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Bacillus velezensis 83 a bacterial strain from mango phyllosphere, useful for biological control and plant growth promotion

机译:Bacillus Velezensis 83来自芒果文学的细菌菌株,可用于生物控制和植物生长促进

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摘要

Abstract Bacillus velezensis 83 was isolated from mango tree phyllosphere of orchards located in El Rosario, Sinaloa, México. The assessment of this strain as BCA (biological control agent), as well as PGPB (plant growth-promoting bacteria), were demonstrated through in vivo and in vitro assays. In vivo assays showed that B. velezensis 83 was able to control anthracnose (Kent mangoes) as efficiently as chemical treatment with Captan 50 PH™ or Cupravit hidro™. The inoculation of B. velezensis 83 to the roots of maize seedlings yielded an increase of 12% in height and 45% of root biomass, as compared with uninoculated seedlings. In vitro co-culture assays showed that B. velezensis 83 promoted Arabidopsis thaliana growth (root and shoot biomass) while, under the same experimental conditions, B. velezensis FZB42 (reference strain) had a suppressive effect on plant growth. In order to characterize the isolated strain, the complete genome sequence of B. velezensis 83 is reported. Its circular genome consists of 3,997,902 bp coding to 3949 predicted genes. The assembly and annotation of this genome revealed gene clusters related with plant-bacteria interaction and sporulation, as well as ten secondary metabolites biosynthetic gene clusters implicated in the biological control of phytopathogens. Despite the high genomic identity (> 98%) between B. velezensis 83 and B. velezensis FZB42, they are phenotypically different. Indeed, in vitro production of compounds such as surfactin and bacillomycin D (biocontrol activity) and γ-PGA (biofilm component) is significantly different between both strains.
机译:摘要芽孢杆菌velezensis 83从位于El罗萨里奥,锡那罗亚州,墨西哥果园的芒果树叶围隔离。该菌株为BCA(生物控制剂),以及PGPB(植物生长促进细菌)的评估,是通过在体内和体外实验证明。体内测定法表明,B. velezensis 83能够控制炭疽病(肯特芒果)尽可能有效地与克菌丹50 PH™或Cupravit HIDRO™化学处理。与未接种的苗相比B. velezensis 83至玉米幼苗的根接种产生了在高度的12%和根生物量的45%的增加,。在体外共培养测定表明,B. velezensis 83促进拟南芥生长(根和枝条生物量),同时,在相同的实验条件下,B. velezensis FZB42(参照株)对植物生长的抑制效果。为了表征的分离的菌株,报道B. velezensis 83的完整基因组序列。其圆形基因组由3997902个碱基至编码3949个预测基因。这个基因组的组装和注解揭示了与植物相互作用的细菌和产孢,以及10的次级代谢产物在植物病原体的生物控制牵连生物合成基因簇相关基因簇。尽管B. velezensis 83和B. velezensis FZB42之间的高的基因组标识(> 98%),它们是在表型上不同。实际上,在体外产生,例如枯草芽孢菌和d(生物防治活性)和γ-PGA(生物膜组分)的化合物的是两种菌株之间显著不同。

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