首页> 外文期刊>Natural product communications >Pantoea ananatis Converts MBOA to 6-Methoxy-4-nitro-benzoxazolin-2(3H)-one (NMBOA) for Cooperative Degradation with its Native Root Colonizing Microbial Consortium
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Pantoea ananatis Converts MBOA to 6-Methoxy-4-nitro-benzoxazolin-2(3H)-one (NMBOA) for Cooperative Degradation with its Native Root Colonizing Microbial Consortium

机译:Pantoea ananatis将MbOA转化为6-甲氧基-4-硝基 - 苯并恶唑啉-2(3H) - 用于与其天然根殖民化微生物联盟的合作降解

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摘要

6-Methoxy-benzoxazolin-2(3H)-one (MBOA) is a degradation product derived from 2,4-Dihydroxy-7-methoxy-2H-1,4-benzoxazin-3(411)-one (DIMBOA), one of the bioactive compounds found e.g., in maize. Here we present hitherto unknown 6-methoxy-4-nitro-benzoxazolin-2(3H)-one (NMBOA) produced in Czapek medium by Pantoea ananatis (Enterobacteriaceae). P. ananatis is a member of a microbial consortium dominated by the zygomycete Actinomucor elegans, which was isolated from roots of Abutilon theophrasti. NMBOA was identified by NMR spectra and HR-ESI-MS analyses, revealing an unusual position of the nitro group at C-4. Nitration of MBOA initiates the degradation of the compound that is almost completed within three days by the entire consortium and isolated P. ananatis. The yeast Papiliotrema baii, another member of the consortium, is unable to degrade NMBOA but stored it at the surface of its polysacchararide capsule. NMBOA has negative effects on microbial growth in liquid medium whereas seedlings of Brassica oleracea var. gongylodes L. (kohlrabi) or Lepidium sativum (cress) are not impaired up to 500 mu M. Degradation via nitration may be important to understand the behavior of microbial species and effects of microbiomes when exposed to MBOA.
机译:6-甲氧基 - 苯并恶唑啉-2(3H) - 酮(MBOA)是衍生自2,4-二羟基-7-甲氧基-2H-1,4-苯并恶化-3(411) - ONE(DIMBOA)的降解产物,一种在玉米中发现的生物活性化合物的含量。在这里,我们迄今未知的6-甲氧基-4-硝基 - 苯并恶唑啉-2(3H) - 在Czapek培养基中由Pantoea Ananatis(肠杆菌属植物)产生。 P. Ananatis是由Zygomycete Intinomor秀丽隐杆线虫主导的微生物联盟的成员,其与Abutilon Theophrasti的根源分离。通过NMR光谱和HR-ESI-MS分析鉴定NMBOA,揭示硝基在C-4处的不寻常位置。 MBOA的硝化发起了整个联盟和分离的P. Ananatis的三天内几乎完成的化合物的降解。联盟另一个成员的酵母PapiliotRema Baii无法降解NMBOA,但在其多糖胶囊的表面储存。 NMBOA对液体培养基中的微生物生长具有负面影响,而甘蓝醛植物的幼苗。 Gongylodes L.(Kohlrabi)或Lepidium sativum(Cress)不会损害高达500 mu M.通过硝化的降解可能是重要的,以了解在暴露于MBOA时微生物物种的行为和微生物瘤的作用。

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