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The blue grain trait in common wheat (Triticum aestivum L., 2n = 6x = 42, AABBDD), which is caused by blue pigments in the aleurone layer, was originally derived from the tall wheatgrass (Thinopyrum ponticum Liu & Wang = Agropyron elongatum, 2n = 10x = 70, StStStStEeEeEbEbExEx) during chromosome engineering research.
The ILs with beneficial QTL for grain trait could be used as new cultivars and as promising parental lines in rice breeding programs.
In addition to GrainsTraits.csv, each image has a result file that describes each grain trait individually in the Particles folder.
As our second example, we use another previously studied gene involved in the soft grain trait in the grasses.
Genes involved in the soft grain trait has been studied extensively in wheat, including the Hardness (Ha) locus and several Ha-like genes (Charles et al. 2009).
In the QTL interval governing the filled grain trait, we have identified 48/266 genes with nsSNPs within the targeted QTL regions.
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The genetic basis for other grain traits was also tested.
From the image analysis, many panicle structural traits and grain traits can be obtained.
The QTLs for grain traits also showed differences in position and number between two groups.
Thus, many studies have been conducted to understand the relationship between eating quality and grain traits.
We also examined morphological variations in grain traits based on population structure.
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