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含植物根际促生菌复合微生物菌剂的优化及对小白菜(L. ssp.)的验证

Optimization of composite microbial agents containing plant inter-root growth-promoting bacteria and verification using mini Chinese cabbage ( L. ssp. ).

作者信息

Fan Xiangjun, Yao Wenxia, Liu Taotao, Wang Yan, Lu Yang, Yang Hongyu, Zhang Yuxin

机构信息

College of Horticulture, Gansu Agricultural University, Lanzhou, China.

Gansu Academy of Agricultural Sciences, 1 New Village, Academy of Agricultural Sciences, Lanzhou, China.

出版信息

Front Plant Sci. 2025 May 21;16:1563932. doi: 10.3389/fpls.2025.1563932. eCollection 2025.

Abstract

Microbial agent research has developed from single strain to multi-strain complex studies, and Plant growth promoting rhizobacteria (PGPR) has emerged as a hot topic in relation to biofertilizers. Soil environmental degradation problems, such as soil compaction and fertility decline in the Hexi region of Gansu, China, are the focus of this study. The enrichment of PGPR resources and the elucidation of the plant growth-promoting effects of the PGPR strains are also investigated. This study isolated 26-PGPR strains from plant inter-root soils with phosphorous solubilizing ability, 15 strains with nitrogen fixing ability, and 7 strains with IAA secretion ability. The identified strains were from the genera , , , , , , , and . Six dominant strains were selected based on the identified characteristics to prepare composite microbial agents, which were then optimized using a pot experiment with mini Chinese cabbage ( L. ssp. Pekinensis) and the cross-crossing method. The TE (JQ-MY-41+JQ-MY-42+YC-342) treatment significantly promoted plant growth, and chlorophyll a and carotenoids were increased by 23.1% and 21.2% compared with the CK., respectively. With the TB treatment, Pn increased by 60.5%. The Fv/Fm, ETR, and leaf SOD and POD activities were significantly increased with the TE treatment compared with the TB treatment. Endogenous hormones, such as TZR, GA, and ABA, were significantly increased in TB- and TE-treated plants compared with the CK. Furthermore, organic matter and quick-acting potassium were increased by 33.4% and 71.3%, respectively, and alkaline nitrogen and quick-acting phosphorus were both 2.98 times higher with the TE treatment than with the CK. The correlation analysis of the indicators showed that for the composite mini-Chinese cabbage, TE is the optimal formula, and this will help guide future research and development into microbial fertilizers.

摘要

微生物制剂研究已从单一菌株发展到多菌株复合研究,植物根际促生细菌(PGPR)已成为与生物肥料相关的热门话题。中国甘肃河西地区的土壤环境退化问题,如土壤压实和肥力下降,是本研究的重点。本研究还对PGPR资源的富集以及PGPR菌株的促植物生长作用进行了阐释。本研究从植物根际土壤中分离出26株具有解磷能力的PGPR菌株、15株具有固氮能力的菌株和7株具有分泌吲哚乙酸(IAA)能力的菌株。鉴定出的菌株分别属于 、 、 、 、 、 、 和 属。根据鉴定特征筛选出6株优势菌株制备复合微生物制剂,然后采用盆栽小白菜( 亚种)实验和交叉法对其进行优化。TE(JQ-MY-41+JQ-MY-42+YC-342)处理显著促进了植物生长,与对照相比,叶绿素a和类胡萝卜素分别增加了23.1%和21.2%。TB处理使净光合速率(Pn)提高了60.5%。与TB处理相比,TE处理使光系统II最大光化学效率(Fv/Fm)、电子传递速率(ETR)以及叶片超氧化物歧化酶(SOD)和过氧化物酶(POD)活性显著提高。与对照相比,TB和TE处理的植物中内源激素如玉米素核苷(TZR)、赤霉素(GA)和脱落酸(ABA)显著增加。此外,有机质和速效钾分别增加了33.4%和71.3%,TE处理的碱解氮和速效磷均比对照高2.98倍。指标的相关性分析表明,对于复合小白菜而言,TE是最佳配方,这将有助于指导未来微生物肥料的研发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfc8/12134762/0d17cb633907/fpls-16-1563932-g001.jpg

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