The signaling molecule auxin is a central regulator of plant development, which instructs tissue and organ patterning, and couples environmental stimuli to developmental responses. Here, we discuss the function of PINOID (PID) and the phototropins, members of the plant specific AGCVIII protein kinases, and their role in triggering and regulating development by controlling PIN-FORMED (PIN) auxin transporter-generated auxin gradients and maxima. We propose that the AGCVIII kinase gene family evolved from an ancestral phototropin gene, and that the co-evolution of PID-like and PIN gene families marks the transition of plants from water to land. We hypothesize that the PID-like kinases function in parallel to, or downstream of, the phototropins to orient plant development by establishing the direction of polar auxin transport.
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Mt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USAMt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USA
Wander, Praneet
Iluyomade, Adedapo
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Mt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USAMt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USA
Iluyomade, Adedapo
Sanmartin, Paul
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Mt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USAMt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USA
Sanmartin, Paul
Gupta, Akriti
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Dayanand Med Coll & Hosp, Ludhiana, Punjab, IndiaMt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USA
Gupta, Akriti
O'Sullivan, Mary
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Mt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USAMt Sinai St Lukes Roosevelt Hosp, Dept Internal Med, 1111 Amsterdam Ave, New York, NY 10025 USA