Sokolova Ekaterina Alexeevna, Mishukova Olga Viktorovna, Hlistun Inna Viktorovna, Tromenschleger Irina Nikolaevna, Tikunov Artem Yurievich, Manakhov Andrey Dmitrievich, Rogaev Evgeny Ivanovich, Savenkov Oleg Alexandrovich, Buyanova Maria Dmitrievna, Ivanov Ilya Vladimirovich, Smirnova Natalya Valentinovna, Voronina Elena Nikolaevna
Institute of Chemical Biology and Fundamental Medicine, Siberian Branch of the Russian Academy of Sciences, 630090 Novosibirsk, Russia.
Department of Natural Sciences, Novosibirsk State University, 630090 Novosibirsk, Russia.
Plants (Basel). 2023 Dec 31;13(1):116. doi: 10.3390/plants13010116.
The amalgamation of mineral and targeted bacterial preparations represents a new generation of agricultural technology. Inoculation with combined preparations of microorganisms is more effective than inoculation with a single microorganism in stimulating plant growth by providing a more balanced diet for various crops. In this work, the effect of inoculation of 20 consortium variants on the yield indicators of three crops (wheat, buckwheat, corn) and the soil microbiome in the open field was investigated. The soil microbiome was defined by 16S rRNA sequences through NGS. The species richness of the soil microbial community (alpha diversity) was similar for all studied samples. A beta-diversity analysis revealed that the microbial diversity of three soil samples (C.bw, F.bw and Soil.bw) differed significantly from all others. At the phylum level, the number of and in these samples was increased. For the combination "Consortium C ( and )-buckwheat", a systemic positive improvement in all growth and yield indicators was observed. The soil of the site where buckwheat grew, inoculated by Consortium C, contained significantly more available phosphorus than all other soil samples. Such results can be explained both by the direct action of a consortium of phosphate-immobilizing and nitrogen-fixing bacteria and acidification of the medium due to an increase in phylum bacteria in the soil.
矿物质与靶向细菌制剂的融合代表了新一代农业技术。通过为各种作物提供更均衡的养分,接种微生物组合制剂比接种单一微生物在刺激植物生长方面更有效。在这项工作中,研究了接种20种菌剂变体对三种作物(小麦、荞麦、玉米)产量指标以及田间土壤微生物群的影响。通过NGS技术,利用16S rRNA序列对土壤微生物群进行了定义。所有研究样本的土壤微生物群落物种丰富度(α多样性)相似。β多样性分析表明,三个土壤样本(C.bw、F.bw和Soil.bw)的微生物多样性与所有其他样本有显著差异。在门水平上,这些样本中的[具体门类1]和[具体门类2]数量增加。对于“菌剂C([具体细菌1]和[具体细菌2])-荞麦”组合,观察到所有生长和产量指标都有系统性的正向改善。接种菌剂C的荞麦生长地土壤中有效磷含量显著高于所有其他土壤样本。这些结果既可以通过固定磷酸盐和固氮细菌组合的直接作用来解释,也可以通过土壤中[具体门类]细菌增加导致培养基酸化来解释。