A Neo-Sex Chromosome That Drives Postzygotic Sex Determination in the Hessian Fly (Mayetiola destructor)

Author:

Benatti Thiago R1,Valicente Fernando H1,Aggarwal Rajat1,Zhao Chaoyang1,Walling Jason G1,Chen Ming-Shun2,Cambron Sue E3,Schemerhorn Brandon J3,Stuart Jeffrey J1

Affiliation:

1. Department of Entomology, Purdue University, West Lafayette, Indiana 47907-2089

2. U.S. Department of Agriculture–Agricultural Research Service and Department of Entomology, Kansas State University, Manhattan, Kansas 66506 and

3. U.S. Department of Agriculture–Agricultural Research Service and Department of Entomology, Purdue University, West Lafayette, Indiana 47907-2089

Abstract

Abstract Two nonoverlapping autosomal inversions defined unusual neo-sex chromosomes in the Hessian fly (Mayetiola destructor). Like other neo-sex chromosomes, these were normally heterozygous, present only in one sex, and suppressed recombination around a sex-determining master switch. Their unusual properties originated from the anomalous Hessian fly sex determination system in which postzygotic chromosome elimination is used to establish the sex-determining karyotypes. This system permitted the evolution of a master switch (Chromosome maintenance, Cm) that acts maternally. All of the offspring of females that carry Cm-associated neo-sex chromosomes attain a female-determining somatic karyotype and develop as females. Thus, the chromosomes act as maternal effect neo-W's, or W-prime (W′) chromosomes, where ZW′ females mate with ZZ males to engender female-producing (ZW′) and male-producing (ZZ) females in equal numbers. Genetic mapping and physical mapping identified the inversions. Their distribution was determined in nine populations. Experimental matings established the association of the inversions with Cm and measured their recombination suppression. The inversions are the functional equivalent of the sciarid X-prime chromosomes. We speculate that W′ chromosomes exist in a variety of species that produce unisexual broods.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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