RESUMEN
Cotton production in the Mexicali valley is adversely affected by wilt and root rot disease associated with Fusarium species. In the present study, we sought to isolate and identify the Fusarium species in the rhizosphere of transgenic insect-resistant cotton plants grown in the Mexicali valley. Our analyses isolated four native fungi from the rhizosphere of cotton plants, namely, T-ICA01, T-ICA03, T-ICA04, and T-ICA08. These fungal isolates were categorized as belonging to Fusarium solani using their phenotypic characteristics and ITS region sequence data. Examination of the infection index showed that T-ICA03 and T-ICA04 caused systemic colonization (90%) of seeds followed by the occurrence of radicle and coleoptile decay. In contrast, T-ICA08 strain was less pathogenic against seed tissues (40%) in comparison to the other strains isolated. Our study showed that in transgenic insect-resistant cotton the disease "Fusarium wilt" is caused by the fungus, F. solani. Future studies are necessary to characterize the F. solani populations to determine whether phenological stages might influence the genetic diversity of the fungal populations present.
Asunto(s)
Cotiledón/microbiología , ADN de Hongos/genética , Fusarium/genética , Gossypium/microbiología , Raíces de Plantas/microbiología , Microbiología del Suelo , California , Resistencia a la Enfermedad , Fusarium/clasificación , Fusarium/patogenicidad , Gossypium/parasitología , Filogenia , Enfermedades de las Plantas/microbiología , Enfermedades de las Plantas/parasitología , Plantas Modificadas Genéticamente , RizosferaRESUMEN
ICE1 genes play a very important role in plants in cold conditions. To improve the cold resistance of tomato, the ICE1 gene of Arabidopsis thaliana was used to construct the plant expression vector p3301-ICE1, and was overexpressed in tomato through Agrobacterium-mediated transformation. Five strains of resistant plants were obtained. PCR and half-quantitative results showed that the ICE1 gene was transferred to tomato; three strains tested positive. After low-temperature stress treatment, praline content and peroxide and catalase activities in the transgenic tomato plants were higher compared with non-transgenic controls, while malondialdehyde content was clearly lower.
Asunto(s)
Agrobacterium/fisiología , Genes de Plantas , Solanum lycopersicum/genética , Solanum lycopersicum/microbiología , Factores de Transcripción/genética , Transformación Genética , Adaptación Fisiológica/efectos de los fármacos , Agrobacterium/efectos de los fármacos , Agrobacterium/crecimiento & desarrollo , Antibacterianos/farmacología , Carbenicilina/farmacología , Frío , Cotiledón/efectos de los fármacos , Cotiledón/microbiología , Electroforesis en Gel de Agar , Vectores Genéticos/metabolismo , Kanamicina/farmacología , Solanum lycopersicum/efectos de los fármacos , Plantas Modificadas Genéticamente , Reacción en Cadena de la Polimerasa , Regeneración/efectos de los fármacos , Factores de Tiempo , Transformación Genética/efectos de los fármacosRESUMEN
O gênero Saccharomyces tem sido usado como indutor de resistência ou para controle biológico em muitos patossistemas. Neste trabalho objetivou-se a indução de fitoalexinas em mesocótilos de sorgo e cotilédones de soja pela levedura Saccharomyces boulardii na forma do produto comercial Floratil (Merck) (com 2 x 106 células/mg produto comercial - pc) e massa de células obtidas de meio líquido YEPG (primeiramente com 14 dias de cultivo e, posteriormente, com 7, 14, 21, 28 e 35 dias) ambos em concentrações de 0,005; 0,05; 0,5; 5; 15 e 25 mg/mL, além de filtrado desse meio nas concentrações de 0,01; 0,1; 1; 5; 10 e 20%. Como tratamentos controle utilizou-se água e S. cerevisiae (25 mg/mL de pc) para soja e água e acibenzolar-S-metil (ASM) (125 mg i.a./L) para sorgo. Em soja os três produtos apresentaram efeito dose-dependente, com ajustes de equações de 1° grau e R2 de 0,64; 0,94 e 0,98 não tendo efeito do tempo de cultivo da levedura na indução de fitoalexinas. Em sorgo apenas o filtrado e Floratil tiveram efeito dose-dependente com equação de 1° grau e R2 de 0,63 e 0,94 respectivamente e obteve-se nos diferentes dias de cultivo R2 de 0,62 com a massa de células somente. Portanto, pode-se evidenciar o potencial indutor de fitoalexinas dos produtos a base de S. boulardii para ensaios com indução de resistência em patossistemas envolvendo sorgo e soja.
Saccharomyces yeast compounds have been used as a resistance elicitor or for biological control in many pathosystems. Thus, the aim of this research was to verify the induction of phytoalexins in sorghum mesocotyls and soybean cotyledons by using Saccharomyces boulardii in the form of the commercial product Floratil (Merck) (with 2 x 106 cells/mg) and yeast-cell mass obtained from liquid culture in YEPG medium (with 7, 14, 21, 28 and 35 days old), both at concentrations of 0.005, 0.05, 0.5, 5, 15 and 25 mg/mL, as well as the filtrate of this medium in concentrations of 0.01, 0.1, 1, 5, 10 and 20%. The control treatments consisted of distilled water and S. cerevisiae (25 mg of commercial product per mL) for the soybean tests and distilled water and acibenzolar-S-methyl (125 mg of active ingredient per L) for the sorghum tests. In soybeans the three tested S. boulardii products presented a dose-dependent effect with R2 of 0.64, 0.94 and 0.98 for the culture filtrate, cell suspension and commercial product of S. boulardii, respectively, with no effect of culture time of yeasts on phytoalexin induction. In sorghum, only the culture filtrate and Floratil presented a dose-dependent effect, with R2 of 0.63 and 0.94, respectively, and the cell suspension of S. boulardii showed dependence of culture time with R2 of 0.62. Thus, S. boulardii and its derivates induce phytoalexins and have potential to be used as an elicitor for assays with induction resistance in pathosystems involving sorghum and soybean plants.