Considering the resistance-dependent inhibition in the ethylene biosynthetic pathway, the mechanisms of resistance to quinclorac in E. crusgalli var. zelayensis involved alteration(s) in the ethylene response pathway, consisting of at least alteration in induction of the enzymes activity of ACC synthase and ACC oxidase.
In this study, an efficient method for the synthesis
of sulfur-substituted
4-enyl-2-pyrrolidones was successfully developed through AIBN-promoted
highly selective 5-exo-dig radical cascade cyclization of 1,6-enynes
with sulfur sources with the aid of theoretical and computational
chemistry. This protocol enables the first practical and green synthesis
of an array of 4-enyl-2-pyrrolidones in moderate-to-good yields with
broad substrate scopes and high regioselectivities (>20:1). Moreover,
excellent stereoselectivities have also been achieved (up to >20:1, Z/E). Most interestingly, when the sulfur
source is electron-rich thiophenol, reverse stereoselectivities were
discovered. In addition, the control experiments indicate that the
cascade cyclization is realized by radical reactions, and the detailed
reaction mechanism and regioselectivities have also been explained
by theoretical studies.
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