Santiago Christine D, Yagi Shogo, Ijima Motoaki, Nashimoto Tomoya, Sawada Maki, Ikeda Seishi, Asano Kenji, Orikasa Yoshitake, Ohwada Takuji
United Graduate School of Agricultural Sciences, Iwate University.
Microbes Environ. 2017 Mar 31;32(1):14-23. doi: 10.1264/jsme2.ME16127. Epub 2017 Feb 4.
The compatibility of strains is crucial for formulating bioinoculants that promote plant growth. We herein assessed the compatibility of four potential bioinoculants isolated from potato roots and tubers (Sphingomonas sp. T168, Streptomyces sp. R170, Streptomyces sp. R181, and Methylibium sp. R182) that were co-inoculated in order to improve plant growth. We screened these strains using biochemical tests, and the results obtained showed that R170 had the highest potential as a bioinoculant, as indicated by its significant ability to produce plant growth-promoting substances, its higher tolerance against NaCl (2%) and AlCl (0.01%), and growth in a wider range of pH values (5.0-10.0) than the other three strains. Therefore, the compatibility of R170 with other strains was tested in combined inoculations, and the results showed that the co-inoculation of R170 with T168 or R182 synergistically increased plant weight over un-inoculated controls, indicating the compatibility of strains based on the increased production of plant growth promoters such as indole-3-acetic acid (IAA) and siderophores as well as co-localization on roots. However, a parallel test using strain R181, which is the same Streptomyces genus as R170, showed incompatibility with T168 and R182, as revealed by weaker plant growth promotion and a lack of co-localization. Collectively, our results suggest that compatibility among bacterial inoculants is important for efficient plant growth promotion, and that R170 has potential as a useful bioinoculant, particularly in combined inoculations that contain compatible bacteria.
菌株的兼容性对于配制促进植物生长的生物菌剂至关重要。我们在此评估了从马铃薯根和块茎中分离出的四种潜在生物菌剂(鞘氨醇单胞菌属T168、链霉菌属R170、链霉菌属R181和甲基营养菌属R182)的兼容性,这些菌剂共同接种以促进植物生长。我们通过生化试验对这些菌株进行了筛选,结果表明,R170作为生物菌剂的潜力最高,这体现在其产生促进植物生长物质的显著能力、对NaCl(2%)和AlCl(0.01%)的较高耐受性,以及比其他三种菌株在更广泛的pH值范围(5.0 - 10.0)内生长。因此,在联合接种中测试了R170与其他菌株的兼容性,结果表明,R170与T168或R182共同接种比未接种的对照协同增加了植物重量,这表明基于吲哚 - 3 - 乙酸(IAA)和铁载体等植物生长促进剂产量的增加以及在根上的共定位,菌株之间具有兼容性。然而,使用与R170同属链霉菌属的R181进行的平行试验表明,它与T168和R182不兼容,这表现为较弱的植物生长促进作用和缺乏共定位。总体而言,我们的结果表明,细菌接种剂之间的兼容性对于高效促进植物生长很重要,并且R170具有作为有用生物菌剂的潜力,特别是在含有兼容细菌的联合接种中。