4.7 Review

Recent advances in ethylene research

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Ligand-induced degradation of the ethylene receptor ETR2 through a proteasome-dependent pathway in Arabidopsis

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Ethylene receptor degradation controls the timing of ripening in tomato fruit

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ETHYLENE-INSENSITIVE5 encodes a 5′→3′ exoribonuclease required for regulation of the EIN3-targeting F-box proteins EBF1/2

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KLC Wang et al.

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Autophosphorylation activity of the Arabidopsis ethylene receptor multigene family

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Signal transduction systems regulating fruit ripening

L Adams-Phillips et al.

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Circadian rhythms of ethylene emission in Arabidopsis

SC Thain et al.

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Biochemical diversity among the 1-amino-cyclopropane-1-carboxylate synthase isozymes encoded by the Arabidopsis gene family

T Yamagami et al.

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Ethylene and auxin control the Arabidopsis response to decreased light intensity

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Canonical histidine kinase activity of the transmitter domain of the ETR1 ethylene receptor from Arabidopsis is not required for signal transmission

WY Wang et al.

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Virus-induced gene silencing in tomato

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Localization of the ethylene receptor ETR1 to the endoplasmic reticulum of Arabidopsis

YF Chen et al.

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Phosphorylation of tomato 1-aminocyclopropane-1-carboxylic acid synthase, LE-ACS2, at the C-terminal region

M Tatsuki et al.

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The M locus and ethylene-controlled sex determination in andromonoecious cucumber plants

S Yamasaki et al.

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Role of PHABULOSA and PHAVOLUTA in determining radial patterning in shoots

JR McConnell et al.

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Regulation of ethylene biosynthesis in response to pollination in tomato flowers

I Llop-Tous et al.

PLANT PHYSIOLOGY (2000)

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The tomato ethylene receptors NR and LeETR4 are negative regulators of ethylene response and exhibit functional compensation within a multigene family

DV Tieman et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2000)