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首页> 外文期刊>Molecular Plant-Microbe Interactions >Colonization of Rice Leaf Blades by an African Strain of Xanthomonas oryzae pv. oryzae Depends on a New TAL Effector That Induces the Rice Nodulin-3 Os11N3 Gene
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Colonization of Rice Leaf Blades by an African Strain of Xanthomonas oryzae pv. oryzae Depends on a New TAL Effector That Induces the Rice Nodulin-3 Os11N3 Gene

机译:非洲菌株Xanthomonas oryzae pv对水稻叶片的定殖。水稻依赖于新型TAL效应子,诱导水稻Nodulin-3 Os11N3基因

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摘要

African strains of Xanthomonas oryzae pv. oryzae contain fewer TAL effectors than Asian strains, and their contribution to pathogenicity is unknown. Systematic mutagenesis of tal genes was used to decipher the contribution of each of the eight TAL effector paralogs to pathogenicity of African X. oryzae pv. oryzae BAI3. A strain mutated in talC was severely affected in the production of disease symptoms. Analysis of growth in planta upon leaf-clip inoculation showed that mutant bacteria multiplied only at the site of inoculation at the apex of the leaf, suggesting a requirement for talC during colonization of vascular tissues. Such tissue-specific effect of a tal mutant is a novel phenotype, which has not yet been characterized in other xanthomonads. Microarray experiments comparing the host response of rice leaves challenged with BAI3(R) vs. BAI3(R)Delta talC were performed to identify genes targeted by TalC. A total of 120 upregulated and 21 downregulated genes were identified, among them Os11N3, which is a member of the MtN3/saliva family. Based on semiquantitative reverse transcription-polymerase chain reaction and beta-glucuronidase reporter assays, we show that Os11N3 is directly upregulated by TalC and identify a TalC DNA target box within the Os11N3 upstream sequence.
机译:Xanthomonas oryzae pv的非洲毒株。稻米中的TAL效应子比亚洲菌株少,它们对致病性的贡献尚不清楚。 tal基因的系统诱变被用来破译八种TAL效应子旁系同源物对非洲X. oryzae pv致病性的贡献。稻米BAI3。 talC突变的菌株在疾病症状的产生中受到严重影响。对叶夹接种后植物生长的分析表明,突变细菌仅在叶尖的接种部位繁殖,这表明在血管组织定植过程中需要滑石粉。 tal突变体的这种组织特异性作用是一种新的表型,尚未在其他黄单胞菌中表征。进行了微阵列实验,比较了受BAI3(R)与BAI3(R)Delta talC攻击的水稻叶片的宿主反应,以鉴定TalC靶向的基因。总共鉴定出120个上调基因和21个下调基因,其中Os11N3是MtN3 /唾液家族的成员。基于半定量逆转录-聚合酶链反应和β-葡萄糖醛酸苷酶报告基因测定,我们显示Os11N3由TalC直接上调并在Os11N3上游序列中鉴定TalC DNA靶标盒。

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