Gluconacetobacter diazotrophicus Elicits a Sugarcane Defense Response Against a Pathogenic Bacteria Xanthomonas albilineans
被引:30
作者:
Arencibia, Ariel D.
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Natl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Univ Fed Rio de Janeiro, Inst Med Biochem, BR-21491590 Rio de Janeiro, BrazilNatl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Arencibia, Ariel D.
[1
,2
]
Vinagre, Fabiano
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机构:
Univ Fed Rio de Janeiro, Inst Med Biochem, BR-21491590 Rio de Janeiro, BrazilNatl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Vinagre, Fabiano
[2
]
Estevez, Yandi
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机构:
Natl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, CubaNatl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Estevez, Yandi
[1
]
Bernal, Aydiloide
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机构:
Natl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, CubaNatl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Bernal, Aydiloide
[1
]
Perez, Juana
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Natl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, CubaNatl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Perez, Juana
[1
]
Cavalcanti, Janaina
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机构:
Univ Fed Rio de Janeiro, Inst Med Biochem, BR-21491590 Rio de Janeiro, BrazilNatl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Cavalcanti, Janaina
[2
]
Santana, Ignacio
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Natl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, CubaNatl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Santana, Ignacio
[1
]
Hemerly, Adriana S.
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机构:
Univ Fed Rio de Janeiro, Inst Med Biochem, BR-21491590 Rio de Janeiro, BrazilNatl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
Hemerly, Adriana S.
[2
]
机构:
[1] Natl Inst Sugarcane Res, CUJAE Km2 Rd, Havana 19390, Cuba
[2] Univ Fed Rio de Janeiro, Inst Med Biochem, BR-21491590 Rio de Janeiro, Brazil
A new role for the plant growth-promoting nitrogen-fixing endophytic bacteria Gluconacetobacter diazotrophicus has been identified and characterized while it is involved in the sugarcane-Xanthomonas albilineans pathogenic interactions. Living G. diazotrophicus possess and/or produce elicitor molecules which activate the sugarcane defense response resulting in the plant resistance to X. albilineans, in this particular case controlling the pathogen transmission to emerging agamic shoots. A total of 47 differentially expressed transcript derived fragments (TDFs) were identified by cDNA-AFLP. Transcripts showed significant homologies to genes of the ethylene signaling pathway (26%), proteins regulates by auxins (9%), beta-1,3 Glucanase proteins (6%) and ubiquitin genes (4%), all major signaling mechanisms. Results point toward a form of induction of systemic resistance in sugarcane-G. diazotrophicus interactions which protect the plant against X. albilineans attack.