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注意:仅列出部分参考文献,下载原文获取全部文献信息。The Interaction and Integration of Auxin Signaling Components
Ken-ichiro Hayashi
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Auxin transport through non-hair cells sustains root-hair development
Angharad R. Jones et al.
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The Arabidopsis PLEIOTROPIC DRUG RESISTANCE8/ABCG36 ATP Binding Cassette Transporter Modulates Sensitivity to the Auxin Precursor Indole-3-Butyric Acid
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ABCB19/PGP19 stabilises PIN1 in membrane microdomains in Arabidopsis
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Complex regulation of the TIR1/AFB family of auxin receptors
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Jozef Mravec et al.
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Functional analysis of a predicted flavonol synthase gene family in Arabidopsis
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Mechanical induction of lateral root initiation in Arabidopsis thaliana
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PGP4, an ATP binding cassette P-glycoprotein, catalyzes auxin transport in Arabidopsis thaliana roots
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Auxin-induced reactive oxygen species production requires the activation of phosphatidylinositol 3-kinase
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FEBS LETTERS (2005)
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The PIN auxin efflux facilitator network controls growth and patterning in Arabidopsis roots
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Effects of cadmium and copper on antioxidant capacities, lignification and auxin degradation in leaves of pea (Pisum sativum L.) seedlings
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Auxin-induced SCFTIR1-Aux/IAA interaction involves stable modification of the SCFTIR1 complex
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Cloning and characterisation of a basic IAA oxidase associated with root induction in Vitis vinifera
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Reactive oxygen species produced by NADPH oxidase regulate plant cell growth
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Nicotiana benthamiana gp91phox homologs NbrbohA and NbrbohB participate in H2O2 accumulation and resistance to Phytophthora infestans
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The onset of starch degradation during banana ripening is concomitant to changes in the content of free and conjugated forms of indole-3-acetic acid
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Evidence that hydroxyl radicals mediate auxin-induced extension growth
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Arabidopsis gp91phox homologues AtrbohD and AtrbohF are required for accumulation of reactive oxygen intermediates in the plant defense response
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AUX1 promotes lateral root formation by facilitating indole-3-acetic acid distribution between sink and source tissues in the Arabidopsis seedling
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