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Su-Sheng Gan

Showing results (1-10 of 16) with videos related to

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Plant, Cell & Environment|October 13, 2011
Convergence and divergence in gene expression profiles induced by leaf senescence and 27 senescence-promoting hormonal, pathological and environmental stress treatmentsYongfeng Guo, Su-Sheng Gan
Plant Physiology|December 21, 2011
An abscisic acid-AtNAP transcription factor-SAG113 protein phosphatase 2C regulatory chain for controlling dehydration in senescing Arabidopsis leavesKewei Zhang, Su-Sheng Gan
Journal of Experimental Botany|June 18, 2014
Translational researches on leaf senescence for enhancing plant productivity and qualityYongfeng Guo, Su-Sheng Gan
Molecular Horticulture|October 30, 2023
The ABA-AtNAP-SAG113 PP2C module regulates leaf senescence by dephoshorylating SAG114 SnRK3.25 in ArabidopsisGaopeng Wang, Xingwang Liu, Su-Sheng Gan
Plant Physiology|December 20, 2012
SAUR36, a small auxin up RNA gene, is involved in the promotion of leaf senescence in ArabidopsisKai Hou, Wei Wu, Su-Sheng Gan
Journal of Experimental Botany|October 16, 2012
Arabidopsis AtNAP regulates fruit senescenceXiaohong Kou, Christopher B Watkins, Su-Sheng Gan
The Plant Journal : for Cell and Molecular Biology|October 20, 2011
An ABA-regulated and Golgi-localized protein phosphatase controls water loss during leaf senescence in ArabidopsisKewei Zhang, Xiuying Xia, Yanyan Zhang, et al.
Molecular Horticulture|October 3, 2023
A positive feedback regulatory loop, SA-AtNAP-SAG202/SARD1-ICS1-SA, in SA biosynthesis involved in leaf senescence but not defense responseYaxin Wang, Bin Liu, Youzhen Hu, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 21, 2013
Salicylic acid 3-hydroxylase regulates Arabidopsis leaf longevity by mediating salicylic acid catabolismKewei Zhang, Rayko Halitschke, Changxi Yin, et al.
Molecular Horticulture|October 3, 2023
The leaf senescence-promoting transcription factor AtNAP activates its direct target gene CYTOKININ OXIDASE 3 to facilitate senescence processes by degrading cytokininsYouzhen Hu, Bin Liu, Huazhong Ren, et al.
Pageof 2

Showing results (1-10 of 16) with videos related to

Sort By:
Pageof 2
Plant, Cell & Environment|October 13, 2011
Convergence and divergence in gene expression profiles induced by leaf senescence and 27 senescence-promoting hormonal, pathological and environmental stress treatmentsYongfeng Guo, Su-Sheng Gan
Plant Physiology|December 21, 2011
An abscisic acid-AtNAP transcription factor-SAG113 protein phosphatase 2C regulatory chain for controlling dehydration in senescing Arabidopsis leavesKewei Zhang, Su-Sheng Gan
Journal of Experimental Botany|June 18, 2014
Translational researches on leaf senescence for enhancing plant productivity and qualityYongfeng Guo, Su-Sheng Gan
Molecular Horticulture|October 30, 2023
The ABA-AtNAP-SAG113 PP2C module regulates leaf senescence by dephoshorylating SAG114 SnRK3.25 in ArabidopsisGaopeng Wang, Xingwang Liu, Su-Sheng Gan
Plant Physiology|December 20, 2012
SAUR36, a small auxin up RNA gene, is involved in the promotion of leaf senescence in ArabidopsisKai Hou, Wei Wu, Su-Sheng Gan
Journal of Experimental Botany|October 16, 2012
Arabidopsis AtNAP regulates fruit senescenceXiaohong Kou, Christopher B Watkins, Su-Sheng Gan
The Plant Journal : for Cell and Molecular Biology|October 20, 2011
An ABA-regulated and Golgi-localized protein phosphatase controls water loss during leaf senescence in ArabidopsisKewei Zhang, Xiuying Xia, Yanyan Zhang, et al.
Molecular Horticulture|October 3, 2023
A positive feedback regulatory loop, SA-AtNAP-SAG202/SARD1-ICS1-SA, in SA biosynthesis involved in leaf senescence but not defense responseYaxin Wang, Bin Liu, Youzhen Hu, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 21, 2013
Salicylic acid 3-hydroxylase regulates Arabidopsis leaf longevity by mediating salicylic acid catabolismKewei Zhang, Rayko Halitschke, Changxi Yin, et al.
Molecular Horticulture|October 3, 2023
The leaf senescence-promoting transcription factor AtNAP activates its direct target gene CYTOKININ OXIDASE 3 to facilitate senescence processes by degrading cytokininsYouzhen Hu, Bin Liu, Huazhong Ren, et al.
Pageof 2