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Influence of physicochemical factors on environmental availability and distribution of semiochemicals that affect Varroa destructor and phylogenetically close organisms: classification by VHWOC PCA-clustering

机译:理化因素对环境可用性的影响以及影响Varroa破坏者和系统发生近缘生物的信息化学物的分布:通过VHWOC PCA聚类进行分类

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摘要

Varroa destructor parasites Apis mellifera larvae following the interception of the semiochemicals involved in bee communication; thus, the semiochemical availability and distribution pathways take place within different physicochemical environments. The structure of 172 molecules with semiochemical activity on Varroa destructor was used to compute the representative physicochemical descriptors of the thermodynamic partition among different physicochemical environments: vapor pressure (V), Henry's coefficient (H), water solubility constant (W), octanol-water partition coefficient (O) and organic carbon partition coefficient (C); VHWOC. The principal component analysis (PCA) and hierarchical clustering of VHWOC descriptors allowed us to establish the trend in availability and distribution of the semiochemicals resulting in a 4 classes model of physicochemical environments: Class 1, Soluble/Volatile; Class 2, Soluble; Class 3, Contact; Class 4, Adsorbed/Volatile. Our results suggest that semiochemicals can transit between different thermodynamic equilibrium phases depending on environment conditions. The classification prediction of the model was tested on 6 new molecules obtained from ketonic extracts of L5 Apis mellifera drone larvae; locating them in class 4, which was consistent with their molecular structure. This study can be the starting point for the design of synthetic semiochemicals or for the control of Varroa destructor. In addition, the method can be used in the analysis of other semiochemical groups.
机译:截获参与蜂通讯的化学信息素后,瓦氏菌的破坏者寄生了蜜蜂Apis mellifera。因此,化学信息素的可获得性和分布途径发生在不同的物理化学环境中。使用对Varroa破坏子具有化学信息活性的172个分子的结构来计算不同物理化学环境之间热力学分配的代表性物理化学描述子:蒸气压(V),亨利系数(H),水溶性常数(W),辛醇-水分配系数(O)和有机碳分配系数(C); VHWOC。主成分分析(PCA)和VHWOC描述符的层次聚类使我们能够确定化学信息素的可用性和分布趋势,从而形成了4类物理化学环境模型:1类,可溶/易挥发; 4类。第2类,可溶;第3类,联系方式;类别4,吸附/易挥发。我们的结果表明,根据环境条件,化学信息素可以在不同的热力学平衡相之间转变。在从L5 Apis mellifera无人机幼虫的酮酮提取物中获得的6个新分子上测试了模型的分类预测。将它们定位在第4类中,这与它们的分子结构一致。该研究可以作为设计合成化学信息素或控制Varroa破坏因子的起点。另外,该方法可用于其他化学信息组的分析。

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