PUCHI regulates very long chain fatty acid biosynthesis during lateral root and callus formation.

Trinh, Duy-Chi; Lavenus, Julien; Goh, Tatsuaki; Boutté, Yohann; Drogue, Quentin; Vaissayre, Virginie; Tellier, Frédérique; Lucas, Mikaël et al. · Proc Natl Acad Sci U S A · 2019

basic_science · Level V

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Abstract

Lateral root organogenesis plays an essential role in elaborating plant root system architecture. In <i>Arabidopsis</i>, the AP2 family transcription factor PUCHI controls cell proliferation in lateral root primordia. To identify potential targets of PUCHI, we analyzed a time course transcriptomic dataset of lateral root formation. We report that multiple genes coding for very long chain fatty acid (VLCFA) biosynthesis enzymes are induced during lateral root development in a PUCHI-dependent manner. Significantly, several mutants perturbed in VLCFA biosynthesis show similar lateral root developmental defects as <i>puchi-1</i> Moreover, <i>puchi-1</i> roots display the same disorganized callus formation phenotype as VLCFA biosynthesis-deficient mutants when grown on auxin-rich callus-inducing medium. Lipidomic profiling of <i>puchi-1</i> roots revealed reduced VLCFA content compared with WT. We conclude that PUCHI-regulated VLCFA biosynthesis is part of a pathway controlling cell proliferation during lateral root and callus formation.

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