This shows you the differences between two versions of the page.
Both sides previous revisionPrevious revisionNext revision | Previous revision | ||
bacteria:t3e:xopbh [2025/05/07 09:26] – [Biological function] rkoebnik | bacteria:t3e:xopbh [2025/07/24 14:11] (current) – [The Type III Effector XopBH from //Xanthomonas//] rkoebnik | ||
---|---|---|---|
Line 2: | Line 2: | ||
Author: [[https:// | Author: [[https:// | ||
- | Internal reviewer: [[https:// | + | Internal |
+ | Expert | ||
Class: XopBH\\ | Class: XopBH\\ | ||
Family: XopBH\\ | Family: XopBH\\ | ||
- | Prototype: XTG_RS02340 (// | + | Prototype: XTG_RS02340 (// |
GenBank ID: [[https:// | GenBank ID: [[https:// | ||
RefSeq ID: [[https:// | RefSeq ID: [[https:// | ||
Line 15: | Line 16: | ||
=== How discovered? === | === How discovered? === | ||
- | XopBH was discovered by a [[https:// | + | XopBH was discovered by a [[https:// |
=== (Experimental) evidence for being a T3E === | === (Experimental) evidence for being a T3E === | ||
XopBH was shown to have a functional type III secretion signal using a reporter fusion with AvrBs1 (Zhao //et al.//, 2013). | XopBH was shown to have a functional type III secretion signal using a reporter fusion with AvrBs1 (Zhao //et al.//, 2013). | ||
+ | |||
=== Regulation === | === Regulation === | ||
The presence of a PIP box and a properly spaced ‐10 promoter motif (TTCGB‐N< | The presence of a PIP box and a properly spaced ‐10 promoter motif (TTCGB‐N< | ||
+ | |||
=== Phenotypes === | === Phenotypes === | ||
Line 42: | Line 46: | ||
=== In xanthomonads === | === In xanthomonads === | ||
- | Yes (//e.g.//, //X. fragariae//, //X. cynarae// pv. //gardneri// (syn. //X. gardneri//), //X. oryzae//, //X. vasicola//) (Harrison //et al.//, 2014). | + | Yes (//e.g.//, //X. arboricola//, //X. campestris// pv. //papavericola//, //X. hortorum//). |
=== In other plant pathogens/ | === In other plant pathogens/ | ||
- | Yes (//e.g.//, // | + | No. |
===== References ===== | ===== References ===== | ||
+ | |||
+ | Huguet E, Bonas U (1997). //hrpF// of // | ||
Koebnik R, Krüger A, Thieme F, Urban A, Bonas U (2006). Specific binding of the // | Koebnik R, Krüger A, Thieme F, Urban A, Bonas U (2006). Specific binding of the // | ||
Wagner N, Baumer E, Lyubman I, Shimony Y, Bracha N, Martins L, Potnis N, Chang JH, Teper D, Koebnik R, Pupko T (2025). Effectidor II: A pan-genomic AI-based algorithm for the prediction of type III secretion system effectors. Bioinformatics, | Wagner N, Baumer E, Lyubman I, Shimony Y, Bracha N, Martins L, Potnis N, Chang JH, Teper D, Koebnik R, Pupko T (2025). Effectidor II: A pan-genomic AI-based algorithm for the prediction of type III secretion system effectors. Bioinformatics, | ||
+ | |||
+ | Weber E, Ojanen-Reuhs T, Huguet E, Hause G, Romantschuk M, Korhonen TK, Bonas U, Koebnik R (2005). The type III-dependent Hrp pilus is required for productive interaction of // | ||
Wengelnik K, Bonas U (1996). HrpXv, an AraC-type regulator, activates expression of five of the six loci in the hrp cluster of // | Wengelnik K, Bonas U (1996). HrpXv, an AraC-type regulator, activates expression of five of the six loci in the hrp cluster of // |