β-Cyclocitral is a conserved root growth regulator.

Dickinson, Alexandra J; Lehner, Kevin; Mi, Jianing; Jia, Kun-Peng; Mijar, Medhavinee; Dinneny, José; Al-Babili, Salim; Benfey, Philip N · Proc Natl Acad Sci U S A · 2019

basic_science · Level V

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Abstract

Natural compounds capable of increasing root depth and branching are desirable tools for enhancing stress tolerance in crops. We devised a sensitized screen to identify natural metabolites capable of regulating root traits in <i>Arabidopsis</i> β-Cyclocitral, an endogenous root compound, was found to promote cell divisions in root meristems and stimulate lateral root branching. β-Cyclocitral rescued meristematic cell divisions in <i>ccd1ccd4</i> biosynthesis mutants, and β-cyclocitral-driven root growth was found to be independent of auxin, brassinosteroid, and reactive oxygen species signaling pathways. β-Cyclocitral had a conserved effect on root growth in tomato and rice and generated significantly more compact crown root systems in rice. Moreover, β-cyclocitral treatment enhanced plant vigor in rice plants exposed to salt-contaminated soil. These results indicate that β-cyclocitral is a broadly effective root growth promoter in both monocots and eudicots and could be a valuable tool to enhance crop vigor under environmental stress.

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