Gao Yingying, Zhao Xuejun, Sun Xiaofang, Wang Zhen, Zhang Jing, Li Lianshan, Shi Haiyan, Wang Minghua
Department of Pesticide Science, College of Plant Protection, State & Local Joint Engineering Research Center of Green Pesticide Invention and Application, Nanjing Agricultural University, Nanjing 210095, China.
J Agric Food Chem. 2021 Mar 24;69(11):3289-3297. doi: 10.1021/acs.jafc.0c04163. Epub 2021 Mar 12.
Oxathiapiprolin is a novel chiral piperidine thiazole isooxazoline fungicide that contains a pair of enantiomers. An effective analytical method was established for the enantioselective detection of oxathiapiprolin in fruit, vegetable, and soil samples using ultraperformance liquid chromatography-tandem triple quadrupole mass spectrometry. The optimal enantioseparation was achieved on a Chiralpak IG column at 35 °C using acetonitrile and 0.1% formic acid aqueous solution (90:10, v/v) as the mobile phase. The absolute configuration of the oxathiapiprolin enantiomers was identified with the elution order of -(-)-oxathiapiprolin and -(+)-oxathiapiprolin by electron circular dichroism spectra. The bioactivity of -(-)-oxathiapiprolin was 2.49 to 13.30-fold higher than that of -(+)-oxathiapiprolin against six kinds of oomycetes. The molecular docking result illuminated the mechanism of enantioselectivity in bioactivity. The glide score (-8.00 kcal/mol) for the -enantiomer was better with the binding site in than the -enantiomer (-7.50 kcal/mol). Enantioselective degradation in tomato and pepper under the field condition was investigated and indicated that -(-)-oxathiapiprolin was preferentially degraded. The present study determines the enantioselectivity of oxathiapiprolin about enantioselective detection, bioactivity, and degradation for the first time. The -enantiomer will be a better choice than racemic oxathiapiprolin to enhance the bioactivity and reduce the pesticide residues at a lower application rate.
恶唑菌酮是一种新型手性哌啶噻唑异恶唑啉类杀菌剂,含有一对对映体。建立了一种超高效液相色谱 - 串联三重四极杆质谱法,用于对水果、蔬菜和土壤样品中的恶唑菌酮进行对映选择性检测。在Chiralpak IG柱上,以乙腈和0.1%甲酸水溶液(90:10,v/v)为流动相,于35℃实现了最佳对映体分离。通过电子圆二色光谱,根据 -(-)-恶唑菌酮和 -(+)-恶唑菌酮的洗脱顺序确定了恶唑菌酮对映体的绝对构型。 -(-)-恶唑菌酮对六种卵菌的生物活性比 -(+)-恶唑菌酮高2.49至13.30倍。分子对接结果阐明了生物活性对映选择性的机制。 -对映体与结合位点的Glide评分(-8.00 kcal/mol)优于 -对映体(-7.50 kcal/mol)。研究了田间条件下番茄和辣椒中的对映选择性降解,结果表明 -(-)-恶唑菌酮优先降解。本研究首次确定了恶唑菌酮在对映选择性检测、生物活性和降解方面的对映选择性。与外消旋恶唑菌酮相比, -对映体在较低施用量下能提高生物活性并减少农药残留,将是更好的选择。