Proteomics

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A proteomic view of artificially aged seeds of three rice lines of Kasalath with different anti-aging ability guided by miR164c


ABSTRACT: MicroRNAs (miRNAs) play important roles in various aspects of plant physiology and metabolism. The expression level of miR164c is negatively correlated with seed vigor in rice (Oryza sativa L.); however, the mechanism of seed vigor regulation by miR164c remains unknown. Here, we studied the proteomic difference between artificially aged seeds of the wild-type rice cultivar ‘Kasalath’ and its transgenic derivatives, miR164c-silenced line (MIM164c) and miR164c overexpression line (OE164c), with significant differences in anti-aging capacity. We hope that it can provide new insights into the mechanism of miRNA on regulating seed vigor.

INSTRUMENT(S): Q Exactive

ORGANISM(S): Oryza Sativa (rice)

TISSUE(S): Plant Cell, Embryo

SUBMITTER: Kerui Huang  

LAB HEAD: Xiaocheng Jiang

PROVIDER: PXD031352 | Pride | 2022-06-09

REPOSITORIES: Pride

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Publications

Degradome sequencing reveals an integrative miRNA-mediated gene interaction network regulating rice seed vigor.

Zhou Shiqi S   Huang Kerui K   Zhou Yan Y   Hu Yingqian Y   Xiao Yuchao Y   Chen Ting T   Yin Mengqi M   Liu Yan Y   Xu Mengliang M   Jiang Xiaocheng X  

BMC plant biology 20220601 1


<h4>Background</h4>It is well known that seed vigor is essential for agricultural production and rice (Oryza sativa L.) is one of the most important crops in the world. Though we previously reported that miR164c regulates rice seed vigor, but whether and how other miRNAs cooperate with miR164c to regulate seed vigor is still unknown.<h4>Results</h4>Based on degradome data of six RNA samples isolated from seeds of the wild-type (WT) indica rice cultivar 'Kasalath' as well as two modified lines in  ...[more]

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