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研究生導(dǎo)師個人簡介

發(fā)布人:     發(fā)布日期:2023-10-30   瀏覽次數(shù):

·姓名:吳海龍

·職稱:教授(二級)

·電話:0553-5910724

·郵箱:whlong@ahnu.edu.cn

◆主要學(xué)習(xí)工作經(jīng)歷

·1995年畢業(yè)于安徽師范大學(xué)生物系生物教育專業(yè),獲理學(xué)學(xué)士學(xué)位;

·1998年畢業(yè)于安徽師范大學(xué)生物學(xué)動物學(xué)專業(yè),獲理學(xué)碩士學(xué)位;

·2006年畢業(yè)于浙江大學(xué)生命科學(xué)學(xué)院動物學(xué)專業(yè),獲理學(xué)博士學(xué)位;

·1998年7月至2020年6月,安徽師范大學(xué)生命科學(xué)學(xué)院,助教、講師、副教授、教授;

·2006年至2008年,浙江大學(xué)博士后;

·2012年至2015年,安徽師范大學(xué)生命科學(xué)學(xué)院副院長;

·2020年7月至今,必威教授,博士生導(dǎo)師。

◆主要社會兼職

·中國動物學(xué)會獸類學(xué)分會理事(第八、九屆)

·中國動物學(xué)會兩棲爬行動物學(xué)分會理事(第七、八屆)

·安徽省動物學(xué)會副秘書長

·全球環(huán)境基金(GEF)安徽項目省內(nèi)咨詢專家(2014-2018)

◆主要研究內(nèi)容

長期從事保護生物學(xué)、動物生態(tài)學(xué)和生態(tài)毒理學(xué)的教學(xué)和科研工作。重點研究區(qū)域特有瀕危野生動物(黑麂、凹耳臭蛙、中華穿山甲等)瀕危機制、棲息地利用、繁殖策略、對環(huán)境變化的響應(yīng)機制等。同時,與林業(yè)主管部門以及相關(guān)保護地合作開展野生動物資源調(diào)查和監(jiān)測,為野生動物保護和管理提供技術(shù)支持。

◆主要研究課題

·國家自然科學(xué)基金,凹耳臭蛙繁殖生態(tài)與交配對策研究(32071498),2021-2024年,主持。

·國家自然科學(xué)基金,皖南地區(qū)同域分布的兩種蛙類景觀遺傳學(xué)比較研究(31370537),2014-2017年,主持

·國家自然科學(xué)基金,麂屬兩種動物II類MHC-DRB基因的比較研究(31070335),2011-2013年,主持。

·國家自然科學(xué)基金,黑麂MHCⅡ類DRB基因變異及其進化機制研究(30970433),2010年,主持。

·安徽省重點研究開發(fā)計劃面上項目,王錦蛇規(guī)模化養(yǎng)殖幼蛇開口率技術(shù)攻關(guān)(1804a07020118),2018-2020年,主持

·科技部基礎(chǔ)性工作專項,華東黃山-天目山脈及仙霞嶺-武夷山脈生物多樣性調(diào)查(2015FY110200),2015-2020年,第八子課題黃山-牯牛降片區(qū)獸類調(diào)查專項負責(zé)人。

·國家林業(yè)和草原局,安徽省穿山甲野生種群資源及棲息地調(diào)查(2019072),2019-2021,主持

·教育部博士點基金,破碎化景觀格局中凹耳臭蛙種群擴散模式及其形成原因(20133424110006),2014-2016年,主持。

·國家林業(yè)局專項基金,黑麂野生種群及棲息地調(diào)查,2014-2017年,主持。

·安徽省優(yōu)秀青年科技基金,凹耳蛙種群地理分布格局及其歷史成因(20133424110006,2010.01-2012.12主持

·安徽省林業(yè)局專項基金,安徽省野豬非洲豬瘟防控本底調(diào)查(2022BFAFZ004342022.06-2023.06主持。

·2022BFAFZ00434)。

◆主要研究成果

1. 代表性論文(20篇以內(nèi),*號為通訊作者)

1.Yilin Shu, Qi Wang, Pei Hong, Yuefei Ruan, Huiju Lin, Jing Xu, Huijuan Zhang, Shuaitao Deng, HailongWu*, LianguoChen*, and Kenneth Mei Yee Leung*. 2023. Legacy and Emerging Per- and Polyfluoroalkyl SubstancesSurveillance in Bufo gargarizans from Inlet Watersheds of Chaohu Lake, China: Tissue Distribution and Bioaccumulation Potential. Environ. Sci. Technol., 57, 13148?13160.

2.Zhang Huijuan, Wu Juntao, Fang Nanxi, Zhang Shengbin, Su Xiaomei, Jiang Huiling, Hong Pei, Wu Hailong*, Shu Yilin*. 2023. Waterborne exposure to microcystin-leucine arginine induces endocrine disruption and gonadal dysplasia of Pelophylax nigromaculatus tadpoles via the hypothalamic-pituitary-gonadal-liver axis. Science of theTotal Environment, 906(2024)167644.

3.Shi, Q., Li, Y., Deng, S., Zhang, H.,Jiang, H., Shen, L., Pan, T., Hong, P., Wu, H*, & Shu, Y*. 2023. The succession of gut microbiota in the concave-eared torrent frog (Odorrana tormota) throughout developmental history. Ecology and Evolution, 13, e10094.

4.Wang WC, Zhang HJ, Wei LT , Ma Y, Jiang HL, Yuen CNT, Zhang JH, Wu HL*, Shu YL*. 2023. Microcystin-leucine arginine causes brain injury and functional disorder in Lithobates catesbeianus tadpoles by oxidative stress and inflammation. Aquatic Toxicology, 258, 106509.  https://doi.org/10.1016/j.aquatox.2023.106509.

5.Jiang HL; He J; Wang H; Zheng LL; Wang XR; Zhang HJ; Wu HL*; Shu YL*. 2022. Gill Junction Injury and Microbial Disorders Induced by Microcystin-Leucine Arginine in Lithobates catesbeianus Tadpoles. Toxins, 14, 479.

6.Shu YL, Jiang HL, Yuen CNT, Wang WC, He J, Zhang HJ, Liu GX, Wei LT, Chen LG, Wu HL*. 2022. Microcystin-leucine arginine induces skin barrier damage and reduces resistance to pathogenic bacteria in Lithobates catesbeianus tadpoles. Ecotoxicology and Environmental Safety, 238, 113584. DOI: 10.1016/j.ecoenv.2022.113584.

7.Shu YL, Xie YY,  Li SK, Cai LM, Liu Y, Feng YL, He J, Zhang HJ, Ran ML, Jia QN, Wu HL*, Lu LM*,. 2022. Risk and protection strategies of Amolops wuyiensis intestine against gastrointestinal nematode (Cosmocercoides wuyiensis n. sp.) infection. Environmental Microbiology, 24(3), 1454–1466.DOI: 10.1111/1462-2920.15881.

8.He J, Shu YL,Dai Y,Gao YX, Liu SY, WangWC, Jiang HL, Zhang HJ, Hong P, Wu HL*. 2022. Microcystin-leucine arginine exposure induced intestinal lipid accumulation and MC-LR efflux disorder in Lithobates catesbeianus tadpoles. Toxicology, 465, 153058. DOI10.1016/j.tox.2021.153058.

9.Deng ST, Li JQ, Qu YSHe J , Liu, K, Xue H, Cui P , Ruan XD, Wu HL*. 2021. Camera trap reveals the co-occurrence patterns of two sympatric muntjac species in southern Anhui Province, China: No spatial segregation. Ecology and Evolution, 11: 17801–17809. https://doi.org/10.1002/ece3.8307.

10.Shu, YL, He J, Zhang HJ, Liu GX, Li SK, Deng ST, Wu HL*. 2021. Dynamic transcriptome and histomorphology analysis of developmental traits of hindlimb thigh muscle from Odorrana tormota and its adaptability to different life history stages. BMC Genomics, 22(1)369. doi:10.1186/s12864-021-07677-0.

11.Shaukat Ali Khan, Jun He, Shuaitao Deng, Huijuan Zhang, Guangxuan Liu, Shikun Li, Dong Tang, Jihui Zhang, Yilin Shu, Hailong Wu*. 2020. Integrated analysis of mRNA and miRNA expression profiles reveals muscle growth differences between fast- and slow-growing king ratsnakes (Elaphe carinata). Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology, 248–249, 110482.

12.Shu YL, Tang D, Khan SA, He J, Zhang HJ, Sun L, Wu HL*, Lu LM. 2020. Molecular characterization, expression analysis of myostatin gene and its negative regulation by miR-29b-3p in Chinese concave-eared frogs (Odorrana tormota). Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology, 240, 110369.

13.Pan T, Zhou K, Zhang SL, Shu YL, Zhang JH, Li E, Wang MS, Yan P, Wu HL*. 2019. Effects of dispersal barriers and geographic distance on the genetic structure of a narrowly distributed frog in a spatially structured landscape. Journal of Zoology, 309, 295-309. doi:10.1111/jzo.12730.

14.Shu YL, Zhang HJ, Cai QJ, Tang D, Wang G, Liu T, Lv BH, Wu HL*. 2019. Integrated Mrna and miRNA expression profile analyses reveal the potential roles of sex-biased miRNA-Mrna pairs in gonad tissues of the Chinese concave-eared torrent frog (Odorrana tormota). Journal of Experimental Zoology Part B: Molecular and Developmental Evolution, 332: 69-80.

15.Shu YL, Hong P, Yu Q, Wang G, Zhang JH, Oscar Donde O, Xiao BD, Wu HL*. 2019. High-Throughput Sequencing Analysis Reveals Correlations between Host Phylogeny, Gut Microbiota, and Habitat of Wild Frogs from a Mountainous Area. Copeia, 107, (1), 131-137.

16.Shu YL, Xia JQ, Yu Q, Wang G, Zhang JH, He J, Wang H, Zhang L, Wu HL*. 2018. Integrated analysis of mRNA and miRNA expression profiles reveals muscle growth differences between adult female and male Chinese concave-eared frogs (Odorrana tormota). Gene, 678: 241–25.

17.Shu YL, Hong P, Tang D, Qing H, Oscar Donde O, Wang H, Xiao BD, Wu HL*. 2018. Comparison of intestinal microbes in female and male Chinese concave‐eared frogs (Odorrana tormota) and effect of nematode infection on gut bacterial communities. MicrobiologyOpen, e749. DOI: 10.1002/mbo3.749.

18.Shu YL, Hong P, Yang YW, Wu HL*. 2013. An endemic frog harbors multiple expression loci with different patterns of variation in the MHC class II B gene. Journal of Experimental Zoology Part B: Molecular and Developmental Evolution, 320, (8): 501-510. doi:10.1002/jez.b.22525.

19.劉凱, 賀君, 張繼輝, 馮俊, 宇強, 顧長明, 吳海龍*. 2017. 基于紅外相機技術(shù)的皖南山區(qū)森林生態(tài)系統(tǒng)獸類資源現(xiàn)狀. 生物多樣性, 25 (8): 896–903.

20.馮駿,張繼輝,疏以林,姚龍,唐鑫生、吳海龍*. 2015. 皖南凹耳臭蛙地理分布格局與生境選擇. 生態(tài)學(xué)報, 35(17): 1-12.

2. 專著

·吳海龍,顧長明主編. 《安徽鳥類圖志》. 蕪湖:安徽師范大學(xué)出版社,2017年.

·吳海龍,趙凱,程東升主編.《貴池鳥類圖志》.合肥,中國科學(xué)技術(shù)大學(xué)出版社. 2019年.

3. 主要獲獎情況(省部級以上)

· “中國特有鹿科動物——黑麂保護遺傳學(xué)研究”, 2017年獲梁希林業(yè)科學(xué)技術(shù)獎二等獎排名第一。

·“服務(wù)學(xué)生需求,助力生態(tài)文明建設(shè),構(gòu)建創(chuàng)新素質(zhì)教育一體化人才培養(yǎng)模式”,2022年獲安徽省教學(xué)成果獎等獎,排名第四(2021jxcgj259-4)。

· “標(biāo)本資源數(shù)字化平臺在動物學(xué)教學(xué)中的應(yīng)用”,2010年獲安徽省教育廳教學(xué)成果獎三等獎,排名第一