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周传恩
(教授)
博士生导师 硕士生导师
教师姓名:周传恩
教师拼音名称:zhouchuanen
入职时间:2013-07-01
所在单位:生命科学学院
性别:男
职称:教授
在职信息:在职
论文成果
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[33] 周传恩 and 韩璐. STM/BP-Like KNOXI Is Uncoupled from ARP in the Regulation of Compound Leaf Development in Medicago truncatula. Plant Cell, 26, 1464, 2014.
[34] 夏光敏 , 周传恩 and 韩璐. Ginsenoside Rb1 in asymmetric somatic hybrid calli of Daucus carota with Panax quinquefolius. Plant Cell Reports, 2009.
[35] 周传恩 and 赵阳. AGLF provides C-function in floral organ identity through transcriptional regulation of AGAMOUS in Medicago truncatula.. 《PNAS》, 2019.
[36] 周传恩 and 韩璐. From model to crop: functional analysis of a STAY-GREEN gene in the model legume Medicago truncatula and effective use of the gene for alfalfa (M. sativa) improvement. plant physiology, 157, 1483, 2011.
[37] 周传恩 and 韩璐. STM/BP-Like KNOXI Is Uncoupled from ARP in the Regulation of Compound Leaf Development in Medicago truncatula. Plant Cell, 26, 1464, 2014.
[38] 周传恩 and 韩璐. Ginsenoside Rb1 in asymmetric somatic hybrid calli of Daucus carota with Panax quinquefolius. Plant Cell Reports, 2009.
[39] 周传恩 and 赵阳. AGLF provides C-function in floral organ identity through transcriptional regulation of AGAMOUS in Medicago truncatula.. 《PNAS》, 2019.
[40] 周传恩 and 王洪峰. Genome-Wide Identification of TCP Family Transcription Factors in Medicago truncatula Reveals Significant Roles of miR319-Targeted TCPs in Nodule Development. Frontiers in plant science, 9, 2018.
[41] 夏光敏 , 周传恩 and 韩璐. Ginsenoside Rb1 in asymmetric somatic hybrid calli of Daucus carota with Panax quinquefolius. Plant Cell Reports, 2009.
[42] 周传恩 and 韩璐. From model to crop: functional analysis of a STAY-GREEN gene in the model legume Medicago truncatula and effective use of the gene for alfalfa (M. sativa) improvement. plant physiology, 157, 1483, 2011.
[43] 周传恩 and 韩璐. STM/BP-Like KNOXI Is Uncoupled from ARP in the Regulation of Compound Leaf Development in Medicago truncatula. Plant Cell, 26, 1464, 2014.
[44] 韩璐. From model to crop: functional analysis of a STAY-GREEN gene in the model legume Medicago truncatula and effective use of the gene for alfalfa (M. sativa) improvement. Plant Physiology, 157, 2011.
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