Abstract
Phosphate (P) is an essential macronutrient for plant growth. Roots employ adaptive mechanisms to forage for P in soil. Root hair elongation is particularly important since P is immobile. Here we report that auxin plays a critical role promoting root hair growth in Arabidopsis in response to low external P. Mutants disrupting auxin synthesis (taa1) and transport (aux1) attenuate the low P root hair response. Conversely, targeting AUX1 expression in lateral root cap and epidermal cells rescues this low P response in aux1. Hence auxin transport from the root apex to differentiation zone promotes auxin-dependent hair response to low P. Low external P results in induction of root hair expressed auxin-inducible transcription factors ARF19, RSL2, and RSL4. Mutants lacking these genes disrupt the low P root hair response. We conclude auxin synthesis, transport and response pathway components play critical roles regulating this low P root adaptive response.
Publication types
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Research Support, Non-U.S. Gov't
MeSH terms
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Arabidopsis / drug effects*
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Arabidopsis / genetics
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Arabidopsis / growth & development
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Arabidopsis / metabolism
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Arabidopsis Proteins / genetics*
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Arabidopsis Proteins / metabolism
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Basic Helix-Loop-Helix Transcription Factors / genetics
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Basic Helix-Loop-Helix Transcription Factors / metabolism
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Gene Expression Regulation, Plant*
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Gravitropism / physiology
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Indoleacetic Acids / metabolism
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Organogenesis, Plant / drug effects*
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Organogenesis, Plant / genetics
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Phosphates / deficiency
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Phosphates / pharmacology*
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Plant Growth Regulators / metabolism
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Plant Roots / drug effects*
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Plant Roots / genetics
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Plant Roots / growth & development
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Plant Roots / metabolism
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Plants, Genetically Modified
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Stress, Physiological
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Transcription Factors / genetics
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Transcription Factors / metabolism
Substances
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ARF19 protein, Arabidopsis
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AUX1 protein, Arabidopsis
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Arabidopsis Proteins
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Basic Helix-Loop-Helix Transcription Factors
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Indoleacetic Acids
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Phosphates
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Plant Growth Regulators
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RSL2 protein, Arabidopsis
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RSL4 protein, Arabidopsis
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Transcription Factors