4 results match your criteria: "National Institute for Sugarcane Research[Affiliation]"
Plant Sci
October 2012
National Institute for Sugarcane Research, CUJAE Road km 2½, Boyeros 19390, Havana, Cuba.
The relation between the oxidative burst and phenylpropanoid pathways has been studied using the sugarcane cultivar C86-56, which does not release phenolics in agar-base micropropagation systems. In stationary liquid culture, a significant production of phenolic compounds and plant survival were determined in sugarcane plants treated with 5mM H(2)O(2). The spectrophotometer determinations and the gene expression analysis corroborated that releasing of phenolics and soluble θ-quinones was induced during the first 24h of treatment.
View Article and Find Full Text PDFPlant Cell Rep
June 2008
National Institute for Sugarcane Research, CUJAE Km 2 1/2 Road. Boyeros, 19390 Havana City, Cuba.
A differential expression study on the Saccharum spp.-Sporisorium scitamineum pathogenic interaction was carried out in the susceptible Ja60-5 and the resistant M31/45 genotypes. Using cDNA-AFLP analysis, a total of 64 transcript-derived fragments (TDFs) was found to be differentially expressed, with the majority (67.
View Article and Find Full Text PDFMethods Mol Biol
February 2007
Genetic and Phytopathologic Department, National Institute for Sugarcane Research, Carretera CUJAE Km 2. Boyeros 19 390, Havana City, Cuba.
We describe the procedures for recovering transgenic sugarcane from co-cultivation of both calli and in vitro plants with Agrobacterium tumefaciens. The correct tissue culture strategies and the use of super-binary vector or super-virulent strain are crucial for the successful sugarcane transformation. Both plant regeneration via calli culture and micropropagation strategies can be optimized to a wide spectrum of sugarcane genotypes, thus the procedures presented here could be applied to genetic engineering of Saccharum spp.
View Article and Find Full Text PDFPlant Signal Behav
September 2006
National Institute for Sugarcane Research; Boyero, Havana City, Cuba.
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.
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