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浙江大学农业与生物技术学院导师教师师资介绍简介-关雪莹

本站小编 Free考研考试/2021-04-05

Epi-cotton

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2002.9-2008.7中国科学院上海植物生理生态研究所,植物分子遗传国家重点实验室,遗传学专业,博士
1998.9-2002.7 中国中央民族大学,生物化学系,生物学专业,学士

2019.11-至今 浙江大学,农业与生物技术学院,“****”研究员,博士生导师
2014.9-2019.9 南京农业大学,农学院,教授,博士生导师
2008.7-2014.7美国德州大学奥斯汀分校,University of Texas at Austin, 分子生物学系,生物信息中心,博士后

学术任职
International Cotton Genome Initiatives (ICGI),Functional Genomics Workgroup, Co-Chair, 2019-2021
Journal of Cotton Research, 资深编辑

担任以下学术期刊审稿人
Genome Biology
Molecular Plant
Trends in Biotechnology
New Phytologist
Plant Journal
Plant Biotechnology Journal
SCIENCE CHINA Life Sciences
Plant Cell Research
BMC Plant Biology
BMC Genetics
PLoS ONE
Frontiers in Plant Science
Plant Cell Research
Molecular Breeding
Theoretical and Applied Genetics
Theoretical Biology and Medical Modelling
ACSESS Books
植物学报
植物生理学报



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Ployploidization and hybridization are one of the most powerful driving strength to promote genome evolution. The ploidy level change also known as whole genome duplication (WGD) are companioned with gene expression change. The ploidy level change brought cotton fiber trait into being.\r\rGenome contains coding gene as a genetic core for life. It also contains large non-coding sequences as a reservoir of elements for fine gene expression regulation. Small RNA and long non-coding RNA (lncRNA) are two major non-coding RNAs. Small RNAs are recognized as an important mobile element to mediate the gene regulation from developmental control to communication with pathogens. We don’t know much about lncRNA in plant yet. But the transcriptional profiles of lncRNA in major crops and model plants are abundant and dynamic. We find the interspecies hybridization stimulates a burst of lncRNA transcription. Only a few of lncRNAs can survive from the genome shock of hybridization. We speculate these survived lncRNA from species to species over million years of evolution carry out important roles in plant. One by one, we are knocking down the function of these puzzles. \r\rCotton fiber is derived from the epidermis of seed. The epidermal cell type of cotton seed include the pavement cell, guard cell and fiber cell. How would these cells recognized itself is the major question we have been asking for a decade. \r
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2017-03-13 08:52:06
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•2016-present Zhejiang University, College of Agriculture and Biotechnology, Professor
\r•2014-2016 Nanjing Agricultural University, College of Agriculture, Professor
\r•2008-2014 Postdoctoral Fellow, Chen’s Lab, University of Texas at Austin. Mentor: Z. Jeffrey Chen
\r•2002-2008 Ph.D. candidate, Genetics, The Shanghai Institute of Plant Physiology and Ecology (SIPPE), Chinese Academy of Science (CAS), Shanghai, China.
\r•1998-2002 B.S. in Biology, The Central University of Nationalities in China, Beijing, China.

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xueyingguan@zju.edu.cn
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2021-01-25 07:46:49
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2002.9-2008.7中国科学院上海植物生理生态研究所,植物分子遗传国家重点实验室,遗传学专业,博士
1998.9-2002.7 中国中央民族大学,生物化学系,生物学专业,学士

2019.11-至今 浙江大学,农业与生物技术学院,“****”研究员,博士生导师
2014.9-2019.9 南京农业大学,农学院,教授,博士生导师
2008.7-2014.7美国德州大学奥斯汀分校,University of Texas at Austin, 分子生物学系,生物信息中心,博士后

学术任职
International Cotton Genome Initiatives (ICGI),Functional Genomics Workgroup, Co-Chair, 2019-2021
Journal of Cotton Research, 资深编辑

担任以下学术期刊审稿人
Genome Biology
Molecular Plant
Trends in Biotechnology
New Phytologist
Plant Journal
Plant Biotechnology Journal
SCIENCE CHINA Life Sciences
Plant Cell Research
BMC Plant Biology
BMC Genetics
PLoS ONE
Frontiers in Plant Science
Plant Cell Research
Molecular Breeding
Theoretical and Applied Genetics
Theoretical Biology and Medical Modelling
ACSESS Books
植物学报
植物生理学报



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