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The Morphoregulatory Role of Thidiazuron: Metabolomics-Guided Hypothesis Generation for Mechanisms of Activity

机译:Thidiazuron的形态学作用:代谢组科引导的假设产生的活动机制

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摘要

Thidiazuron (TDZ) is a diphenylurea synthetic herbicide and plant growth regulator used to defoliate cotton crops and to induce regeneration of recalcitrant species in plant tissue culture. In vitro cultures of African violet thin petiole sections are an ideal model system for studies of TDZ-induced morphogenesis. TDZ induces de novo shoot organogenesis at low concentrations and somatic embryogenesis at higher concentrations of exposure. We used an untargeted metabolomics approach to identify metabolites in control and TDZ-treated tissues. Statistical analysis including metabolite clustering, pattern and pathway tools, logical algorithms, synthetic biotransformations and hormonomics identified TDZ-induced changes in metabolism. A total of 18,602 putative metabolites with extracted masses and predicted formulae were identified with 1412 features that were found only in TDZ-treated tissues and 312 that increased in response to TDZ. The monomer of TDZ was not detected intact in the tissues but putative oligomers were found in the database and we hypothesize that these may form by a Diels–Alder reaction. Accumulation oligomers in the tissue may act as a reservoir, slowly releasing the active TDZ monomer over time. Cleavage of the amide bridge released TDZ-metabolites into the tissues including organic nitrogen and sulfur containing compounds. Metabolomics data analysis generated six novel hypotheses that can be summarized as an overall increase in uptake of sugars from the culture media, increase in primary metabolism, redirection of terpene metabolism and mediation of stress metabolism via indoleamine and phenylpropanoid metabolism. Further research into the specific mechanisms hypothesized is likely to unravel the mode of action of TDZ and to provide new insights into the control of plant morphogenesis.
机译:Thidiazuron(TDZ)是一种二苯基脲合成除草剂和植物生长调节剂,用于落叶棉作物,并在植物组织培养中诱导醋酸醋酸种的再生。非洲紫罗兰薄岩层的体外培养是TDZ诱导的形态发生研究的理想模型系统。 TDZ在较高浓度的暴露中诱导低浓度和体细胞胚胎发生的脱幼面芽组织。我们利用未明确的代谢组学方法来鉴定对照和TDZ治疗组织中的代谢物。统计分析包括代谢物聚类,模式和途径工具,逻辑算法,合成生物转化和征候性质,鉴定了TDZ诱导的新陈代谢变化。用1412个特征鉴定了含有提取的质量和预测式的提取物和预测式的推定式代谢物,仅在TDZ处理的组织和312中发现,响应于TDZ而增加。 TDZ的单体未在组织中形成完整,但在数据库中发现推定的低聚物,我们假设通过Diels-Alder反应来形成这些可能形成。组织中的累积低聚物可以充当储层,随着时间的推移缓慢地释放活性TDZ单体。酰胺桥的切割将TDZ代谢物释放到包括有机氮和含硫化合物的组织中。代谢组合数据分析产生了六种新假设,可以总结为从培养基中摄取糖的整体增加,主要代谢增加,萜烯代谢的重定向通过吲哚胺和苯丙醇代谢的胁迫代谢。进一步研究假设特定机制可能会解开TDZ的作用方式,并为植物形态发生控制提供新的见解。

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