supported by grants from the National Key R&D Program of China (2022YFD1201700);the National Science Foundation of China (U21A20208)
The Green Revolution,which took place in the 1960s,was instrumental in increasing grain yields and mitigating the world’s food crisis.Breeding semi-dwarfing crops was a critical activity that significantly improved l...
supported by grants from the National Natural Science Foundation of China (31830017 and 31521001);Chinese Academy of Sciences (XDB27030207);State Key Laboratory of Plant Genomics (SKLPG2020-22)
In response to dynamically altered environments,plants must finely coordinate the balance between growth and stress responses for their survival.However,the underpinning regulatory mechanisms remain largely elusive.Th...
supported by the grants from the Ministry of Science and Technology of the People’s Republic of China (No. 2012CB944800);the National Natural Science Foundation of China (Nos. 31271680 and 91335203)
Seed dormancy is an important agronomic trait in cereals. Using deep dormant (N22), medium dormant (ZH11), and non-dormant (G46B) rice cultivars, we correlated seed dormancy phenotypes with abscisic acid (ABA)...
supported by grants from the Ministry of Sciences and Technology of China (No. 2005CB120805 and 2006AA10A101);the National Natural Science Foundation of China (No. 30621001 and 30871512)
Gibberellin (GA) 2-oxidase plays a key role in the GA catabolic pathway through 2β-hydroxylation.In the present study,we isolated a CaMV 35S-enhancer activation tagged mutant,H032.This mutant exhibited a dominant d...