Landraces of temperate japonica rice have superior alleles for improving culm strength associated with lodging resistance

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Correct detection rate for the first quantitative trait nucleotide

Figure 1 from Engineering the lodging resistance mechanism of post-Green Revolution rice to meet future demands

Frontiers Genome-wide association studies for a comprehensive understanding of the genetic architecture of culm strength and yield traits in rice

Engineering the lodging resistance mechanism of post-Green Revolution rice to meet future demands

New approach for rice improvement using a pleiotropic QTL gene for lodging resistance and yield

PDF) Identification of Genomic Regions for Deep-Water Resistance

PDF) Landraces of temperate japonica rice have superior alleles for improving culm strength associated with lodging resistance

Frontiers Unveiling the genetic architecture for lodging resistance in rice (Oryza sativa. L) by genome-wide association analyses

Identification of Novel Quantitative Trait Loci for Culm Thickness of Rice Derived from Strong-Culm Landrace in Japan, Omachi, Rice

Identification of Genomic Regions for Deep-Water Resistance in

Lodging resistance of rice plants studied from the perspective of culm mechanical properties, carbon framework, free volume, and chemical composition

Unrooted phylogenetic tree plot for four unmixed populations

Lodging resistance of rice plants studied from the perspective of culm mechanical properties, carbon framework, free volume, and chemical composition

PDF) Potential of rice landraces with strong culms as genetic

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