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Rice is the most important crop plant and serves as a model for cereal genomics.
Germination of barley grain is central to the malting industry and is a valuable model for cereal grain germination.
Rice is the most important staple food for more than half of the world's population and an important model for cereal crops.
The coefficients obtained were statistically different from those of the Dutch Drift Model for cereal cultivation and from those of the German Drift Model for field crops.
Rice has become a model for cereal genomics [16] in large part because its small 389 Mb genome has been sequenced [17], [18].
Rice is a model for cereal genomic and genetics studies, due to the availability of the genome sequences from two varieties, extensive gene annotation, and mutant resources [ 20- 24].
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The advantages and disadvantages of both indirect and direct methods have already been evaluated in many species, including the model for cereals, rice [ 21] and barley [ 22, 23].
Today, the number of available three-dimensional structure models for cereal seed proteins is extremely limited.
Rice (Oryza sativa L). is a monocot model crop for cereal molecular biology.
Rice (Oryza sativa L). is a valuable model system for cereal plant genetics due to its sequenced and annotated genome, capacity for transformation, and similarity to other major cereal crop species.
With its rich genetic heritage and well-characterized morphology, Zea mays (L. ssp. mays) is a very important crop and a model system for cereal genetics and development.
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