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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Bacillus subtilis TE3: A promising biological control agent against Bipolaris sorokiniana, the causal agent of spot blotch in wheat (Triticum turgidum L. subsp. durum)
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Bacillus subtilis TE3: A promising biological control agent against Bipolaris sorokiniana, the causal agent of spot blotch in wheat (Triticum turgidum L. subsp. durum)

机译:枯草芽孢杆菌TE3:针对Bipolaris索洛尼亚纳的有前途的生物控制剂,小麦斑块斑点的因果转剂(Triticum Turgidum L. subsp。杜伦姆)

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摘要

Bipolaris sorokiniana, the causal agent of wheat spot blotch, is an emerging phytopathogen in the Yaqui Valley, Sonora, Mexico. Currently, the unique method to control spot blotch on that region is employing synthetic fungicides with environmental and human health issues. Thus, the aim of this work was to identify and characterize native wheat-associated bacteria in order to find promising biological control strains that can be used as a sustainable alternative to control spot blotch. The identification of antagonistic strains was carried out by confrontation assay against B. sorokiniana. Antagonistic strains to B. sorokiniana were taxonomically classified by 16S rRNA gene sequencing, and characterized on important biological traits: (i) inhibition of the target phytopathogen, (ii) growth rate, and (iii) cytotoxic activity. Out 195 bacterial strains tested, 14 exhibited antagonistic activity against B. sorokiniana at different degree (1.6-8.0 mm of inhibition zone). The Antagonistic strains were taxonomically identified as members of Bacillus (eight strains), Paenibacillus (one strain), Pseudomonas (two strains), Achromobacter (one strain), Delftia (one strain), and Stenotrophomonas (one strain). The strain TE3, identified as Bacillus subtilis, showed promising biological control traits: (i) broad spectrum inhibition against B. sorokiniana, (ii) growth capacity in synthetic minimal medium, and (iii) non-cytotoxic activity to erythrocyte (gamma-hemolysis). The application of cell suspension or cell-free culture filtrate of B. subtilis TE3 under highly conducive conditions (28 degrees C and 100% HR) for wheat spot blotch, resulted in a significant reduction of that disease. In conclusion, B. subtilis TE3 and its antifungal metabolites are promising effective treatment to control the causal agent of the wheat spot blotch.
机译:Bipolaris Sorokiniana,麦芽斑的因果因子是墨西哥嵩索山谷的新兴植物病理学。目前,控制该地区的斑点斑点的独特方法是使用具有环境和人类健康问题的合成杀菌剂。因此,这项工作的目的是鉴定和表征本地小麦相关细菌,以寻找有前途的生物控制菌株,可用作控制点斑的可持续替代品。通过对抗B.Sorokiniana的对抗测定来进行拮抗菌株的鉴定。拮抗菌株对B.Sorokiniana的拮抗菌株通过16S rRNA基因测序分类,并表征重要的生物学性状:(i)抑制靶植物病原体,(ii)生长速率和(iii)细胞毒性活性。在195种细菌菌株中测试,14种在不同程度(1.6-8.0mm的抑制区)上对抗B.Sorokiniana进行拮抗活性。将拮抗菌株分类为芽孢杆菌(8株),Paenibacillus(一种菌株),假单胞菌(两个菌株),achroMobacter(一种菌株),Delftia(一种菌株)和鼻咽(一个菌株)的拮抗菌株。被鉴定为枯草芽孢杆菌的菌株TE3显示出有前途的生物控制性状:(i)针对B.Sorokiniana的广谱抑制,(II)合成最小培养基的生长能力,(III)非细胞毒性活性至红细胞(γ-溶血)。将B.枯草芽孢杆菌TE3的细胞悬浮液或无细胞培养滤液的应用用于小麦点斑的高度有用条件(28℃和100%HR),导致该疾病的显着降低。总之,B.枯草芽孢杆菌TE3及其抗真菌代谢物是有效的有效治疗,以控制小麦点斑的原因。

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