Knockout of the sugar transporter OsSTP15 enhances grain yield by improving tiller number due to increased sugar content in the shoot base of rice (Oryza sativa L.)

Author:

Li Mingjuan1ORCID,Li Hongye1,Zhu Qidong1,Liu Dong1,Li Zhen1,Chen Haifei1ORCID,Luo Jinsong1,Gong Pan1,Ismail Abdelbagi M.2ORCID,Zhang Zhenhua13ORCID

Affiliation:

1. College of Resources Hunan Agricultural University Changsha 410128 China

2. Crop and Environmental Sciences Division International Rice Research Institute Metro Manila 1301 Philippines

3. Yuelushan Laboratory Hongqi Road Changsha Hunan 410128 China

Abstract

Summary Sugar transporter proteins (STPs) play critical roles in regulating plant stress tolerance, growth, and development. However, the role of STPs in regulating crop yield is poorly understood. This study elucidates the mechanism by which knockout of the sugar transporter OsSTP15 enhances grain yield via increasing the tiller number in rice. We found that OsSTP15 is specifically expressed in the shoot base and vascular bundle sheath of seedlings and encodes a plasma membrane‐localized high‐affinity glucose efflux transporter. OsSTP15 knockout enhanced sucrose and trehalose‐6‐phosphate (Tre6P) synthesis in leaves and improved sucrose transport to the shoot base by inducing the expression of sucrose transporters. Higher glucose, sucrose, and Tre6P contents were observed at the shoot base of stp15 plants. Transcriptome and metabolome analyses of the shoot base demonstrated that OsSTP15 knockout upregulated the expression of cytokinin (CK) synthesis‐ and signaling pathway‐related genes and increased CK levels. These findings suggest that OsSTP15 knockout represses glucose export from the cytoplasm and simultaneously enhances sugar transport from source leaves to the shoot base by promoting the synthesis of sucrose and Tre6P in leaves. Subsequent accumulation of glucose, sucrose, and Tre6P in the shoot base promotes tillering by stimulating the CK signaling pathway.

Funder

Earmarked Fund for China Agriculture Research System

National Key Research and Development Program of China

Publisher

Wiley

Subject

Plant Science,Physiology

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