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相輝

研究員/Research Fellow

華南師范大學(xué) 廣東省昆蟲發(fā)育生物學(xué)與技術(shù)重點(diǎn)實(shí)驗(yàn)室,生命科學(xué)學(xué)院,昆蟲科學(xué)與技術(shù)研究所

相輝,女,研究員,博士生導(dǎo)師。2000年本科畢業(yè)于西北大學(xué),2003年碩士畢業(yè)與中國科學(xué)院西雙版納熱帶植物園,2008年于中國科學(xué)院上海植物生理生態(tài)研究所獲得博士學(xué)位,2010年于中國科學(xué)院昆明動(dòng)物研究所博士后出站,隨后在中科院昆明動(dòng)物研究所遺傳資源與進(jìn)化國家重點(diǎn)實(shí)驗(yàn)室任副研究員,項(xiàng)目研究員。20163月作為青年拔尖人才全職引進(jìn)華南師范大學(xué)。2011年入選“中國科學(xué)院青年創(chuàng)新促進(jìn)會(huì)”首批會(huì)員。2015年獲得”云南省學(xué)術(shù)與技術(shù)帶頭人后備人才”項(xiàng)目。主要以進(jìn)化基因組學(xué)及轉(zhuǎn)錄組學(xué)手段,聯(lián)合CRISPR/Cas9基因編輯技術(shù)等的功能研究,深入開展家蠶人工選擇機(jī)制、泌絲動(dòng)物繭絲進(jìn)化機(jī)制等研究,并拓展至鱗翅目害蟲的入侵機(jī)制研究。共發(fā)表SCI論文30余篇,其中以第一或通訊(含共同通訊)作者在Nature BiotechnologyNature Ecology and Evolution,Molecular Biology and EvolutionPloS Genetics等期刊發(fā)表論文21篇。主持973計(jì)劃課題、國防科技創(chuàng)新特區(qū)項(xiàng)目、中國科學(xué)院西部之光人才培養(yǎng)計(jì)劃重點(diǎn)項(xiàng)目等項(xiàng)目11項(xiàng)。獲得省級科技獎(jiǎng)勵(lì)兩項(xiàng)。擔(dān)任昆蟲學(xué)會(huì)基因組學(xué)專業(yè)委員會(huì)青年委員、廣東省遺傳學(xué)會(huì)青年委員會(huì)委員,任Frontiers in Genetics review editor, PLOS Genetics guest editor, Genetics, DNA research, Disease Models & Mechanisms, Insect ScienceBMC Genomics等期刊論文審稿。

 

個(gè)人主頁:http://life.scnu.edu.cn/insectlab/researchTeam/jiaoshou/yanjiuyuan/

團(tuán)隊(duì) Silkroad Miniclub: http://www.1061937.com/team/silkroad

受教育經(jīng)歷

1996/09-2000/07, 西北大學(xué),生物系,學(xué)士

2000/09-2003/07,中國科學(xué)院西雙版納熱帶植物園,碩士

2004/09-2008/03,中國科學(xué)院上海植物生理生態(tài)研究所,博士


研究工作經(jīng)歷

2003/07-2004/08,中國科學(xué)院上海植物生理生態(tài)研究所,研究助理

2008/04-2010/10,中國科學(xué)院昆明動(dòng)物研究所,遺傳資源與進(jìn)化國家重點(diǎn)實(shí)驗(yàn)室馬普進(jìn)化基因組學(xué)研究組,博士后

2010/11-2012/03,中國科學(xué)院昆明動(dòng)物研究所,遺傳資源與進(jìn)化國家重點(diǎn)實(shí)驗(yàn)室馬普進(jìn)化基因組學(xué)研究組,副研究員

2012/03-2016/03,中國科學(xué)院昆明動(dòng)物研究所,遺傳資源與進(jìn)化國家重點(diǎn)實(shí)驗(yàn)室馬普進(jìn)化基因組學(xué)研究組,副研究員,碩士研究生導(dǎo)師

2016/04-現(xiàn)在,華南師范大學(xué),研究員


相輝,女,教授,博士生導(dǎo)師。2000年本科畢業(yè)于西北大學(xué),2003年碩士畢業(yè)與中國科學(xué)院西雙版納熱帶植物園,2008年于中國科學(xué)院上海植物生理生態(tài)研究所獲得博士學(xué)位,2010年于中國科學(xué)院昆明動(dòng)物研究所博士后出站,隨后在中科院昆明動(dòng)物研究所遺傳資源與進(jìn)化國家重點(diǎn)實(shí)驗(yàn)室任副研究員,項(xiàng)目研究員。20163月作為青年拔尖人才全職引進(jìn)華南師范大學(xué)。2011年入選“中國科學(xué)院青年創(chuàng)新促進(jìn)會(huì)”首批會(huì)員。2015年獲得”云南省學(xué)術(shù)與技術(shù)帶頭人后備人才”項(xiàng)目。主要以進(jìn)化基因組學(xué)及轉(zhuǎn)錄組學(xué)手段,聯(lián)合CRISPR/Cas9基因編輯技術(shù)等的功能研究,深入開展家蠶人工選擇機(jī)制、泌絲動(dòng)物繭絲進(jìn)化機(jī)制等研究,并拓展至鱗翅目害蟲的入侵機(jī)制研究。共發(fā)表SCI論文30余篇,其中以第一或通訊(含共同通訊)作者在Nature BiotechnologyNature Ecology and Evolution,Molecular Biology and EvolutionPloS Genetics等期刊發(fā)表論文21篇。主持973計(jì)劃課題、國防科技創(chuàng)新特區(qū)項(xiàng)目、中國科學(xué)院西部之光人才培養(yǎng)計(jì)劃重點(diǎn)項(xiàng)目等項(xiàng)目11項(xiàng)。獲得省級科技獎(jiǎng)勵(lì)兩項(xiàng)。擔(dān)任昆蟲學(xué)會(huì)基因組學(xué)專業(yè)委員會(huì)青年委員、廣東省遺傳學(xué)會(huì)青年委員會(huì)委員,任Frontiers in Genetics review editor, PLOS Genetics guest editor, Genetics, DNA research, Disease Models & Mechanisms, Insect Science、BMC Genomics等期刊論文審稿。


第一或通訊(含合作通訊)作者論文

1.     Wu F, Niu KK, Cui Y, Li CC, Lyu M, Ren YD, Chen YF, Deng HM, Huang LH, Zheng SC, Liu L, Wang J, Song QS*, Xiang H*, Feng QL*. Genome-wide analysis of DNA G-quadruplex motifs across 37 species provides insights into G4 evolution. Communications Biology (In press)

2.     Zhou SY, Dong QL, Zhu KS, Wang M, Gao L*, Chen X*, Xiang H*. 2021. Long-read transcriptomic analysis of orb-weaving spider Araneus Ventricosus indicates transcriptional diversity of spidroins. International Journal of Biological Macromolecules Volume 168(31)2021: 395-402 (doi.org/10.1016/j.ijbiomac.2020.11.182)

3.     Wang M, Lin YJ, Zhou SY, Cui Y, Feng QL, Yan W*, Xiang H* . Genetic mapping of climbing and mimicry: two behavioral traits degraded during silkworm domestication. Front. Genet.. DOI: 10.3389/fgene.2020.566961

4.     Cui Y#, Ren YD#, Lyu M, Zheng SC, Feng QL, Xiang H*. Genomic divergences between the two polyphagous Spodoptera relatives provide cues for successful invasion of the fall armyworm. 2020, Insect Science. 27: 1257-1265

5.     Zhu YN#, Wang LZ#, Li CC, Cui Y, Wang M, Lin YJ, Zhao RP, Wang W, Xiang H*. Artificial Selection on Storage Protein 1 Possibly Contributes to Increase of Hatchability during Silkworm Domestication. 2019, Plos Genet. 15(1): e1007616

6.     Xiang H#,Liu XJ#, Li MW#,Zhu YN, Wang LZ, Cui Y, Liu LY, Fang G, Qian HY, Xu AY, Wang W and Zhan S. The evolutionary road from wild moth to domestic silkworm. 2018, Nat Ecol Evol 2(8): 1268-1279.

7.     Cui Y#, Zhu YN#, Lin YJ, Chen L, Feng QL, Wang W*, Xiang H*. New insight into the mechanism underlying the silk gland biological process by knocking out fibroin heavy chain in the silkworm. 2018, BMC Genomics 19: 215

8.     Li CC, Zou C, Cui Y, Fu YH, Fang CC, Li Y, Li JX, Wang W; Xiang H*, Li CC*. Genome-wide epigenetic landscape of pig lincRNAs and their evolution during porcine domestication. 2018, Epigenomics 10(12): 1603-1618.

9.     Ren Y, Zhu Y, Wang G, Xiang H*, Wang BY*. Transcriptome of Pterospermum kingtungense provides implications on the mechanism underlying its rapid vegetative growth and limestone adaption. 2017, Sci Rep. 7: 3198

10.  Liu L, Wang J, Duan S,Chen L, Xiang H*, Dong Y*, Wang W*. Systematic evaluation of sericin protein as a substitute for fetal bovine serum in cell culture. Sci Rep 2016, 6: 31516.

11.  Li CC, Wang X, Fu YH, Luan Y,Wen Wang, Xiang H*, Li CC*. Molecular microevolution and epigenetic patterns of a long non-coding gene H19 show its potential function in pig domestication and breed divergence. 2016, BMC Evol Biol. 16: 87

12.  Dong Y, Dai FY, Ren YD, Liu H, Chen L, Yang PC, Liu YQ, Li X, Wang W*, Xiang H*. Comparative transcriptome analyses on silk glands of six silkmoths imply the genetic basis of silk structure and coloration. 2015, BMC genomics 16: 203

13.  Wu J*, Xiang H*, Qi Y, Yang D, Wang X, Sun H, Wang F, Liu B. Adaptive evolution of the STRA6 genes in mammalian. 2014, PloS One 9(9): e108388 (Co-correspondence author)

14.  Xiang H, Li X, Dai F, Xu X, Tan A, Chen L, Zhang G,Ding Y, Li Q, Lian J, Willden A, Guo Q, Xia Q, Wang J, Wang W. Comparative methylomics between domesticated and wild silkworms implies possible epigenetic influences on silkworm domestication. 2013, BMC Genomics 14: 646

15.  Zhan ZB, Ding Y, Zhao R, Zhang Y, Yu H, Zhou Q, Yang S, Xiang H*, Wang W*.  Rapid functional divergence of a newly evolved polyubiquitin gene in Drosophila and its role in the trade-off between male fecundity and lifespan. 2012, Mol Biol Evol 29: 1407

16.  Xiang H, Zhang J, Long YH, Xie L, Liu N, Huang YP, Wang Q. Intracolonial differences between worker and soldier castes of Coptotermes formosanus in gut bacterial Community. 2012, Insect Sci 9(1): 86-95

17.  Xiang H, Li MW, Guo JH, Jiang JH, Huang YP. Influence of RNAi knockdown for E-complex genes on the silkworm proleg development. Arch Insect Biochem Physiol 2011, 76(1):1

18.  Xiang H,Zhu JD, Chen Q, Dai FY, Li X, et al. Single base-resolution methylome of the silkworm reveals a sparse epigenomic map. 2010, Nat Biotechnol 28 : 516

19.  Xiang H, Li M, Yang F, Guo Q, Zhan S, Lin H, Miao X, Huang Y. Fine mapping of Ekp-1, a locus associated with the silkworm (Bombyx mori) proleg development. 2008, Heredity 100(5): 533

20.  Xiang H, Wei GF, Jia SH, Huang JH, Miao XX, Zhou ZH, Zhao LP, Huang YP. Microbial communities in the larval midguts of laboratory and field populations of cotton bollworm (Helicoverpa armigera). 2006, Can J Microbiol  52(11): 1085-1092

21.  Xiang H, Chen J. 2004. Interspecific Variation of Plant Traits Associated with Resistance to Herbivory Among Four Species of Ficus (Moraceae). Ann Botany  94: 377-384

其他作者論文

22.  Gai T, Tong X, Han M, Li C, Fang C, Zou Y, Hu H, Xiang H, Xiang ZH, Lu C, Dai FY. 2020. Cocoonase is indispensable for Lepidoptera insects breaking the sealed cocoon. PLoS Genet 16(9): e1009004. 

23.  Liu W, Chen L, Zhang S, Hu F, Wang Z, Lyu J, Wang B, Xiang H, Zhao R, Z. Tian, Ge S and Wang W. 2019. Decrease of gene Expression diversity during domestication of animals and plants. BMC Evol Biol 19(1): 19.

24.  Niu K, Zhang X, Deng H, Wu F, Ren Y, Xiang H, Zheng S, Liu L, Huang L, Zeng B, Li S, Xia Q, Song Q, R. Palli S and Feng Q. BmILF and i-motif structure are involved in transcriptional regulation of BmPOUM2 in Bombyx mori. 2018, Nucleic Acids Res 46(4): 1710-1723.

25.  Xu G, Zhang J, Lyu, H, Song Q, Feng Q, Xiang H, Zheng S. DNA methylation mediates BmDeaf1-regulated tissue- and stage-specific Expression of BmCHSA-2b in the silkworm, Bombyx mori. 2018, Epigenetics Chromatin 11(1): 32.

26.  Zhou Z, Jiang Y, Wang Z, Gou Z, Lyu J, Li W, Yu Y, Shu L, Zhao Y, Ma Y, Fang C, Shen Y, Liu T, Li C, Li Q, Wu M, Wang M, Wu Y, Dong Y, Wan W, Wang X, Ding Z, Gao Y, Xiang H, Zhu B, Lee S, Wang W and Tian Z. Resequencing 302 wild and cultivated accessions identifies genes related to domestication and improvement in soybean. 2015, Nat Biotechnol 33(4):408-14

27.  Li, X, Fan D, Zhang W, Liu G, Zhang L, Zhao L, Fang X, Chen L, Dong Y, Chen Y, Ding Y, Zhao R, Feng M, Zhu Y, Feng Y, Jiang X, Zhu D, Xiang H, Feng X, Li S, Wang J, Zhang G, Kronfors MR, Wang W. Outbred genome sequencing and CRISPR/Cas9 gene editing in butterflies. 2015, Nat Commun 6: 8212.

28.  Chen L, Tang L, Xiang H, Jin L, Li Q, Dong Y, Wang W, Zhang G. Advances in genome editing technology and its promising application in evolutionary and ecological studies. 2014, GigaScience 3: 24.

29.  Chen S, Zhang G, Shao C, Huang Q, Liu G, Zhang P, Song W, An N, Chalopin D, Volff JN, Hong Y, Li Q, Sha Z, Zhou H, Xie M, Yu Q, Liu Y, Xiang H, et al. Whole-genome sequence of a flatfish provides insights into ZW sex chromosome evolution and adaptation to a benthic lifestyle. 2014, Nat Genet doi:10.1038/ng.2890

30.  Li X, Zhu J, Hu F, Ge S, Ye M, Xiang H, Zhang G, Zheng X, Zhang H, Zhang S, Li Q, Luo R, Yu C, Yu J, Sun J, Zou X, Cao X, Xie X, Wang J, Wang W. Single-base resolution maps of cultivated and wild rice methylomes and regulatory roles of DNA methylation in plant gene Expression. 2012, BMC Genomics 13: 300

31.  Bonasio R, Li Q ,Lian J, Mutti NS ,Jin L, Zhao H, Zhang P, Wen P, Xiang H, Ding Y, Jin Z, Shen SS, Wang Z, Wang W, Wang J, Berger SL, Liebig J, Zhang G, Reinberg D. Genome-wide and caste-specific DNA methylomes of the ants Camponotus floridanus and Harpegnathos saltator. 2012, Curr Biol 22: 1755-1764

32.  Miao XX, Xu SJ, Li MH, Li MW, Huang JH, Dai FY, Marino SW, Mills DR, Zeng P, Mita K, Jia SH, Zhang Y, Liu WB, Xiang H, Guo QH, Xu AY, Kong XY, Lin HX, Shi YZ, Lu G, Zhang X, Huang W, Yasukochi Y, Sugasaki T, Shimada T, Nagaraju J, Xiang ZH, Wang SY, Goldsmith MR, Lu C, Zhao GP, Huang YP. Simple sequence repeat-based consensus linkage map of Bombyx mori. 2005, Proc Natl Acad Sci U S A 102(45): 16303-16308.

33.  Peng JY, Li ZH, Xiang H, Huang JH, Jia SH, Miao XX, Huang YP. Preliminary studies on differential defense responses induced during plant communication. 2005, Cell Research 15(3):187-192.

 

部分中文論文

34.  魏向敏#, 崔勇#, 葉國浚, 朱克森, 相輝*. 草地貪夜蛾寄主適應(yīng)性、種群動(dòng)態(tài)特征及防控新思路展望. 2020. 環(huán)境昆蟲學(xué)報(bào) 42 (1)42-51(當(dāng)期重點(diǎn)推薦)

35.  朱克森,黃鈞鴻,馮啟理,相輝*. 草地貪夜蛾與斜紋夜蛾解毒相關(guān)基因的比較分析. 2020.環(huán)境昆蟲學(xué)報(bào) 2020 42(2)318-328

36.  吳棉萍,黃鈞鴻,汪麗枝,相輝,崔勇*. 家蠶等鱗翅目昆蟲繭絲合成及進(jìn)化研究的現(xiàn)狀及展望. 蠶業(yè)科學(xué). 2020. 46(3): 372-379

37.  黃鈞鴻,張銘淇,馮啟理,崔勇*相輝* .2019.草地貪夜蛾與斜紋夜蛾嗅覺味覺相關(guān)基因的比較分析. 環(huán)境昆蟲學(xué)報(bào). 41(5):937-946

38.  崔勇,朱亞楠,黃悅瑩,譚麗莊,馮啟理,王文,相輝*. 2019. 轉(zhuǎn)錄因子ZnF-706在鱗翅目昆蟲中的進(jìn)化格局及在家蠶中的功能. 昆蟲學(xué)報(bào). 62(1): 9-20.(當(dāng)期重點(diǎn)推介&海外版推廣) 

專利

1. 鱗翅目昆蟲酪氨酸蛋白激酶在防治蟲害中的應(yīng)用 申請?zhí)枺?/span>201810557603.X 申請時(shí)間:2018.06.01 (授權(quán)辦理中)

2. 云斑蛛牽引絲性能及其絲蛋白基因序列  申請?zhí)枺?/span>201910497633.0 申請時(shí)間:2019.06.10 (授權(quán)辦理中)

3.大腹園蛛牽引絲性能及其絲蛋白基因序列  申請?zhí)枺?/span>201910498175.2 申請時(shí)間:2019.06.10 (授權(quán)辦理中)

4. 一種野蠶幼蟲的飼養(yǎng)方法 申請?zhí)枺?/span>201710725547.1  申請時(shí)間:2017.8.22  授權(quán)號 ZL201710725547.1

獲獎(jiǎng)

1.    2011,云南省科技論文獎(jiǎng)特等獎(jiǎng),排名第一

2. 云南省自然科學(xué)二等獎(jiǎng),排名第二

項(xiàng)目

1.     國家自然科學(xué)基金面上項(xiàng)目、32070411、保幼激素受體Met1對家蠶大腦馴化的作用機(jī)制、2021.01-2024.12、58萬、主持

2.     2019年度廣東省教育廳廣東高??蒲许?xiàng)目(自然科學(xué)類)特色創(chuàng)新項(xiàng)目、保幼激素信號在家蠶大腦發(fā)育及馴化過程中的作用機(jī)制、2019.11-2021.10、5萬、主持

3.     廣東省自然科學(xué)基金面上項(xiàng)目、2019A1515011012、保幼激素信號在家蠶大腦發(fā)育及馴化過程中的作用機(jī)制、2019.10.01 - 2022.09.30、10萬,主持

4.     國防科技創(chuàng)新特區(qū)項(xiàng)目、17-163-12-ZT-003-082-01 動(dòng)物絲蛋白基因的序列與功能關(guān)系研究、2017.9 -2018.12100萬,主持

5.     云南省中青年學(xué)術(shù)和技術(shù)帶頭人后備人才項(xiàng)目、無、家蠶及野生絹絲昆蟲繭絲進(jìn)化機(jī)制及優(yōu)良基因相關(guān)性狀的規(guī)?;诰?、2015.01-2018.12、12萬、主持

6.     國家自然科學(xué)基金面上項(xiàng)目、31371286、家蠶育種過程中近交衰退現(xiàn)象的表觀遺傳學(xué)調(diào)控機(jī)制、 2014.01-2017.12、90萬、主持

7.     科技部973計(jì)劃課題、2013CB835204、雞鴨蠶等非哺乳類家養(yǎng)動(dòng)物在人工選擇下的進(jìn)化模式和機(jī)制、2013.1-2017.12、582萬元、主持

8.     中國科學(xué)院西部之光人才培養(yǎng)計(jì)劃重點(diǎn)項(xiàng)目、無、家蠶人工馴化過程中的表觀遺傳學(xué)改變及意義、2011.12 -2015.8、30萬元(終期考核優(yōu)秀)、主持

9.     中科院青年創(chuàng)新促進(jìn)會(huì)資助、2011.1 -2014.12,40萬元,主持

10.  博士后特別資助、無、家蠶在人工馴化過程中基因組的表觀遺傳學(xué)變化、2010.01-2011.1210萬、主持

11.  國家自然科學(xué)基金面上項(xiàng)目、30870296、家蠶人工馴化過程中的表觀遺傳學(xué)改變、2009.01-2011.12、33萬、主持博士后面上資助、無、家蠶在人工馴化過程中基因組的表觀遺傳學(xué)變化、2009.01-2010.12、2萬、主持

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