<div class> <p> <br/> 姓名:万秋红<br/> 性别:女<br/> 所在学院:生命科学学院<br/> 职称:副教授<br/> <br/> 工作研究领域:<br/> </strong> 保护遗传学,分子生态学<br/> <br/> 个人简介:<br/> </strong> 1994.9~1998.7: 江西南昌大学,本科学习, 生物工程专业;<br/> 1998.9~2000.1: 浙江大学,硕士学习,生物物理专业;<br/> 2000.2~2003.7: 浙江大学,提前攻博,动物学专业;<br/> 2003.7~至今: 浙江大学,生命科学学院,工作.<br/> 2000.7~8: 日本九州大学农学部,访问学生;<br/> 2002.5~6: 美国华盛顿国家公园,濒危野生动物圈养种群管理培训<br/> <br/> 工作研究项目:<br/> </strong> 1.濒危物种人工种群的复壮机理<br/> 2.大熊猫MHC基因II类分子的多态性与肺炎感染之间的关系20061201<br/> 3.野生动物基因收集保持20071231<br/> 4.野生动物基因收集保持2006-12-18<br/> 5.大熊猫MHC基因II类分子的多态性与肺炎感染之间的关系国家自然科学基金项目 2006-12-31<br/> 6.大熊猫MHC的多样性与生存力的相关性及保护对策研究国家林业局 20071230<br/> 7.大熊猫MHC的多样性与生存力的相关性及保护对策研究国务院其他部门 2007-12-31<br/> 8.濒危野生动物保护遗传学重点实验室杭州野生动物世界有限责任公司 20051231<br/> 9.大熊猫性选择机制及其保护策略研究20071231<br/> 10.珍稀濒危动物种质资源库的维持技术及遗传多样性评价20051231<br/> 11.长江中华鲟等5种鱼类遗传多样性研究20011231<br/> <br/> 发表论文:<br/> </strong>1.Microsatellite Analysis of Genetic Variation and Population Subdivision for the Black Muntjac, Muntiacus crinifrons Microsatellite Analysis of Genetic Variation and Population Subdivision for the Black Muntjac, Mu Biochemical Genetics<>, 20071100Wu HL, Wan QH, Fang SG<br/> 2.Giant panda BAC library construction and assembly of a 650-kb contig spanning major histocompatibility complex class II regionGiant panda BAC library construction and assembly of a 650-kb contig spanning major histocompatibiliBMC genomics<8>, 20070700Zeng CJ, Pan HJ, Gong SB, Yu JQ, Wan QH, Fang SG<br/> 3.Development and characterization of 15 novel microsatellite markers from forest musk deer (Moschus berezovskii)Development and characterization of 15 novel microsatellite markers from forest musk deer (Moschus b Conservation Genetics<>, 20070700Zhao SS, Chen X, Fang SG, Wan QH<br/> 4.Low major histocompatibility complex class II DQA diversity in the Giant Panda (Ailuropoda melanoleuca)Low major histocompatibility complex class II DQA diversity in the Giant Panda (Ailuropoda melanoleu BMC genetics<4>, 20070400Zhu L, Ruan XD, Ge YF, Wan QH, Fang SG<br/> 5.Nuclear microsatellite DNA analysis of genetic diversity in captive populations of Chinese water deer獐圈养种群的微卫星分析 Small Ruminant Research67<>, 20070100Hu J,Fang SG, Wan QH<br/> 6.Reliable genetic analyses based on formalin-fixed materials: a new noninvasive sampling perspective for the giant panda用福尔马林固定材料进行可靠分析:大熊猫非损伤性取样的新观点 Conservation Genetics<7>, 20060600Wan QH,Yu JQ,Yong YG,Fang SG<br/> 7.Population Structure and Gene Flow among Wild Populations of the Black Muntjac (Muntiacus crinifrons) Based on Mitochondrial DNA Control Region Sequences野生黑麂的种群结构和基因流<br/> Zoological Science<23>, 20060500Wu HL,Wan QH,Fang SG<br/> 8.Genetic diversity of Chinese water deer (Hydropotes inermis inermis): implications for conservation獐的遗传多样性分析:保护建议<br/> Biochemical Genetics44<>, 20060500Hu J,Fang SG,Wan QH<br/> 9.Major histocompatibility complex class II variation in the giant panda (Ailuropoda melanoleuca)大熊猫II类MHC基因的多态性研究(IF=4.375)<br/> Molecular Ecology15<>, 20060500Wan QH,Zhu L,Wu H,Fang SG<br/> 10.Development of novel microsatellite loci and assessment of genetic diversity in the endangered Crested Ibis, Nipponia Nippon朱鹮微卫星位点的分离和遗传多样性评估<br/> Conservation Genetics7<1>, 20060201He LP,Wan QH,Fang SG,Xi YM<br/> 11.Evolutionary history and current population relationships of the chiru (Pantholops hodgsonii) inferred from mtDNA variation基于线粒体DNA推断藏羚羊的种群历史和遗传结构<br/> Journal of Mammalogy86<5 >, 20051001Ruan XD,He PJ,Zhang JL,Wan QH,Fang SG<br/> 12.A family net of giant pandas in the Tangjiahe Naturals Reserves: Assessment of current individuals migration唐家河自然保护区的大熊猫家庭网络图:当代基因流的评估<br/> Chinese Science Bulletin50<17 >, 20050900 Wan QH,Fang SG,Li JG,Zhang LM,Ou WF,Xian FH,Chen WL<br/> 13.Assignment of the giant panda MHC class II gene cluster to chromosome 9q by fluorescence in situ hybridization荧光原位杂交揭示大熊猫II类MHC基因定位于9号染色体长臂<br/> Cytogenetic and Genome Research109<4>, 20050500Zeng CJ, Yu JQ, Pan HJ, Wan QH, Fang SG<br/> 14.A new subspecies of giant panda (Ailuropoda melanoleuca) from Shaanxi, China大熊猫新亚种<br/> Journal of Mammalogy86<2>, 20050400Wan QH, Wu H, Fang SG<br/> 15.Application of mitochondrial DNA sequence analysis in the forensic identification of Chinese sika deer subspecies运用线粒体DNA序列信息进行梅花鹿亚种的法医鉴定<br/> Forensic Science International148<2-3>, 20050300Wu H, Wan QH, Fang SG<br/> 16.Two genetically distinct units of the Chinese sika deer (Cervus nippon): analyses of mitochondrial DNA variation梅花鹿两个不同的遗传单元:线粒体DNA变异分析<br/> BIOLOGICAL CONSERVATION119<2>, 20040900Wu H, Wan QH, Fang SG<br/> 17.Which genetic marker for which conservation genetics issue?哪一种遗传标记处理哪一类保护遗传学问题?(IF=3.743)<br/> ELECTROPHORESIS25<14>, 20040700Wan QH, Wu H, Fujihara T, Fang SG<br/> 18.Loss of genetic variation in giant panda due to limited population and habitat fragmentation 小种群和栖息地片段化导致大熊猫遗传多样性丢失<br/> JOURNAL OF APPLIED ANIMAL RESEARCH24<2>, 20031200Fang SG, Wan QH, Fujihara T<br/> 19.Use of oligonucleotide fingerprinting and faecal DNA in identifying the distribution of the Chinese tiger (Panthera tigris amoyensis Hilzheimer)运用寡核甘酸指纹技术和 粪便DNA鉴定华南虎的分布<br/> BIODIVERSITY AND CONSERVATION12<8>, 20030800Wan QH, Fang SG, Chen GF, Wang ZM, Ding P, Zhu MY, Chen KS, Yu JH, Zhao YP<br/> 20.Species-specific "fingerprints" of deer in China 中国鹿科动物物种特异性指纹<br/> BIODIVERSITY AND CONSERVATION12<6>, 20030600Wan QH, Fanga SG<br/> 21.The loss of genetic diversity in Dabry\’s sturgeon (Acipenser dabryanus, Dumeril) as revealed by DNA fingerprinting 指纹技术揭示达氏鲟遗传多样性丢失<br/> AQUATIC CONSERVATION-MARINE AND FRESHWATER ECOSYSTEMS13<3>, 20030515Wan QH, Fang SG, Li YN<br/> 22.Genetic differentiation and subspecies development of the giant panda as revealed by DNA fingerprinting指纹技术揭示大熊猫遗传分化和亚种形成(IF=3.743)<br/> ELECTROPHORESIS24<9>, 20030500Wan QH, Fang SG, Wu H, Fujihara T<br/> 23.A simple DNA extraction and rapid specific identification technique for single cells and early embryos of two breeds of Bos taurus 黄牛两种品系的单细胞和早期胚胎的DNA快速提取和鉴定技术<br/> ANIMAL REPRODUCTION SCIENCE77<1-2>, 20030500Wan QH, Qian KX, Fang SG<br/> 24.The influence of the Gezhouba Reservoir on the genetic diversity of the Chinese sturgeon Acipenser sinensis葛洲坝水库对中华鲟遗传多样性的影响<br/> JOURNAL OF FRESHWATER ECOLOGY18<1>, 20030300Wan QH, Fanga SG<br/> 25.Application of species-specific polymerase chain reaction in the forensic identification of tiger species物种特异性PCR在老虎法医鉴定中的运用<br/> FORENSIC SCIENCE INTERNATIONAL131<1>, 20030100Wan QH, Fang SG<br/> 26.A new oligonucleotide probe for the giant panda大熊猫一新指纹探针<br/> MOLECULAR ECOLOGY NOTES2<3>, 20020900Fang SG, Wan QH, Fujihara N<br/> 27.Formalin removal from archival tissue by critical point drying 临界点干燥祛除馆藏标本的福尔马林<br/> BIOTECHNIQUES33<3>, 20020900Fang SG, Wan QH, Fujihara N<br/> 28.Reduced genetic diversity in a breeding population of the chinese sucker (Myxocyrinus asiaticus Bleeker) as revealed by DNA fingerprinting指纹技术表明胭脂鱼圈养种群具有低的遗传多样性<br/> JOURNAL OF FRESHWATER ECOLOGY17<2>, 20020600Wan QH, Fang SG<br/> 29.Genetic diversity of the giant panda (Ailuropoda melanoleuca) between big and small populations大熊猫的大种群与小种群间的遗传多样性<br/> JOURNAL OF APPLIED ANIMAL RESEARCH21<1>, 20020300Fang SG, Wan QH, Fujihara N<br/> 30.A genetic fingerprinting test for identifying carcasses of protected deer species in China用指纹技术鉴定中国保护物种獐<br/> Biological Conservation103<3>, 20020300Fang SG, Wan QH </p> </div>