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首页> 外文期刊>Pesticide Biochemistry and Physiology >Sulfoxaflor efficacy in the laboratory against imidacloprid-resistant and susceptible populations of the green peach aphid, Myzus persicae: Impact of the R81T mutation in the nicotinic acetylcholine receptor
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Sulfoxaflor efficacy in the laboratory against imidacloprid-resistant and susceptible populations of the green peach aphid, Myzus persicae: Impact of the R81T mutation in the nicotinic acetylcholine receptor

机译:在实验室对胰岛素抗性和易感群的绿色桃蚜,肌瘤性致敏感,Myzus persiCae的疗效:R81T突变在烟碱中的影响

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摘要

A key to effective insect pest management and insecticide resistance management is to provide growers with a range of new tools as potential alternatives to existing compounds or approaches. Sulfoxaflor (Isoclast (TM) active) is a new sulfoximine insecticide which is active on a broad range of sap-feeding insects, including species that have reduced susceptibility to currently used insecticides, such as imidacloprid from the neonicotinoid class. Sulfoxaflor (SFX) and imidacloprid (IMI) were tested in laboratory bioassays to compare the susceptibility of field populations of green peach aphid, Myzus persicae (Sulzer), exhibiting varying degrees of resistance involving an alteration (R81T) to the insect nicotinic acetylcholine receptor. The LC50 values for M. persicae exposed to SFX ranged from 0.09 to 1.31 (mg litre(-1)), whereas when the same populations were exposed to IMI the LC50 values ranged from 0.6 to 76.2 (mg litre(-1)). M. persicae were significantly more sensitive to SFX as compared to IMI for nine of the 13 populations tested. For M. persicae populations confirmed to be homozygous susceptible (ss) or heterozygous rs) for the R81T point mutation, there was no significant differences in the observed LC50 values for either SFX or IMI relative to the susceptible reference population (15LP1). However, in all M. persicae populations that were homozygous (rr) for the R81T point mutation, susceptibility was significantly less to IMI as compared to the reference population with resistance ratios ranging from 22.1 to 63.5-fold. In contrast, only one homozygous resistant population (15MP9) exhibited a statistically significant change in susceptibility (RR = 10-fold) to SFX as compared to the reference population, which was far less than the 56-fold observed for imidacloprid in that same population. Thus, this study indicates there is no specific correlation between the laboratory efficacy of SFX and IMI in field collected populations in Spain displaying varying degrees of resistance to IMI. Furthermore, the presence of target site resistance in M. persicae to IMI, in the form of the R81T mutation, does not a priori translate to a reduction in sensitivity to sulfoxaflor. Consequently, SFX can be an effective tool for use in insect pest management programs for green peach aphid. These data also serve as a baseline reference for green peach aphid sensitivity to SFX prior to commercial uses in Spain.
机译:有效害虫管理和杀虫剂抵抗管理的关键是为种植者提供一系列新工具作为现有化合物或方法的潜在替代品。苏福洛(Isoclast(TM)活性)是一种新的磺酰杂杂胺杀虫剂,其在诸如诸如目前使用的杀虫剂的敏感性降低的物种,例如来自Neonicotinoid类的胰岛素等物种。在实验室生物测定中测试了苏福洛(SFX)和吡虫啉(IMI),以比较绿色桃蚜蚜虫,Myzus Persicae(Sulze)的易感性,涉及昆虫烟碱乙酰胆碱受体的改变(R81T)的变化抗性。暴露于SFX的M.Spericae的LC50值范围为0.09-1.31(Mg升(-1)),而当与IMI相同的群体时,LC50值范围为0.6至76.2(Mg升(-1))。与13种群体的IMI相比,M. Persicae对SFX显着更敏感。对于R81T点突变证实是具有纯合敏感(SS)或杂合子RS的M. PersicaBAP群体,对于SFX或IMI相对于易感参考群(15LP1),观察到的LC50值没有显着差异。然而,对于R81T点突变的纯合(RR)的所有M.Spericae群体,与具有22.1至63.5倍的电阻比的参考群相比,IMI显着较大。相反,与参考群相比,只有一种纯合的抗性群体(15mp9)对SFX的敏感性(RR = 10倍)至SFX的统计学显着变化,其远低于在同一人群中观察到的吡虫啉的56倍。因此,该研究表明SFX和IMI在西班牙的野外收集群体中的实验室疗效与显示不同程度的IMI的抗性之间没有具体相关性。此外,在R81T突变的形式下,M.Spericae对IMI的靶位位点抗性的存在并不优先转化为对磺脲类的敏感性的降低。因此,SFX可以是用于绿色桃蚜蚜虫的害虫管理程序的有效工具。这些数据还用作西班牙商业用途之前对SFX的绿色桃蚜虫敏感性的基线参考。

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