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. 2021 Apr 1;184(7):1724-1739.e16.
doi: 10.1016/j.cell.2021.02.001. Epub 2021 Mar 4.

Conserved pleiotropy of an ancient plant homeobox gene uncovered by cis-regulatory dissection

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Conserved pleiotropy of an ancient plant homeobox gene uncovered by cis-regulatory dissection

Anat Hendelman et al. Cell. .
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Abstract

Divergence of gene function is a hallmark of evolution, but assessing functional divergence over deep time is not trivial. The few alleles available for cross-species studies often fail to expose the entire functional spectrum of genes, potentially obscuring deeply conserved pleiotropic roles. Here, we explore the functional divergence of WUSCHEL HOMEOBOX9 (WOX9), suggested to have species-specific roles in embryo and inflorescence development. Using a cis-regulatory editing drive system, we generate a comprehensive allelic series in tomato, which revealed hidden pleiotropic roles for WOX9. Analysis of accessible chromatin and conserved cis-regulatory sequences identifies the regions responsible for this pleiotropic activity, the functions of which are conserved in groundcherry, a tomato relative. Mimicking these alleles in Arabidopsis, distantly related to tomato and groundcherry, reveals new inflorescence phenotypes, exposing a deeply conserved pleiotropy. We suggest that targeted cis-regulatory mutations can uncover conserved gene functions and reduce undesirable effects in crop improvement.

Keywords: ATAC sequencing; Arabidopsis; Brassicaceae; Solanaceae; cis-regulatory; conserved non-coding sequences; homeobox; inflorescence; plant development; pleiotropy; tomato.

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Conflict of interest statement

Declaration of interests Z.B.L. is a consultant for and a member of the Scientific Strategy Board of Inari Agriculture, and he is also a named inventor on a number of patents and patent applications directed to related technology that have been exclusively licensed from CSHL to Inari Agriculture.

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