Zhang Chaowen, Cai Kai, Li Mengyuan, Zheng Jiaqi, Han Yuzhu
College of Animal Science and Technology, Southwest University, Chongqing 402460, China.
Chongqing Key Laboratory of Herbivore Science, Chongqing 402460, China.
Microorganisms. 2022 Mar 29;10(4):731. doi: 10.3390/microorganisms10040731.
Plant-growth-promoting endophytes (PGPE) are a kind of beneficial microorganisms which could inhabit plant tissues to antagonize certain plant pathogens and promote the host plant's growth and development. At present, many studies have confirmed the mutualistic effect of endophytes with plants, but there are few systematic studies on beneficial roles between endophytes and , especially on the PGPE characteristics of the forage and environmental restoration plant. This study aimed to isolate PGPE from , evaluate their effects on plant growth, and ultimately acquire desirable microbial inoculants for agricultural use. First, endophytes were isolated from by plant re-inoculation experiment, and identified by morphological and molecular analyses. Fixation medium and methods were carried out to assess the nitrogen fixation ability of the strains. Then, the ability to dissolve phosphorus was determined by the Olsen and silicate medium methods; secretory IAA was measured by Salkowski colorimetric method; and the inhibitive effects on phytopathogen were observed by confrontation culture. Twenty-one strains were isolated from four varieties of , among which 14 strains with plant-growth-promoting characteristics were obtained by re-inoculation experiments, including seven endophytic bacteria and seven endophytic fungi. Further evaluation of three selected strains with the most significant PGP attributes were performed by using the pot re-inoculation experiment which revealed that TG2-B derived from was the most effective plant-growth-promoting agent due to its ability to produce high levels of IAA; the strain exhibited the most robust ability in dissolving inorganic phosphorus; and manifested a conspicuously antagonistic effect against a variety of plant pathogens. For the first time, this study reports the identification of endophytes that were able to promote plant growth and have a considerable antagonistic effects on plant pathogens, which could be considered as microbial inoculants for using in improving crop production and plant disease control.
促进植物生长的内生菌(PGPE)是一类有益微生物,可栖息于植物组织中,拮抗某些植物病原体,促进宿主植物的生长发育。目前,许多研究已证实内生菌与植物的共生效应,但关于内生菌与[具体对象未明确]之间有益作用的系统研究较少,尤其是关于饲料和环境修复植物的PGPE特性。本研究旨在从[具体对象未明确]中分离PGPE,评估其对植物生长的影响,并最终获得适用于农业的理想微生物接种剂。首先,通过植物回接实验从[具体对象未明确]中分离内生菌,并通过形态学和分子分析进行鉴定。采用固定培养基和方法评估菌株的固氮能力。然后,通过奥尔森法和硅酸盐培养基法测定解磷能力;用索氏比色法测定分泌型吲哚乙酸(IAA);通过对峙培养观察对植物病原体的抑制作用。从[具体对象未明确]的四个品种中分离出21株菌株,其中通过回接实验获得14株具有促进植物生长特性的菌株,包括7株内生细菌和7株内生真菌。通过盆栽回接实验对3株PGP属性最显著的选定菌株进行进一步评估,结果表明,源自[具体对象未明确]的TG2 - B因其产生高水平IAA的能力而成为最有效的植物生长促进剂;[菌株名称未明确]在溶解无机磷方面表现出最强的能力;[菌株名称未明确]对多种植物病原体表现出明显的拮抗作用。本研究首次报道鉴定出能够促进植物生长并对植物病原体具有显著拮抗作用的[具体对象未明确]内生菌,这些内生菌可被视为用于提高作物产量和控制植物病害的微生物接种剂。