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OsLBD3-7 Overexpression Induced Adaxially Rolled Leaves in Rice.


ABSTRACT: Appropriate leaf rolling enhances erect-leaf habits and photosynthetic efficiency, which consequently improves grain yield. Here, we reported the novel lateral organ boundaries domain (LBD) gene OsLBD3-7, which is involved in the regulation of leaf rolling. OsLBD3-7 works as a transcription activator and its protein is located on the plasma membrane and in the nucleus. Overexpression of OsLBD3-7 leads to narrow and adaxially rolled leaves. Microscopy of flag leaf cross-sections indicated that overexpression of OsLBD3-7 led to a decrease in both bulliform cell size and number. Transcriptional analysis showed that key genes that had been reported to be negative regulators of bulliform cell development were up-regulated in transgenic plants. These results indicated that OsLBD3-7 might acts as an upstream regulatory gene of bulliform cell development to regulate leaf rolling, which will give more insights on the leaf rolling regulation mechanism.

SUBMITTER: Li C 

PROVIDER: S-EPMC4892467 | biostudies-literature | 2016

REPOSITORIES: biostudies-literature

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OsLBD3-7 Overexpression Induced Adaxially Rolled Leaves in Rice.

Li Cong C   Zou Xiaohua X   Zhang Chunyu C   Shao Qinghao Q   Liu Jun J   Liu Bin B   Li Hongyu H   Zhao Tao T  

PloS one 20160603 6


Appropriate leaf rolling enhances erect-leaf habits and photosynthetic efficiency, which consequently improves grain yield. Here, we reported the novel lateral organ boundaries domain (LBD) gene OsLBD3-7, which is involved in the regulation of leaf rolling. OsLBD3-7 works as a transcription activator and its protein is located on the plasma membrane and in the nucleus. Overexpression of OsLBD3-7 leads to narrow and adaxially rolled leaves. Microscopy of flag leaf cross-sections indicated that ov  ...[more]

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