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bacteria:t3e:xopam [2020/08/09 17:04] – [References] rkoebnik | bacteria:t3e:xopam [2025/02/24 10:31] (current) – jensboch | ||
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- | ====== XopAM ====== | + | ====== |
- | Author: | + | Author: |
- | Reviewer: Jane Doe | + | |
Class: XopAM\\ | Class: XopAM\\ | ||
Family: XopAM\\ | Family: XopAM\\ | ||
- | Prototype: | + | Prototype: |
- | RefSeq ID:\\ | + | GenBank ID: [[https:// |
+ | RefSeq ID: [[https:// | ||
3D structure: Unknown | 3D structure: Unknown | ||
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=== How discovered? === | === How discovered? === | ||
+ | The //xopAM// gene in //X. campstris// pv. // | ||
=== (Experimental) evidence for being a T3E === | === (Experimental) evidence for being a T3E === | ||
+ | Using the HR-inducing domain AvrBs1< | ||
=== Regulation === | === Regulation === | ||
+ | Using a promoterless beta-glucuronidase (//gus//) gene as a transcriptional reporter, //xopAM// < | ||
=== Phenotypes === | === Phenotypes === | ||
- | Mutagenesis of type III effectors in //X. campestris// | + | Mutagenesis of type III effectors in //X. campestris// |
+ | |||
+ | Deletion of //xopAM// from //Xcc// reduced its virulence in cruciferous crops but increased virulence in Arabidopsis (// | ||
=== Localization === | === Localization === | ||
+ | XopAM< | ||
=== Enzymatic function === | === Enzymatic function === | ||
+ | XopAM< | ||
=== Interaction partners === | === Interaction partners === | ||
+ | Binding of XopAM< | ||
===== Conservation ===== | ===== Conservation ===== | ||
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Mukaihara T, Tamura N, Murata Y, Iwabuchi M (2004). Genetic screening of Hrp type III-related pathogenicity genes controlled by the HrpB transcriptional activator in //Ralstonia solanacearum// | Mukaihara T, Tamura N, Murata Y, Iwabuchi M (2004). Genetic screening of Hrp type III-related pathogenicity genes controlled by the HrpB transcriptional activator in //Ralstonia solanacearum// | ||
+ | |||
+ | Xie Q, Wei B, Zhan Z, He Q, Wu K, Chen Y, Liu S, He C, Niu X, Li C, Tang C, Tao J (2023). Arabidopsis membrane protein AMAR1 interaction with type III effector XopAM triggers a hypersensitive response. Plant Physiol. 193: 2768-2787. DOI: [[https:// | ||