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Host‐plant associated genetic divergence of two Diatraea spp. (Lepidoptera: Crambidae) stemborers on novel crop plants
Authors:Andrea L Joyce  Miguel Sermeno Chicas  Leopoldo Serrano Cervantes  Miguel Paniagua  Sonja J Scheffer  M Alma Solis
Affiliation:1. University of California Merced, Merced, CA, USA;2. Agronomy, University of El Salvador, San Salvador, El Salvador;3. Systematic Entomology Lab, USDA‐ARS, Beltsville, MD, USA;4. Systematic Entomology, National Museum of Natural History, USDA, Washington, DC, USA
Abstract:Diatraea lineolata and Diatraea saccharalis (Lepidoptera: Crambidae) are moths with stemboring larvae that feed and develop on economically important grasses. This study investigated whether these moths have diverged from a native host plant, corn, onto introduced crop plants including sorghum, sugarcane, and rice. Diatraea larvae were collected from these four host plants throughout the year in El Salvador and were reared on artificial diet until moths or parasitoids emerged. Adult moths were subsequently identified to species. Amplified fragment length polymorphisms (AFLPs) and mitochondrial DNA cytochrome oxidase I (COI) were used to examine whether or not there was genetic divergence of D. lineolata or D. saccharalis populations on the four host plants. Percent parasitism was also determined for each moth on its host plants. D. lineolata was collected from corn in the rainy season and sorghum in the dry season. D. saccharalis was most abundant on sugarcane in the rainy season and sorghum in the dry season. The AFLP analysis found two genetically divergent populations of both D. lineolata and D. saccharalis. Both moths had high levels of parasitism on their dominant host plant in the rainy season, yet had low levels of parasitism on sorghum in the dry season. The presence of two genotypes of both Diatraea spp. on sorghum suggest that host‐associated differentiation is occurring on this novel introduced crop plant.
Keywords:adaptation  biological control  biotypes  host plant phenology  host plant volatiles  host‐associated differentiation  parasitism
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