Multiplex knockout of trichome-regulating MYB duplicates in hybrid poplar using a single gRNA

Author:

Bewg William P123ORCID,Harding Scott A123ORCID,Engle Nancy L4ORCID,Vaidya Brajesh N5,Zhou Ran123ORCID,Reeves Jacob6,Horn Thomas W6ORCID,Joshee Nirmal5ORCID,Jenkins Jerry W78ORCID,Shu Shengqiang8ORCID,Barry Kerrie W8ORCID,Yoshinaga Yuko8ORCID,Grimwood Jane78ORCID,Schmitz Robert J2ORCID,Schmutz Jeremy78ORCID,Tschaplinski Timothy J4ORCID,Tsai Chung-Jui123ORCID

Affiliation:

1. School of Forestry and Natural Resources, University of Georgia , Athens, Georgia 30602, USA

2. Department of Genetics, University of Georgia , Athens, Georgia 30602, USA

3. Department of Plant Biology, University of Georgia , Athens, Georgia 30602, USA

4. Oak Ridge National Laboratory , Oak Ridge, Tennessee 37830, USA

5. Department of Plant Science, Fort Valley State University , Georgia, 31030, USA

6. Department of Computer Science, University of Georgia , Athens, Georgia 30602, USA

7. HudsonAlpha Institute for Biotechnology , Huntsville, Alabama 35806, USA

8. U.S. Department of Energy Joint Genome Institute , Berkeley, California 94720, USA

Abstract

Abstract As the focus for CRISPR/Cas-edited plants moves from proof-of-concept to real-world applications, precise gene manipulation will increasingly require concurrent multiplex editing for polygenic traits. A common approach for editing across multiple sites is to design one guide RNA (gRNA) per target; however, this complicates construct assembly and increases the possibility of off-target mutations. In this study, we utilized one gRNA to target MYB186, a known positive trichome regulator, as well as its paralogs MYB138 and MYB38 at a consensus site for mutagenesis in hybrid poplar (Populus tremula × P. alba INRA 717-1B4). Unexpected duplications of MYB186 and MYB138 resulted in eight alleles for the three targeted genes in the hybrid poplar. Deep sequencing and polymerase chain reaction analyses confirmed editing across all eight targets in nearly all of the resultant glabrous mutants, ranging from small indels to large genomic dropouts, with no off-target activity detected at four potential sites. This highlights the effectiveness of a single gRNA targeting conserved exonic regions for multiplex editing. Additionally, cuticular wax and whole-leaf analyses showed a complete absence of triterpenes in the trichomeless mutants, hinting at a previously undescribed role for the nonglandular trichomes of poplar.

Funder

The Center for Bioenergy Innovation

US Department of Energy Research Center

Office of Biological and Environmental Research in the DOE Office of Science

Division of Integrative Organismal Systems

Community Science Program of the Joint Genome Institute

DOE Office of Science User Facility

US Department of Energy Joint Genome Institute is supported by the Office of Science of the US Department of Energy

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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