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plant:populus [2020/06/15 16:12] rkoebnik [Genes involved in defense] |
plant:populus [2021/01/25 22:19] (current) rkoebnik [Pathogen: //X. populi// pv. //populi//] |
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Author: Noemi Casarin\\ | Author: Noemi Casarin\\ | ||
- | Internal reviewer: Pavel Beran\\ | + | Internal reviewer: |
Expert reviewer: FIXME | Expert reviewer: FIXME | ||
- | ===== Pathogen: //X. populi// pv. //populi// ===== | + | ===== Pathogen: //Xanthomonas |
==== Resistance synthetic gene: //D4E1// ==== | ==== Resistance synthetic gene: //D4E1// ==== | ||
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//NA// | //NA// | ||
- | |||
=== Source === | === Source === | ||
Transgenic hybrid poplar //Populus tremula// L. x //Populus alba// L., line Tr23 (Mentag //et al.//, 2003). | Transgenic hybrid poplar //Populus tremula// L. x //Populus alba// L., line Tr23 (Mentag //et al.//, 2003). | ||
- | |||
=== Status (identified, | === Status (identified, | ||
Cloned in the plasmid pBI-d35S-D4E1-nos (Cary //et al.//, 2000) and in the plasmid ubi7-D4E1 (Mentag //et al.//, 2003). | Cloned in the plasmid pBI-d35S-D4E1-nos (Cary //et al.//, 2000) and in the plasmid ubi7-D4E1 (Mentag //et al.//, 2003). | ||
- | |||
=== Molecular markers === | === Molecular markers === | ||
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=== Brief description === | === Brief description === | ||
- | A synthetic gene coding for D4E1 (Cary //et al.//, 2000), which is a synthetic antimicrobial peptide consisting of 17 amino acid residues (Demeter BioTechnologies, | + | A synthetic gene coding for D4E1 (Cary //et al.//, 2000), which is a synthetic antimicrobial peptide consisting of 17 amino acid residues (Demeter BioTechnologies, |
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=== Brief description === | === Brief description === | ||
- | Perception of a mix of various elicitors from both bacterial strains (which can be quite specific but for which the specific poplar R-genes for // | + | Perception of a mix of various elicitors from both bacterial strains (which can be quite specific but for which the specific poplar R-genes for // |
---- | ---- | ||
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=== Synonyms === | === Synonyms === | ||
- | //NA//. | + | //NA// |
=== Source === | === Source === | ||
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=== Status (identified, | === Status (identified, | ||
- | //NA//. | + | //NA// |
=== Molecular markers === | === Molecular markers === | ||
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Resistant species or cultivars are determined by field observations or by controlled mechanical inoculations of the pathogen into the plants. A literature synthesis of the susceptibility of main European cultivars to //X. populi// | Resistant species or cultivars are determined by field observations or by controlled mechanical inoculations of the pathogen into the plants. A literature synthesis of the susceptibility of main European cultivars to //X. populi// | ||
- | **Table 1: Main European resistant cultivars to //X. populi,// according to the literature synthesis of Pinon & Valadon (1995).** | + | **Table 1: Main European resistant cultivars to //X. populi//, according to the literature synthesis of Pinon & Valadon (1995).** |
^//P. nigra// | ^//P. nigra// | ||
- | | <font 9px/ | + | | <font 9px/ |
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Albrecht J, Böden E (1988). Zur Krankheitsanfälligkeit von zugelassenen Pappelklonen der Sektionen Aigeiros und Tacamahaca. Holzzucht 42: 25-29. | Albrecht J, Böden E (1988). Zur Krankheitsanfälligkeit von zugelassenen Pappelklonen der Sektionen Aigeiros und Tacamahaca. Holzzucht 42: 25-29. | ||
- | Anonyme | + | Anonymous |
- | Anonyme | + | Anonymous |
- | Cary JW, Rajasekaran K, Jaynes JM, Cleveland TE (2000). Transgenic expression of a gene encoding a synthetic antimicrobial peptide results in inhibition of fungal growth //in vitro// | + | Cary JW, Rajasekaran K, Jaynes JM, Cleveland TE (2000). Transgenic expression of a gene encoding a synthetic antimicrobial peptide results in inhibition of fungal growth //in vitro// and //in planta//. Plant Sci. 154: 171-181. DOI: [[https:// |
- | De Lucca AJ, Bland JM, Grimm C, Jacks TJ, Cary JW, Jaynes JM, Cleveland TE, Walsh TJ (1998). Fungicidal properties, sterol binding, and proteolytic resistance of the synthetic peptide D4E1. Can. J. Microbiol. 44: 514–520. DOI: [[https:// | + | De Lucca AJ, Bland JM, Grimm C, Jacks TJ, Cary JW, Jaynes JM, Cleveland TE, Walsh TJ (1998). Fungicidal properties, sterol binding, and proteolytic resistance of the synthetic peptide D4E1. Can. J. Microbiol. 44: 514-520. DOI: [[https:// |
- | de Vries, SMG. 1987. Populus euramericana ’Koster’. Ned. Bosb. Tijdschr. 4: 99. | + | de Vries SMG (1987). //Populus euramericana// ’Koster’. Ned. Bosb. Tijdschr. 4: 99. |
- | Duplessis S, Major I, Martin F, Séguin A (2009). Poplar and pathogen interactions: | + | Duplessis S, Major I, Martin F, Séguin A (2009). Poplar and pathogen interactions: |
- | Hamel LP, Miles GP, Samuel MA, Ellis BE, Seguin A, Beaudoin N (2005). Activation of stress-responsive nitrogen-activated protein kinase pathways in hybrid poplar (Populus trichocarpa x Populus deltoides). Tree Physiol. 25: 277–288. DOI: [[https:// | + | Hamel LP, Miles GP, Samuel MA, Ellis BE, Seguin A, Beaudoin N (2005). Activation of stress-responsive nitrogen-activated protein kinase pathways in hybrid poplar (//Populus trichocarpa// x //Populus deltoides//). Tree Physiol. 25: 277-288. DOI: [[https:// |
- | Janssen A (1989). First results of resistance tests on different poplar clones in vitro with the bacterial canker pathogen // | + | Janssen A (1989). First results of resistance tests on different poplar clones in vitro with the bacterial canker pathogen // |
- | Kechel HG, Böden (1985). Resistenzprüfung an Pappeln aus Gewebekultur. Eur. J. For. Path. 15: 45-51. DOI: [[https:// | + | Kechel HG, Böden (1985). Resistenzprüfung an Pappeln aus Gewebekultur. Eur. J. For. Path. 15: 45-51. DOI: [[https:// |
Kolster HW (1967). Populiererassen in de EEG Landen en hun bruikbaarheid voor Nederland. Stichting Bosbouwproefstation ’De Dorschkamp’, | Kolster HW (1967). Populiererassen in de EEG Landen en hun bruikbaarheid voor Nederland. Stichting Bosbouwproefstation ’De Dorschkamp’, | ||
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Koster R (1972). Elf nieuwe populiereklonen : ten geleide. Ned. Bosb. Tijdschr. 238: 173-189. | Koster R (1972). Elf nieuwe populiereklonen : ten geleide. Ned. Bosb. Tijdschr. 238: 173-189. | ||
- | Mentag R, Luckevich M, Morency MJ, Seguin A (2003). Bacterial disease resistance of transgenic hybrid poplar expressing the synthetic antimicrobial peptide D4E1. Tree Physiol. 23: 405–11. DOI: [[https:// | + | Mentag R, Luckevich M, Morency MJ, Seguin A (2003). Bacterial disease resistance of transgenic hybrid poplar expressing the synthetic antimicrobial peptide D4E1. Tree Physiol. 23: 405-411. DOI: [[https:// |
- | Pinon J, Valadon A (1995). Comportement des cultivars de peupliers commercialisables dans l’Union européenne vis-à-vis de quelques parasites majeurs. Ann. Sci. For. 54: 19–38. DOI: [[https:// | + | Pinon J, Valadon A (1995). Comportement des cultivars de peupliers commercialisables dans l’Union européenne vis-à-vis de quelques parasites majeurs. Ann. Sci. For. 54: 19-38. DOI: [[https:// |
Ride M, Ride S (1993). Sensibilité de cultivars ou clones de peuplier à // | Ride M, Ride S (1993). Sensibilité de cultivars ou clones de peuplier à // | ||
- | Soulères G (1982a). Informations populicoles. Rev. For. Fr 4: 327-328. | + | Soulères G (1982a). Informations populicoles. Rev. For. Fr. 4: 327-328. |
Soulères G (1982b). Étude sur cinq nouveaux cultivars de peupliers. Forêts de France 255: 29-34. | Soulères G (1982b). Étude sur cinq nouveaux cultivars de peupliers. Forêts de France 255: 29-34. | ||
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Viart M (1972). Note sommaire sur onze nouveaux clones néerlandais. Rev. For. Fr. 24: 293-294. | Viart M (1972). Note sommaire sur onze nouveaux clones néerlandais. Rev. For. Fr. 24: 293-294. | ||
- | \\ | + | ---- |
+ | |||
+ | ===== Further reading ===== | ||
+ | |||
+ | Nesme X, | ||