Genome-Wide Linkage Mapping of Root System Architecture-Related Traits Under Drought Stress in Common Wheat (Triticum aestivum L.)
Yirong Jin, Guiju Chen, Xiaodong Qiu, Fuyan Wang, Hui Jin, Liang Zhang, Cheng Liu, Jianjun Liu, Wenjing Li, Peng Liu

TL;DR
This study identifies genetic loci and markers in wheat that improve drought tolerance by analyzing root system traits under stress.
Contribution
The study discovers novel QTLs and KASP markers for drought-related root traits in wheat, useful for breeding.
Findings
Five QTLs for drought-related root traits were identified, with three being novel.
Five KASP markers were developed and validated in a diverse panel of wheat varieties.
Eight candidate genes related to plant hormones and transporters were identified.
Abstract
Drought severely threatens wheat production. Under drought conditions, root system architecture (DRSA)-related traits in common wheat significantly affect wheat production. In China, Zhoumai16 is a high-yield winter wheat variety in the Huang-Huai wheat region. It is suitable for high-fertilizer and high-water cultivation and has moderate drought tolerance. DK171 is a newly developed high-yield and stress-tolerant variety, with higher drought tolerance. Thus, identifying genetic loci associated with DRSA-related traits from DK171 and developing available molecular markers are of great importance for enhancing wheat stress tolerance breeding. In this study, DRSA-related traits, including the total root dry weight (DDRW), total root length (DTRL), total root area (DTRA), and the number of root tips (DNRT) under drought stress, were assessed using the hydroponic system in Zhoumai16/DK171…
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Taxonomy
TopicsWheat and Barley Genetics and Pathology · Plant nutrient uptake and metabolism · Rice Cultivation and Yield Improvement
