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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Biological control of take-all in wheat by endophytic Bacillus subtilis E1R-j and potential mode of action.
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Biological control of take-all in wheat by endophytic Bacillus subtilis E1R-j and potential mode of action.

机译:内生枯草芽孢杆菌E1R-j对小麦全食的生物控制及其潜在的作用方式。

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摘要

The bacterial strain E1R-j, isolated as an endophyte from wheat roots, exhibited high antifungal activity to Gaeumannomyces graminis var. tritici (Ggt). Strain E1R-j was identified as Bacillus subtilis based on morphological, physiological and biochemical methods as well as on 16S rDNA analysis. This strain inhibited mycelium growth in vitro of numerous plant pathogenic fungi, especially of Ggt, Coniothyrium diplodiella, Phomopsis sp. and Sclerotinia sclerotiorum. In greenhouse experiments, soil drenches with cell densities of 106, 109 and 1012 CFU ml-1 E1R-j reduced significantly take-all disease, caused by Ggt, in wheat seedling by 62.6%, 68.6% and 70.7%, respectively, compared to the inoculated control, 4 weeks after sowing. Growth parameters such as lengths and fresh weights of roots and shoots of Ggt-inoculated control plants were significantly lower compared to Ggt-inoculated and E1R-j treated plants. Field experiments in the season 2006/2007, heights of wheat plants in the Ggt inoculated plots were significantly reduced compared to the non inoculated treatments. Yield parameters such as kernels per head and thousand kernel weight (TKW) in inoculated control plants were lower compared to the other treatments. In the experimental year 2007/2008, independent treatments with the bacterial strain E1R-j and the fungicide Triadimefon reduced take-all disease in wheat roots by 55.3% and 61.9%, compared to the inoculated control plants. In this season plant height in inoculated control was significantly lower and also the yield parameters seeds per head and especially TKW were drastically reduced compared to the other treatments. E1R-j treatment alleviated the detrimental effects of take-all on grain yield parameters to a similar extent as Triadimefon application. SEM studies revealed that in the presence of E1R-j, hyphae of Ggt showed leakage, appeared ruptured, swollen and shriveled. Following root drench, strain E1R-j was able to colonize endophytically roots and leaves of wheat seedlings. While the population of the bacterial strain in wheat roots steadily increased from the second to the fourth leaf stage, in the leaf tissue the population of the strain rapidly declined. TEM studies also showed that cells of E1R-j were present in roots of wheat seedlings and effectively retarded infection and colonization of Ggt in root tissue; suppression of Ggt by E1R-j was accompanied by disintegration of hyphal cytoplasm. In addition, in the presence of E1R-j cells in Ggt-infected root tissue morphological defense reactions were triggered such as formation of wall appositions and papillae. The results presented indicate that the endophytic strain E1R-j of B. subtilis meets demands required for biocontrol of take-all.
机译:从小麦根中分离为内生菌的细菌菌株E1R-j对 Gaeumannomyces graminis var具有很高的抗真菌活性。 tritici ( Ggt )。根据形态,生理和生化方法以及16S rDNA分析,菌株E1R-j被鉴定为枯草芽孢杆菌。该菌株抑制了许多植物病原真菌,特别是 Ggt , Coniothyrium diplodiella , Phomopsis sp的菌丝体体外生长。 。和 Sclerotinia sclerotiorum 。在温室实验中,土壤密度为10 6 ,10 9 和10 12 CFU ml -1 与接种后的对照相比,在播种后4周,E1R-j显着减少了小麦幼苗中由 Ggti引起的全食性疾病,分别降低了62.6%,68.6%和70.7%。与Ggt接种和E1R-j处理的植物相比,Ggt接种的对照植物的生长参数(例如根和芽的长度和鲜重)明显更低。在2006/2007赛季的田间试验中,与未接种处理相比,在 Ggt 接种地中小麦植株的高度显着降低。与其他处理相比,接种的对照植物的产量参数(如人均果粒和千粒重(TKW))要低。在2007/2008实验年度,与接种的对照植物相比,用细菌菌株E1R-j和杀真菌剂三唑酮进行的独立处理使小麦根部的通病减少了55.3%和61.9%。在这个季节,与其他处理相比,接种对照的株高显着降低,每头种子的产量参数种子,尤其是TKW大大降低。 E1R-j处理减轻了通吃对谷物产量参数的有害影响,其程度与三唑酮的应用相似。 SEM研究表明,在存在E1R-j的情况下, Ggt 的菌丝显示泄漏,破裂,肿胀和皱缩。根部浸湿后,E1R-j菌株能够在小麦幼苗的内生根和叶上定植。从第二到第四叶期,小麦根中细菌菌株的数量稳定增加,而在叶片组织中,该菌株的数量迅速下降。透射电镜研究还显示,小麦幼苗根部存在E1R-j细胞,并有效地阻止了根部组织中 Ggt 的感染和定植。 E1R-j抑制 Ggt 伴随着菌丝细胞质的分解。另外,在E1R-j细胞的存在下,被Ggt感染的根组织被触发形态防御反应,例如壁并置和乳突的形成。呈现的结果表明,B的内生菌株E1R-j。枯草芽孢杆菌满足了生物防治通吃的要求。

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