culture, ≥98%
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5α-Androstan-17β-ol-3-one, ≥97.5%