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YiTing Shi

Showing results (61-70 of 78) with videos related to

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Molecular Plant|April 21, 2020
Cold-Induced CBF-PIF3 Interaction Enhances Freezing Tolerance by Stabilizing the phyB Thermosensor in ArabidopsisBochen Jiang, Yiting Shi, Yue Peng, et al.
Cell|January 22, 2025
A natural variant of COOL1 gene enhances cold tolerance for high-latitude adaptation in maizeRong Zeng, Yiting Shi, Li Guo, et al.
Plant Biotechnology Journal|July 18, 2024
Genetic variation in the aquaporin TONOPLAST INTRINSIC PROTEIN 4;3 modulates maize cold toleranceRong Zeng, Xiaoyan Zhang, Guangshu Song, et al.
Nature Plants|October 14, 2022
Natural polymorphism of ZmICE1 contributes to amino acid metabolism that impacts cold tolerance in maizeHaifang Jiang, Yiting Shi, Jingyan Liu, et al.
Journal of Medicinal Chemistry|January 27, 2026
Discovery of Potent <i>o</i>-Aminobenzoamide-Based NAMPT Inhibitors for Targeting NAPRT-Deficient Gastric CancerHeng Yang, Zhiyi Li, Huiqian Peng, et al.
Journal of Genetics and Genomics = Yi Chuan Xue Bao|August 21, 2021
HITAC-seq enables high-throughput cost-effective sequencing of plasmids and DNA fragments with identityXiang Gao, Weipeng Mo, Junpeng Shi, et al.
The EMBO Journal|December 29, 2020
The calcium transporter ANNEXIN1 mediates cold-induced calcium signaling and freezing tolerance in plantsQiangbo Liu, Yanglin Ding, Yiting Shi, et al.
The Plant Cell|May 7, 2015
HEMERA Couples the Proteolysis and Transcriptional Activity of PHYTOCHROME INTERACTING FACTORs in Arabidopsis PhotomorphogenesisYongjian Qiu, Meina Li, Elise K Pasoreck, et al.
Nature|February 25, 2026
Rewiring an E3 ligase enhances cold resilience and phosphate use in maizeHuan Liao, Xiaoyun Zhao, Keyu Ren, et al.
Molecular Plant|August 3, 2024
Genetic variation in a heat shock transcription factor modulates cold tolerance in maizeLei Gao, Lingling Pan, Yiting Shi, et al.
Pageof 8

Showing results (61-70 of 78) with videos related to

Sort By:
Pageof 8
Molecular Plant|April 21, 2020
Cold-Induced CBF-PIF3 Interaction Enhances Freezing Tolerance by Stabilizing the phyB Thermosensor in ArabidopsisBochen Jiang, Yiting Shi, Yue Peng, et al.
Cell|January 22, 2025
A natural variant of COOL1 gene enhances cold tolerance for high-latitude adaptation in maizeRong Zeng, Yiting Shi, Li Guo, et al.
Plant Biotechnology Journal|July 18, 2024
Genetic variation in the aquaporin TONOPLAST INTRINSIC PROTEIN 4;3 modulates maize cold toleranceRong Zeng, Xiaoyan Zhang, Guangshu Song, et al.
Nature Plants|October 14, 2022
Natural polymorphism of ZmICE1 contributes to amino acid metabolism that impacts cold tolerance in maizeHaifang Jiang, Yiting Shi, Jingyan Liu, et al.
Journal of Medicinal Chemistry|January 27, 2026
Discovery of Potent <i>o</i>-Aminobenzoamide-Based NAMPT Inhibitors for Targeting NAPRT-Deficient Gastric CancerHeng Yang, Zhiyi Li, Huiqian Peng, et al.
Journal of Genetics and Genomics = Yi Chuan Xue Bao|August 21, 2021
HITAC-seq enables high-throughput cost-effective sequencing of plasmids and DNA fragments with identityXiang Gao, Weipeng Mo, Junpeng Shi, et al.
The EMBO Journal|December 29, 2020
The calcium transporter ANNEXIN1 mediates cold-induced calcium signaling and freezing tolerance in plantsQiangbo Liu, Yanglin Ding, Yiting Shi, et al.
The Plant Cell|May 7, 2015
HEMERA Couples the Proteolysis and Transcriptional Activity of PHYTOCHROME INTERACTING FACTORs in Arabidopsis PhotomorphogenesisYongjian Qiu, Meina Li, Elise K Pasoreck, et al.
Nature|February 25, 2026
Rewiring an E3 ligase enhances cold resilience and phosphate use in maizeHuan Liao, Xiaoyun Zhao, Keyu Ren, et al.
Molecular Plant|August 3, 2024
Genetic variation in a heat shock transcription factor modulates cold tolerance in maizeLei Gao, Lingling Pan, Yiting Shi, et al.
Pageof 8