Anzuay María Soledad, Ciancio María Gabriela Ruiz, Ludueña Liliana Mercedes, Angelini Jorge Guillermo, Barros Germán, Pastor Nicolás, Taurian Tania
Departamento de Ciencias Naturales, Facultad de Ciencias Exactas, Físico-Químicas y Naturales, Universidad Nacional de Río Cuarto, Córdoba, Argentina.
Departamento de Microbiología, Facultad de Ciencias Exactas, Físico-Químicas y Naturales, Universidad Nacional de Río Cuarto, Córdoba, Argentina.
Microbiol Res. 2017 Jun;199:98-109. doi: 10.1016/j.micres.2017.03.006. Epub 2017 Mar 21.
The aims of this study were, to analyze in vitro phosphate solubilization activity of six native peanut bacteria and to determine the effect of single and mixed inoculation of these bacteria on peanut and maize plants. Ability to produce organic acids and cofactor PQQ, to solubilize FePO and AlPO and phosphatase activity were analyzed. Also, the ability to solubilize phosphate under abiotic stress and in the presence of pesticides of the selected bacteria was determined. The effect of single and mixed bacterial inocula was analyzed on seed germination, maize plant growth and in a crop rotation plant assay with peanut and maize. The six strains produced gluconic acid and five released cofactor PQQ into the medium. All bacteria showed ability to solubilize phosphate from FePO and AlPO and phosphatase activity. The ability of the bacteria to solubilize tricalcium phosphate under abiotic stress and in presence of pesticides indicated encouraging results. Bacterial inoculation on peanut and maize increased seed germination, plant́s growth and P content. Phosphate solubilizing bacteria used in this study showed efficient phosphate mineralizing and solubilization ability and would be potential P-biofertilizers for peanut and maize.
本研究的目的是分析六种本地花生细菌的体外解磷活性,并确定这些细菌单接种和混合接种对花生和玉米植株的影响。分析了产生有机酸和辅因子PQQ的能力、溶解磷酸铁和磷酸铝的能力以及磷酸酶活性。此外,还测定了所选细菌在非生物胁迫下和存在农药时溶解磷的能力。分析了单接种和混合接种细菌对种子萌发、玉米植株生长以及花生和玉米轮作作物试验的影响。这六种菌株产生了葡萄糖酸,五种向培养基中释放了辅因子PQQ。所有细菌都表现出从磷酸铁和磷酸铝中溶解磷的能力以及磷酸酶活性。细菌在非生物胁迫下和存在农药时溶解磷酸三钙的能力显示出令人鼓舞的结果。接种细菌对花生和玉米的种子萌发、植株生长和磷含量有促进作用。本研究中使用的解磷细菌表现出高效的磷矿化和溶解能力,有望成为花生和玉米的潜在生物磷肥。