A range of Rh(III)-catalyzed ortho-C-H functionalizations have been developed; however, extension of this reactivity to remote C-H functionalizations through large-ring rhodacyclic intermediates has yet to be demonstrated. Herein we report the first example of the use of a U-shaped nitrile template to direct Rh(III)-catalyzed remote meta-C-H activation via a postulated 12-membered macrocyclic intermediate. Because the ligands used for Rh(III) catalysts are significantly different from those of Pd(II) catalysts, this offers new opportunities for future development of ligand-promoted meta-C-H activation reactions.
Background
Culex pipiens pallens
is the most abundant
Culex
mosquito species in northern China and is an important vector of bancroftian filariasis and, potentially, West Nile virus. Insecticides, particularly pyrethroids, are widely used for adult mosquito control. Insecticide resistance has become common in several mosquito species, and vector control is the main method currently available to prevent disease transmission. The voltage-gated sodium channel (
Vgsc
) gene is the target site of pyrethroids, and mutations in this gene cause knockdown resistance (
kdr
).
Methods
Culex pipiens pallens
larvae were collected from May to November over two decades, from 1992 to 2018, in four cities in Shandong Province, China. The World Health Organization (WHO) standard resistance bioassay was applied to test the resistance levels of
Cx. p. pallens
larvae to five different insecticides and to test deltamethrin resistance in adults, using the F1 generation. Mutations at
Vgsc
codon 1014 were also screened in 471 adult samples collected in 2014 to determine the association between
kdr
mutations and phenotypic resistance.
Results
Larval resistance against deltamethrin showed an increasing trend from the 1990s until 2018, which was statistically significant in all populations; resistance to cypermethrin increased significantly in mosquitoes from the Zaozhuang population. However, larval resistance to other insecticides remained relatively stable. Larval resistance against deltamethrin was consistent with adult bioassays in 2014, in which all tested populations were highly resistant, with mortality rates ranging from 39.4 to 55.23%. The L1014S and L1014F mutations were both observed in five
Cx. p. pallens
populations, with L1014F significantly associated with deltamethrin resistance.
Conclusions
The long-term dataset from Shandong demonstrates major increases in pyrethroid resistance over a 20-year period. The L1014F
kdr
mutation may be considered a viable molecular marker for monitoring pyrethroid resistance in
Cx. p. pallens.
Electronic supplementary material
The online version of this article (10.1186/s13071-019-3416-9) contains supplementary material, which is available to authorized users.
Ligand development for rhodium(III)-catalyzed C-H activation reactions has largely been limited to cyclopentadienyl (Cp) based scaffolds. 2-Methylquinoline has now been identified as a feasible ligand that can coordinate to the metal center of Cp*RhCl to accelerate the cleavage of the C-H bond of N-pentafluorophenylbenzamides, providing a new structural lead for ligand design. The compatibility of this reaction with secondary free amines and anilines also overcomes the limitations of palladium(II)-catalyzed C-H amination reactions.
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