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In Vitro Assessment of Biocontrol Effects on Fusarium Head Blight and Deoxynivalenol (DON) Accumulation by DON-Degrading Bacteria

机译:对镰刀菌枯萎病和脱氧性苯酚(Don)积累的体外评估生物控制对致枯生和脱氧性苯酚(Don)积累的渗透细菌

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摘要

Fusarium head blight (FHB) of cereals is a severe disease caused by the Fusarium graminearum species complex. It leads to the accumulation of the mycotoxin deoxynivalenol (DON) in grains and other plant tissues and causes substantial economic losses throughout the world. DON is one of the most troublesome mycotoxins because it is a virulence factor to host plants, including wheat, and exhibits toxicity to plants and animals. To control both FHB and DON accumulation, a biological control approach using DON-degrading bacteria (DDBs) is promising. Here, we performed a disease control assay using an in vitro petri dish test composed of germinated wheat seeds inoculated with F. graminearum (Fg) and DDBs. Determination of both grown leaf lengths and hyphal lesion lengths as a measure of disease severity showed that the inoculation of seeds with the DDBs Devosia sp. strain NKJ1 and Nocardioides spp. strains SS3 or SS4 were protective against the leaf growth inhibition caused by Fg. Furthermore, it was as effective against DON accumulation. The inoculation with strains SS3 or SS4 also reduced the inhibitory effect on leaves treated with 10 µg mL−1 DON solution (without Fg). These results indicate that the DDBs partially suppress the disease by degrading DON.
机译:纤维纤维(FHB)的谷物是由镰刀虫柑橘类物种复合物引起的严重疾病。它导致谷物和其他植物组织中霉菌毒素脱氧酚苯酚(Don)积累,并在全世界引起大量的经济损失。唐是最麻烦的霉菌毒素之一,因为它是饲养植物,包括小麦的毒力因素,并且对植物和动物表现出毒性。为了控制FHB和DON积累,使用唐降解细菌(DDB)的生物控制方法是有前途的。在这里,我们使用由肉芽素种子(FG)和DDBS的发芽小麦种子组成的体外培养皿试验进行了疾病控制试验。作为疾病严重程度的测量,含有生长的叶片长度和悬垂性病变长度的测定表明,与DDBS Devosia Sp接种种子。菌株NKJ1和Nocardioides SPP。菌株SS3或SS4对FG引起的叶片生长抑制受保护。此外,它与唐积累有效。与菌株SS3或SS4的接种还降低了用10μgmL-1唐溶液(没有FG)处理的叶片的抑制作用。这些结果表明,DDBS通过降解DON部分抑制疾病。

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