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FT/FD-GRF5 repression loop directs growth to increase soybean yield

biorxiv. 2018; 
Kun Xu, Xiao-Mei Zhang, Guolong Yu, Mingyang Lu, Chunyan Liu, Haifeng Chen, Jinlong Zhu, Fulu Chen, Zhiyuan Cheng, Penghui Huang, Xinan Zhou, Qingshan Chen, Xianzhong Feng, Yuchen Miao, Liangyu Liu, Iain Searle, Yong-Fu Fu
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Recombinant Proteins The reactions were separated on a 5% polyacrylamide gel for GmFDL5/GmGRF5-1 complex, or an 8% precast SurePageTM Gel (GenScript, China) for GmGRF5-1/GmFTL3.F4, GmGRF5-1/GmGTG1.F5 and GmGRF5-1/GmTAA1.1F6 complex binding assays. The running buffer used was TBE (pH 8.0) for GmFTL5 proteins or TBE (pH 8.75) for GmGRF5-1 proteins. Detection of biotin-labeled DNA was performed by chemiluminescence using a ChemiDoc-It Imaging System (UVP, Cambridge, UK). Get A Quote

摘要

Major advances in crop yield are eternally needed to cope with population growth. To balance vegetative and reproductive growth plays an important role in agricultural yield. To extend vegetative phase can increase crop yield, however, this strategy risks loss of yield in the field as crops may not mature in time before winter come. Here, we identified a repression feedback loop between GmFTL/GmFDL and GmGRF5-1 (Glycine-max-Flowering-Locus-T/Glycine-max-FDL and Glycine-max-GROWTH-REGULATING-FACTOR5-1), which functions as a pivotal regulator in balancing vegetative and reproductive phases in soybean. GmFTL/GmFDL and GmGRF5-1 directly repress gene expression each other. Additionally, GmGRF5-1 enhances vegetative ... More

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