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首页> 外文期刊>The Plant Cell >The Second Site Modifier, Sympathy for the ligule, Encodes a Homolog of Arabidopsis ENHANCED DISEASE RESISTANCE4 and Rescues the Liguleless narrow Maize Mutant
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The Second Site Modifier, Sympathy for the ligule, Encodes a Homolog of Arabidopsis ENHANCED DISEASE RESISTANCE4 and Rescues the Liguleless narrow Maize Mutant

机译:第二个地点改性剂,对Ligule的同情,编码拟南芥的同源物增强的疾病抵抗4,并拯救了韧带窄玉米突变体

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摘要

Liguleless narrow1 encodes a plasma membrane-localized receptor-like kinase required for normal development of maize (Zea mays) leaves, internodes, and inflorescences. The semidominant Lgn-R mutation lacks kinase activity, and phenotypic severity is dependent on inbred background. We created near isogenic lines and assayed the phenotype in multiple environments. Lgn-R plants that carry the B73 version of Sympathy for the ligule (Sol-B) fail to grow under hot conditions, but those that carry the Mo17 version (Sol-M) survive at hot temperatures and are significantly taller at cool temperatures. To identify Sol, we used recombinant mapping and analyzed the Lgn-R phenotype in additional inbred backgrounds. We identified amino acid sequence variations in GRMZM2G075262 that segregate with severity of the Lgn-R phenotypes. This gene is expressed at high levels in Lgn-R B73, but expression drops to nonmutant levels with one copy of Sol-M. An EMS mutation solidified the identity of SOL as a maize homolog of Arabidopsis (Arabidopsis thaliana) ENHANCED DISEASE RESISTANCE4 (EDR4). SOL, like EDR4, is induced in response to pathogen-associated molecular patterns such as flg22. Integrated transcriptomic and phosphoproteomic analyses suggest that Lgn-R plants constitutively activate an immune signaling cascade that induces temperature-sensitive responses in addition to defects in leaf development. We propose that aspects of the severe Lgn-R developmental phenotype result from constitutive defense induction and that SOL potentially functions in repressing this response in Mo17 but not B73. Identification of LGN and its interaction with SOL provides insight into the integration of developmental control and immune responses.
机译:Ligulless窄度1编码玉米(Zea Mays)叶子,尤基和花序的正常发育所需的血浆膜局部受体样激酶。半肿瘤Lgn-R突变缺乏激酶活性,表型严重程度依赖于近交背景。我们在上生素内创建,并在多种环境中测定表型。携带B73版的LGN-R植物对LIGUEL(SOL-B)的同情(SOL-B)未在热条件下生长,但携带MO17版本(溶胶-M)的那些在热温度下存活,并且在凉爽的温度下显着更高。为了鉴定溶胶,我们使用重组映射并在额外的近交背景中分析了LGN-R表型。我们鉴定了GRMZM2G075262中的氨基酸序列变化,其具有LGN-R表型的严重程度。该基因在LGN-R B73的高水平表达,但表达滴到非融入水平,用一种溶液溶液-M。 EMS突变凝固了溶胶作为拟南芥的玉米同源物(Arabidopsis Thilana)增强的疾病抵抗4(EDR4)。响应于诸如FLG22的病原体相关的分子模式,诱导如EDR4的溶胶。集成的转录组和磷蛋白酶分析表明,除了叶片发育中的缺陷之外,LGN-R植物还构成诱导温度敏感反应的免疫信号级联。我们提出了严重的LGN-R发育表型的方面由本构型防御诱导产生,并且SOL可能用于抑制MO17中的这种反应而不是B73。 LGN的鉴定及其与SOL的相互作用提供了洞察发育控制和免疫应答的整合。

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