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首页> 外文期刊>Journal of Plant Physiology >Endophytic Bacillus amyloliquefaciens YTB1407 elicits resistance against two fungal pathogens in sweet potato (Ipomoea batatas (L.) Lam.)
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Endophytic Bacillus amyloliquefaciens YTB1407 elicits resistance against two fungal pathogens in sweet potato (Ipomoea batatas (L.) Lam.)

机译:内皮芽孢杆菌淀粉胺氨基吡喹酮酮YTB1407在甘薯(IPOMOEA Batatas(L.)林的IPOMOEA Batatas(L.))中引发抗抗真菌病原体。

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The endophytic Bacillus amyloliquefaciens YTB1407 was previously reported to promote the growth of sweet potato (Ipomoea batatas cv. Yanshu 25). Here, we demonstrate in both in vitro and pot trial assays that pre-treatment with YTB1407 suspension could enhance resistance against root rot disease and black rot disease, caused by Fusarium solani Mart. Sacc. f. sp. batatas McClure and Ceratocystis fimbriata Ell. & Halst on sweet potato, respectively. When seedlings were infected with fungal pathogens at 10 days post irrigation, pre-treatment with YTB1407 suspension decreased these pathogens and YTB1407 bacterial biomass in sweet potato roots. The pre-treatment activated the expression of salicylic acid (SA)-responsive PR-1 gene, raised SA content, and reduced hydrogen peroxide (H2O2) in the host to resist F. solani, while it enhanced the expression levels of SA-responsive NPR1 and PR1 genes and increased SA content to resist C. fimbriata. The disease resistance control effect initiated by pre-treatment with YTB1407 for root rot pathogen (F. solani) was better than for black rot pathogen (C. fimbriata). The results indicated that Bacillus amyloliquefaciens YTB1407 played a pivotal role in enhancing resistance to two fungi pathogens in sweet potato, through production of some antifungal metabolites to decrease infection in the early stage as well as induction of SA-dependent systemic resistance.
机译:先前,Endophytic Bacillus淀粉胺氨基吡喹酮酮均据报道,促进甘薯(Ipomoea Batatas CV的生长。在这里,我们在体外和罐试验中证明,用YTB1407悬浮液预处理可以增强由镰刀菌的根腐疾病和黑色腐败疾病的抵抗力。 SACC。 F。 SP。 Batatas McClure和Ceratocystis Fimbriata ell。 &halst分别在红薯。当灌洗后10天感染真菌病原体时,用YTB1407悬浮液预处理降低了甘薯根中的这些病原体和YTB1407细菌生物量。预处理活化了宿主中的水杨酸(SA) - 夸张的PR-1基因,升高的SA含量和减少过氧化氢(H2O2)的表达以抵抗索尔锡,同时增强SA响应的表达水平NPR1和PR1基因并增加SA含量以抵抗C.Fimbriata。通过用YTB1407用于根腐病原体(F.Solani)的预处理引发的抗病控制效应优于黑腐病原体(C.Fimbriata)。结果表明,通过生产一些抗真菌代谢物在早期降低的抗真菌代谢物以及诱导SA依赖性全身性抗性的抗真菌代谢物以及诱导SA依赖性全身性抗性的抗真菌代谢物以及诱导SA依赖性全身性抗性的抗病性以及诱导SA依赖性全身性抗性的影响方面发挥了致态作用。

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