首页> 外文期刊>Plant Biotechnology Journal >Modification of the PthA4 effector binding elements in Type I CsLOB1 promoter using Cas9/sgRNA to produce transgenic Duncan grapefruit alleviating XccΔpthA4:dCsLOB1.3 infection
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Modification of the PthA4 effector binding elements in Type I CsLOB1 promoter using Cas9/sgRNA to produce transgenic Duncan grapefruit alleviating XccΔpthA4:dCsLOB1.3 infection

机译:使用CAS9 / SGRNA的I型CSLOB1启动子在I型CSLOB1启动子中的修饰以产生转基因Duncan Grapefruit缓解XCCΔPTHA4:DCSLOB1.3感染

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Summary Citrus canker caused by Xanthomonas citri subspecies citri (Xcc) is a severe disease for most commercial citrus cultivars and responsible for significant economic losses worldwide. Generating canker-resistant citrus varieties will provide an efficient and sustainable solution to control citrus canker. Here, we report our progress in generating canker-resistant grapefruit by modifying the PthA4 effector binding elements (EBEs) in the CsLOB1 Promoter (EBEsubPthA4/sub-CsLOBP) of the CsLOB1 ( Citrus sinensis Lateral Organ Boundaries) gene. CsLOB1 is a susceptibility gene for citrus canker and is induced by the pathogenicity factor PthA4, which binds to the EBEsubPthA4/sub-CsLOBP to induce CsLOB1 gene expression. There are two alleles, Type I and Type II, of CsLOB1 in Duncan grapefruit. Here, a binary vector was designed to disrupt the PthA4 EBEs in Type I CsLOB1 Promoter (TI CsLOBP) via epicotyl transformation of Duncan grapefruit. Four transgenic Duncan plants with targeted modification of EBEsubPthA4/sub-T1 CsLOBP were successfully created. As for Type I CsLOB1 promoter, the mutation rate was 15.63% (#D13), 14.29% (#D17), 54.54% (#D18) and 81.25% (#D22). In the presence of wild-type Xcc, transgenic Duncan grapefruit developed canker symptoms similarly as wild type. An artificially designed dTALE dCsLOB1.3, which specifically recognizes Type I CsLOBP, but not the mutated Type I CsLOBP or Type II CsLOBP, was developed to infect Duncan transformants. Consequently, #D18 had weakened canker symptoms and #D22 had no visible canker symptoms in the presence of XccΔpthA4:dCsLOB1.3. Our data suggest that activation of a single allele of susceptibility gene CsLOB1 by PthA4 is sufficient to induce citrus canker disease, and mutation in the promoters of both alleles of CsLOB1 is probably required to generate citrus canker-resistant plants. This work lays the groundwork to generate canker-resistant citrus varieties via Cas9/sgRNA in the future.
机译:发明内容柑橘溃疡由Xanthomonas Citri亚种Citri(XCC)是最严重的疾病,适用于大多数商业柑橘品种,负责全球的重大经济损失。生成溃疡柑橘品种将提供一种有效和可持续的解决方案来控制柑橘类溃疡。在这里,我们通过在CSLOB1启动子(柑橘类侧向器官界限)基因的CSLOB1启动子(EBE PTHA4 -CSLOBP)中,通过修饰PTHA4效应结合元素(EBES)来报告我们在生成溃疡抗葡萄柚中的进展。 CSLOB1是柑橘类溃疡的易感性基因,并且由致病性因子PTHA4诱导,该致病性因子PTHA4与EBE ptha4 -cslobp诱导cslob1基因表达。在Duncan Grapefruit中有两种等位基因,I型和II型,CSLOB1。在这里,设计了二元载体,以通过邓肯葡萄柚的外壳转化破坏I型CSLOB1启动子(TI CSLOBP)中的PTHA4 EBE。成功创建了具有EBE PTHA4 -T1 CSLOBP的有针对性修改的四种转基因Duncan工厂。至于I型CSLOB1启动子,突变率为15.63%(#D13),14.29%(#D17),54.54%(#D18)和81.25%(#D22)。在存在野生型XCC的情况下,转基因邓肯葡萄柚在野生型中发育了同样的溃疡症状。一种人为设计的DTALE DCSLOB1.3,它专门识别I CSLOBP,但不是突变的I型CSLOBP或II型CSLOBP,以感染Duncan转化体。因此,#D18弱化溃疡症状,#D22在XCCΔPTHA4的存在下没有可见的溃疡症状:DCSLOB1.3。我们的数据表明,通过PTHA4激活易感性基因Cslob1的异位是足以诱导柑橘类溃疡病,并且可以在Citrus Canker抗性植物中产生柑橘类罐的突变。这项工作在未来通过CAS9 / SGRNA制定了基于CARKER耐柑橘类品种的基础。

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