A derived weedy rice × ancestral cultivar cross identifies evolutionarily relevant weediness QTLs

Author:

Li Xiang1ORCID,Zhang Shulin2,Lowey Daniel1,Hissam Carter1,Clevenger Josh3,Perera Sherin1,Jia Yulin4,Caicedo Ana L.1ORCID

Affiliation:

1. Plant Biology Graduate Program and Department of Biology University of Massachusetts Amherst Amherst Massachusetts USA

2. College of Biology and Food Engineering, Innovation and Practice Base for Postdoctors Anyang Institute of Technology Anyang China

3. HudsonAlpha Institute of Biotechnology Huntsville Alabama USA

4. United States Department of Agriculture‐Agricultural Research Service Dale Bumpers National Rice Research Center Stuttgart Arkansas USA

Abstract

AbstractWeedy rice (Oryza spp.) is a weedy relative of the cultivated rice that competes with the crop and causes significant production loss. The BHA (blackhull awned) US weedy rice group has evolved from aus cultivated rice and differs from its ancestors in several important weediness traits, including flowering time, plant height and seed shattering. Prior attempts to determine the genetic basis of weediness traits in plants using linkage mapping approaches have not often considered weed origins. However, the timing of divergence between crossed parents can affect the detection of quantitative trait loci (QTL) relevant to the evolution of weediness. Here, we used a QTL‐seq approach that combines bulked segregant analysis and high‐throughput whole genome resequencing to map the three important weediness traits in an F2 population derived from a cross between BHA weedy rice with an ancestral aus cultivar. We compared these QTLs with those previously detected in a cross of BHA with a more distantly related crop, indica. We identified multiple QTLs that overlapped with regions under selection during the evolution of weedy BHA rice and some candidate genes possibly underlying the evolution weediness traits in BHA. We showed that QTLs detected with ancestor–descendant crosses are more likely to be involved in the evolution of weediness traits than those detected from crosses of more diverged taxa.

Funder

National Science Foundation

Publisher

Wiley

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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