Authors
Paul Tanger, Stephen Klassen, Julius P Mojica, John T Lovell, Brook T Moyers, Marietta Baraoidan, Maria Elizabeth B Naredo, Kenneth L McNally, Jesse Poland, Daniel R Bush, Hei Leung, Jan E Leach, John K McKay
Publication date
2017/2/21
Journal
Scientific reports
Volume
7
Issue
1
Pages
42839
Publisher
Nature Publishing Group UK
Description
To ensure food security in the face of population growth, decreasing water and land for agriculture, and increasing climate variability, crop yields must increase faster than the current rates. Increased yields will require implementing novel approaches in genetic discovery and breeding. Here we demonstrate the potential of field-based high throughput phenotyping (HTP) on a large recombinant population of rice to identify genetic variation underlying important traits. We find that detecting quantitative trait loci (QTL) with HTP phenotyping is as accurate and effective as traditional labor-intensive measures of flowering time, height, biomass, grain yield, and harvest index. Genetic mapping in this population, derived from a cross of an modern cultivar (IR64) with a landrace (Aswina), identified four alleles with negative effect on grain yield that are fixed in IR64, demonstrating the potential for HTP of large populations as a …
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