IGDB in Media
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Glycosylphosphatidylinositol Anchoring Regulates Plant Cell Wall Mechanics
05 Sep 2022Researchers led by Prof. ZHOU Yihua from the Institute of Genetics and Developmental Biology of the Chinese Academy of Sciences (CAS) recently reported that BRITTLE CULM16, a glycosylphosphatidylinositol anchor lipid remodelase, is required for ta...
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Discovery of protein that regulates plant cell wall mechanics
02 Sep 2022Researchers led by Prof. Zhou Yihua from the Institute of Genetics and Developmental Biology of the Chinese Academy of Sciences (CAS) recently reported that BRITTLE CULM16, a glycosylphosphatidylinositol anchor lipid remodelase, is required for ta...
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Researchers Uncover New Crosstalk between Phytohormones Ethylene and Auxin
02 Sep 2022Researchers led by Prof. Zhang Jinsong from the Institute of Genetics and Developmental Biology (IGDB) of the Chinese Academy of Sciences (CAS), devoted to the studies of ethylene signaling pathway and its regulation in rice, have recently disclos...
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Endogenous Ceramide Phosphoethanolamine Modulates Circadian rhythm and Longevity in Drosophila
04 Aug 2022Prof. Shui Guanghou's team from the Institute of Genetics and Developmental Biology (IGDB) of the Chinese Academy of Sciences presented new findings pertaining to how endogenous ceramide phosphoethanolamine modulate circadian rhythm and longevity ...
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Endogenous Ceramide Phosphoethanolamine Modulates Circadian rhythm and Longevity in Drosophila
04 Aug 2022Prof. Shui Guanghou's team from the Institute of Genetics and Developmental Biology (IGDB) of the Chinese Academy of Sciences presented new findings pertaining to how endogenous ceramide phosphoethanolamine modulate circadian rhythm and longevity ...
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Molecular Basis of High Nitrogen Use Efficiency of Wheat Cultivar
01 Aug 2022A research team generated a high-quality genome of Kenong 9204 (KN9204), a high nitrogen use efficiency (NUE) wheat cultivar bred at IGDB, and illustrated its possible molecular mechanisms driving the high NUE by comparative genome analysis.