Inheritance of picloram and 2,4-D resistance in wild mustard (Brassica kaber)

Author:

Jugulam Mithila,McLean Michael D.,Hall J. Christopher

Abstract

The primary goal of this research was to determine the inheritance of cross-resistance to several groups of auxinic herbicides through classical genetic approaches using auxinic herbicide–resistant (R) and –susceptible (S) wild mustard biotypes obtained from western Canada. F1 progeny were raised from crosses between homozygous auxinic herbicide–R and –S wild mustard parental lines. The F1 and F2 populations were assessed for picloram (pyridine group) and 2,4-D (phenoxyalkanoic group) resistance or susceptibility. Analyses of the F1 as well as the F2 progeny indicate that a single dominant gene confers the resistance to picloram and 2,4-D similar to an earlier report of dicamba-based (benzoic acid group) resistance in this wild mustard biotype. Furthermore, analyses of backcross progeny in this species indicate that resistance to all three auxinic herbicides, i.e., picloram, dicamba, and 2,4-D, is determined by closely linked genetic loci. With this information on inheritance of resistance to several auxinic herbicide families, the R biotype of wild mustard offers an excellent system to isolate and characterize the auxinic herbicide–resistance gene.

Publisher

Cambridge University Press (CUP)

Subject

Plant Science,Agronomy and Crop Science

Reference24 articles.

1. Heap I. M. and Morrison I. N. 1992. Resistance to auxin-type herbicides in wild mustard (Sinapis arvensis L) populations in western Canada. Annual Meeting of Weed Science Society of America. 164 p. [Abstract #32].

2. Ethylene Biosynthesis Following Foliar Application of Picloram to Biotypes of Wild Mustard (Sinapis arvensis L.) Susceptible or Resistant to Auxinic Herbicides

3. Paraquat resistance and its inheritance in seed germination of foliar resistant biotypes of Erigeron canadensis and E. sumatrensis;Yamasue;Pestic. Biochem. Physiol,1992

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