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一种多组分微生物土壤接种剂的研制及其在甘薯种植中的性能

Development of a Multicomponent Microbiological Soil Inoculant and Its Performance in Sweet Potato Cultivation.

作者信息

Nagy Viktor Dávid, Zhumakayev Anuar, Vörös Mónika, Bordé Ádám, Szarvas Adrienn, Szűcs Attila, Kocsubé Sándor, Jakab Péter, Monostori Tamás, Škrbić Biljana D, Mohai Edina, Hatvani Lóránt, Vágvölgyi Csaba, Kredics László

机构信息

Department of Microbiology, Faculty of Science and Informatics, University of Szeged, Közép fasor 52, 6726 Szeged, Hungary.

Faculty of Agriculture, University of Szeged, Andrássy Street 15, 6800 Hódmezővásárhely, Hungary.

出版信息

Microorganisms. 2023 Mar 31;11(4):914. doi: 10.3390/microorganisms11040914.

Abstract

The cultivation and consumption of sweet potato () are increasing globally. As the usage of chemical fertilizers and pest control agents during its cultivation may lead to soil, water and air pollution, there is an emerging need for environment-friendly, biological solutions enabling increased amounts of healthy crop and efficient disease management. Microbiological agents for agricultural purposes gained increasing importance in the past few decades. Our goal was to develop an agricultural soil inoculant from multiple microorganisms and test its application potential in sweet potato cultivation. Two strains were selected: strain SZMC 25217 based on its extracellular enzyme activities for the biodegradation of plant residues, and strain SZMC 25231 for biocontrol purposes against fungal plant pathogens. The strain SZMC 24986 proved to be the best growth inhibitor of most of the nine tested strains of fungal species known as plant pathogens, therefore it was also selected for biocontrol purposes against fungal plant pathogens. strain SZMC 25081, showing the fastest growth on nitrogen-free medium, was selected as a component with possible nitrogen-fixing potential. A strain, SZMC 25872, was selected for its ability to produce indole-3-acetic acid, which is among the important traits of potential plant growth-promoting rhizobacteria (PGPR). A series of experiments were performed to test the selected strains for their tolerance to abiotic stress factors such as pH, temperature, water activity and fungicides, influencing the survivability in agricultural environments. The selected strains were used to treat sweet potato in two separate field experiments. Yield increase was observed for the plants treated with the selected microbial consortium (synthetic community) in comparison with the control group in both cases. Our results suggest that the developed microbial inoculant has the potential to be used in sweet potato plantations. To the best of our knowledge, this is the first report about the successful application of a fungal-bacterial consortium in sweet potato cultivation.

摘要

全球范围内,甘薯的种植和消费都在增加。由于其种植过程中使用化肥和杀虫剂可能导致土壤、水和空气污染,因此对环境友好的生物解决方案的需求日益增长,这些方案能够增加健康作物的产量并实现高效的病害管理。在过去几十年中,农用微生物制剂变得越来越重要。我们的目标是开发一种由多种微生物组成的农业土壤接种剂,并测试其在甘薯种植中的应用潜力。我们选择了两株菌株:基于其对植物残体生物降解的胞外酶活性选择了SZMC 25217菌株,以及用于防治植物真菌病原体的SZMC 25231菌株。事实证明,SZMC 24986菌株对九种已知的植物病原真菌测试菌株中的大多数具有最佳的生长抑制作用,因此它也被选用于防治植物真菌病原体。在无氮培养基上生长最快的SZMC 25081菌株被选为具有固氮潜力的成分。选择了SZMC 25872菌株,因为它具有产生吲哚-3-乙酸的能力,这是潜在的植物促生根际细菌(PGPR)的重要特性之一。进行了一系列实验,以测试所选菌株对非生物胁迫因素(如pH、温度、水分活度和杀菌剂)的耐受性,这些因素会影响其在农业环境中的生存能力。在两个单独的田间试验中,使用所选菌株处理甘薯。与对照组相比,在两种情况下,用所选微生物群落(合成群落)处理的植株均观察到产量增加。我们的结果表明,所开发的微生物接种剂有潜力用于甘薯种植园。据我们所知,这是关于真菌-细菌联合体在甘薯种植中成功应用的首次报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a19/10143537/6cd3466bc9e5/microorganisms-11-00914-g001.jpg

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