[HTML][HTML] Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential

J Su, K Xu, Z Li, Y Hu, Z Hu, X Zheng, S Song… - Scientific Reports, 2021 - nature.com
Rice yield per plant has a complex genetic architecture, which is mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) …

[HTML][HTML] Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential

J Su, K Xu, Z Li, Y Hu, Z Hu, X Zheng, S Song… - Scientific …, 2021 - ncbi.nlm.nih.gov
Rice yield per plant has a complex genetic architecture, which is mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) …

Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential

J Su, K Xu, Z Li, Y Hu, Z Hu, X Zheng… - Scientific …, 2021 - ui.adsabs.harvard.edu
Rice yield per plant has a complex genetic architecture, which is mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) …

Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential

J Su, K Xu, C Wu, Z Li, Z Hu, X Zheng, S Song, W Tang… - 2020 - researchsquare.com
Background: Rice yield has a complex genetic architecture, which mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) and …

Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential

J Su, K Xu, Z Li, Y Hu, Z Hu, X Zheng… - Scientific …, 2021 - pubmed.ncbi.nlm.nih.gov
Rice yield per plant has a complex genetic architecture, which is mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) …

Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential.

J Su, K Xu, Z Li, Y Hu, Z Hu, X Zheng, S Song… - Scientific …, 2021 - europepmc.org
Rice yield per plant has a complex genetic architecture, which is mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) …

Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential.

J Su, K Xu, Z Li, Y Hu, Z Hu, X Zheng… - Scientific …, 2021 - search.ebscohost.com
Rice yield per plant has a complex genetic architecture, which is mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) …

[PDF][PDF] Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential

J Su, K Xu, C Wu, Z Li, Z Hu, X Zheng, S Song, W Tang… - scholar.archive.org
Background: Rice yield has a complex genetic architecture, which mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) and …

Genome-wide association study and Mendelian randomization analysis provide insights for improving rice yield potential

J Su, K Xu, C Wu, Z Li, Z Hu, X Zheng, S Song, W Tang… - 2020 - europepmc.org
Background: Rice yield has a complex genetic architecture, which mainly determined by its
three component traits: the number of grains per panicle (GPP), kilo-grain weight (KGW) and …