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D-Index
78
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27330
World Ranking
1683
National Ranking
39

Overview

Shou-Yi Chen is affiliated with the Chinese Academy of Sciences in China and conducts research primarily in the Agricultural and Biological Sciences field. Their work focuses on several specialized areas, including Plant Science, Molecular Biology, Biochemistry, Genetics, and Agronomy and Crop Science.

Their research encompasses a range of key topics within plant molecular biology and stress physiology. These include:

  • Plant Molecular Biology Research
  • Plant responses to water stress
  • Soybean genetics and cultivation
  • Postharvest Quality and Shelf Life Management
  • Plant Stress Responses and Tolerance
  • Legume Nitrogen Fixing Symbiosis
  • Lipid metabolism and biosynthesis

Shou-Yi Chen has contributed to multiple scientific publications, with frequent appearances in notable journals. The venues where they most often publish include:

  • Journal of Integrative Plant Biology
  • Nature Communications
  • New Phytologist
  • Plant Biotechnology Journal
  • The Plant Cell

Some of their recent significant papers are:

  • "Ethylene signaling in rice and Arabidopsis: New regulators and mechanisms" (2020) published in Journal of Integrative Plant Biology
  • "A transcriptional regulatory module controls lipid accumulation in soybean" (2021) published in New Phytologist
  • "Nuclear factor Y subunit GmNFYA competes with GmHDA13 for interaction with GmFVE to positively regulate salt tolerance in soybean" (2021) published in Plant Biotechnology Journal
  • "Histidine kinase MHZ1/OsHK1 interacts with ethylene receptors to regulate root growth in rice" (2020) published in Nature Communications
  • "The OsEIL1-OsERF115-target gene regulatory module controls grain size and weight in rice" (2022) published in Plant Biotechnology Journal

The scientist collaborates frequently with several researchers who have coauthored many papers alongside them. Their main coauthors are:

  • Jin-Song Zhang
  • Wan-Ke Zhang
  • Cui-Cui Yin
  • Jian-Jun Tao
  • Wei Wei

Overall, Shou-Yi Chen's research contributions cover various aspects of plant biology, particularly focusing on molecular biology related to plant stress responses, genetics of important crops like soybean, and mechanisms influencing plant growth and development.

Best Publications

  • A draft sequence of the rice genome (Oryza sativa L. ssp indica)

    Stephen A. Goff;Darrell Ricke;Tien-Hung Lan;Gernot Presting

  • AtNAC2, a transcription factor downstream of ethylene and auxin signaling pathways, is involved in salt stress response and lateral root development

    Xin-Jian He;Rui-Ling Mu;Wan-Hong Cao;Zhi-Gang Zhang

  • De novo assembly of soybean wild relatives for pan-genome analysis of diversity and agronomic traits

    Ying-hui Li;Guangyu Zhou;Jianxin Ma;Wenkai Jiang

  • Soybean WRKY-type transcription factor genes, GmWRKY13, GmWRKY21, and GmWRKY54, confer differential tolerance to abiotic stresses in transgenic Arabidopsis plants.

    Qi-Yun Zhou;Ai-Guo Tian;Hong-Feng Zou;Zong-Ming Xie

  • Melatonin enhances plant growth and abiotic stress tolerance in soybean plants

    Wei Wei;Qing Tian Li;Ya Nan Chu;Russel J. Reiter

  • SCABP8/CBL10, a Putative Calcium Sensor, Interacts with the Protein Kinase SOS2 to Protect Arabidopsis Shoots from Salt Stress

    Ruidang Quan;Huixin Lin;Imelda Mendoza;Yuguo Zhang

  • Modulation of Ethylene Responses Affects Plant Salt-Stress Responses

    Wan-Hong Cao;Jun Liu;Xin-Jian He;Rui-Ling Mu

  • Soybean NAC transcription factors promote abiotic stress tolerance and lateral root formation in transgenic plants.

    Yu-Jun Hao;Wei Wei;Qing-Xin Song;Hao-Wei Chen

  • Wheat WRKY genes TaWRKY2 and TaWRKY19 regulate abiotic stress tolerance in transgenic Arabidopsis plants.

    Can-Fang Niu;Wei Wei;Qi-Yun Zhou;Ai-Guo Tian

  • Receptor‐like kinase OsSIK1 improves drought and salt stress tolerance in rice (Oryza sativa) plants

    Shou-Qiang Ouyang;Yun-Feng Liu;Peng Liu;Gang Lei

  • Comparative analysis of transgenic rice plants obtained by Agrobacterium-mediated transformation and particle bombardment

    Shunhong Dai;Shunhong Dai;Ping Zheng;Philippe Marmey;Shiping Zhang

  • Soybean GmbZIP44, GmbZIP62 and GmbZIP78 genes function as negative regulator of ABA signaling and confer salt and freezing tolerance in transgenic Arabidopsis

    Yong Liao;Hong-Feng Zou;Wei Wei;Yu-Jun Hao

  • The Role of Ethylene in Plants Under Salinity Stress.

    Jian-Jun Tao;Hao-Wei Chen;Biao Ma;Wan-Ke Zhang

  • Identification of miRNAs and their target genes in developing soybean seeds by deep sequencing.

    Qing-Xin Song;Yun-Feng Liu;Xing-Yu Hu;Wan-Ke Zhang

  • The soybean Dof‐type transcription factor genes, GmDof4 and GmDof11, enhance lipid content in the seeds of transgenic Arabidopsis plants

    Hui-Wen Wang;Bo Zhang;Yu-Jun Hao;Jian Huang

  • Insights into salt tolerance from the genome of Thellungiella salsuginea

    Hua-Jun Wu;Zhonghui Zhang;Jun-Yi Wang;Dong-Ha Oh

  • Soybean GmMYB76, GmMYB92, and GmMYB177 genes confer stress tolerance in transgenic Arabidopsis plants.

    Yong Liao;Hong-Feng Zou;Hui-Wen Wang;Wan-Ke Zhang

  • The ethylene receptor ETR2 delays floral transition and affects starch accumulation in rice

    Hada Wuriyanghan;Bo Zhang;Wan-Hong Cao;Biao Ma

  • The Arabidopsis Chaperone J3 Regulates the Plasma Membrane H+-ATPase through Interaction with the PKS5 Kinase

    Yongqing Yang;Yongqing Yang;Yunxia Qin;Changgen Xie;Feiyi Zhao

  • Soybean DRE-binding transcription factors that are responsive to abiotic stresses

    Xue-Ping Li;Ai-Guo Tian;Guang-Zuo Luo;Zhi-Zhong Gong

Frequent Co-Authors

Jinsong Zhang
Jinsong Zhang Chinese Academy of Sciences
Qingxin Song
Qingxin Song Xi'an Jiaotong University
Chengcai Chu
Chengcai Chu South China Agricultural University
Jian Huang
Jian Huang University of Iowa
Qiang Liu
Qiang Liu Chinese Academy of Sciences
Qi Xie
Qi Xie Chinese Academy of Sciences
Yan Guo
Yan Guo University of New Mexico
Guanghou Shui
Guanghou Shui Chinese Academy of Sciences
Jinfang Chu
Jinfang Chu Chinese Academy of Sciences
Xing Wang Deng
Xing Wang Deng Peking University

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