Abstract

Citrus canker caused by Xanthomonas citri subsp. citri (Xcc) is an economically important disease in most citrus production regions worldwide. Xcc secretes a transcriptional activator like effector (TALE) PthA4 to bind to the effector binding elements (EBEs) in the promoter region of canker susceptibility gene LOB1 to activate its expression, which in turn causes canker symptoms. Editing the EBE region with Cas9/gRNA has been used to generate canker resistant citrus plants. However, most of the EBE-edited lines generated contain indels of 1–2 bp, which has higher possibility to be overcome by PthA4 adaptation. The adaptation capacity of TALEs inversely correlates with the number of mismatches with the EBE. LbCas12a/crRNA is known to generate longer deletion than Cas9. In this study, we used a temperature-tolerant and more efficient LbCas12a variant (ttLbCas12a), harboring the single substitution D156R, to modify the EBE region of LOB1. We first constructed GFP-p1380N-ttLbCas12a:LOBP, which was shown to be functional via Xcc-facilitated agroinfiltration in Pummelo (Citrus maxima) leaves. Subsequently, we stably expressed ttLbCas12a:LOBP in Pummelo. Eight transgenic lines were generated, with seven lines showing 100% mutations of the EBE, among which one line is homozygous. The EBE-edited lines had the ttLbCas12a-mediated deletions of up to 10 bp. Importantly, the seven lines were canker resistant and no off-targets were detected. In summary, ttLbCas12a can be used to efficiently generate biallelic/homozygous citrus mutant lines with short deletions, thus providing a useful tool for the functional study and breeding of citrus.

Highlights

  • Received: 20 December 2021Citrus is one of the top fruit crops worldwide

  • CRISPR-mediated genome editing is promising in dissecting the genetic determinants for improving citrus fruit quality and yield and resistance against biotic and abiotic stresses, and in precision breeding [6,7,8,9]

  • Transgenic expression of SpCas9/gRNA [7,9,10,11,12,13,14,15], SaCas9/gRNA from Staphylococcus aureus [16], and LbCas12a/crRNA from Lachnospiraceae bacterium [17] have been used for citrus genome editing

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Summary

Introduction

Received: 20 December 2021Citrus is one of the top fruit crops worldwide. citrus production faces many biotic and abiotic challenges including citrus huanglongbing and bacterial canker, droughts, flooding, and freezes [1,2,3,4,5]. Transgenic expression of SpCas9/gRNA [7,9,10,11,12,13,14,15], SaCas9/gRNA from Staphylococcus aureus [16], and LbCas12a/crRNA from Lachnospiraceae bacterium [17] have been used for citrus genome editing. Both Huang et al [7] and Dutt et al [6] demonstrated the genome editing of citrus protoplasts using SpCas9/gRNA

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