Maroniche Guillermo A, Rubio Esteban J, Consiglio Adrián, Perticari Alejandro
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET).
J Gen Appl Microbiol. 2016 Nov 25;62(5):248-257. doi: 10.2323/jgam.2016.04.006. Epub 2016 Oct 3.
Fluorescent Pseudomonas are ubiquitous soil bacteria that usually establish mutualistic associations with plants, promoting their growth and health by several mechanisms. This makes them interesting candidates for the development of crop bio-inoculants. In this work, we isolated phosphate-solubilizing fluorescent Pseudomonas from the rhizosphere and inner tissues of different plant species growing in red soil from Misiones, Argentina. Seven isolates displaying strong phosphate solubilization were selected for further studies. Molecular identification by rpoD genotyping indicated that they belong to different species within the P. fluorescens and P. putida phylogenetic groups. Screening for in vitro traits such as phosphate solubilization, growth regulators synthesis or degradation, motility and antagonism against phytopathogens or other bacteria, revealed a unique profile of characteristics for each strain. Their plant growth-promoting potential was assayed using lettuce as a model for inoculation under controlled and greenhouse conditions. Five of the strains increased the growth of lettuce plants. Overall, the strongest lettuce growth promoter under both conditions was strain ZME4, isolated from inner tissues of maize. No clear association between lettuce growth promotion and in vitro beneficial traits was detected. In conclusion, several phosphate solubilizing pseudomonads from red soil were isolated that display a rich array of plant growth promotion traits, thus showing a potential for the development of new inoculants.
荧光假单胞菌是普遍存在的土壤细菌,通常与植物建立共生关系,通过多种机制促进植物生长和健康。这使其成为开发作物生物接种剂的有趣候选对象。在这项研究中,我们从阿根廷米西奥内斯红壤中生长的不同植物物种的根际和内部组织中分离出了解磷荧光假单胞菌。选择了七株表现出强烈解磷能力的分离株进行进一步研究。通过rpoD基因分型进行的分子鉴定表明,它们属于荧光假单胞菌和恶臭假单胞菌系统发育组内的不同物种。对体外特性如解磷、生长调节剂合成或降解、运动性以及对植物病原体或其他细菌的拮抗作用进行筛选,揭示了每个菌株独特的特征谱。以生菜为接种模型,在受控和温室条件下测定了它们促进植物生长的潜力。其中五株菌株促进了生菜植株的生长。总体而言,在两种条件下促进生菜生长最强的菌株是从玉米内部组织中分离出的ZME4菌株。未检测到生菜生长促进与体外有益特性之间的明显关联。总之,从红壤中分离出了几种解磷假单胞菌,它们表现出丰富的植物生长促进特性,因此显示出开发新型接种剂的潜力。