李寧

發(fā)布者:吳佳卿發(fā)布時(shí)間:2023-08-14瀏覽次數(shù):6793

教師個人情況簡介
姓名李寧


性別
職稱教授
學(xué)歷研究生
學(xué)位農(nóng)學(xué)博士
郵箱lining196@126.com
招生方向資源與環(huán)境(環(huán)境工程)
研究方向動植物關(guān)系生態(tài)學(xué),鳥類學(xué)
研究內(nèi)容

依托亞熱帶森林生態(tài)系統(tǒng)和濱海濕地生態(tài)系統(tǒng),以鳥類為主要研究類群,長期開展動物生態(tài)學(xué)、生境片段化與生物多樣性保護(hù)等領(lǐng)域的研究工作。

目前主要研究方向?yàn)椋?br />1)濕地生態(tài)保護(hù),以鳥類調(diào)查數(shù)據(jù)為基礎(chǔ),利用地理信息系統(tǒng)等工具系統(tǒng)評估濱海濕地景觀變化對鳥類資源的影響,探討人類世背景下鳥類等典型指示生物對濕地環(huán)境變化的響應(yīng)機(jī)制。
2)種間互作關(guān)系及群落構(gòu)建,基于鳥類等動物類群,從取食和種子傳播等視角研究生態(tài)互作網(wǎng)絡(luò)的結(jié)構(gòu)、功能及形成機(jī)制,探討動植物種間互作對環(huán)境變化的響應(yīng)。

主持的科研項(xiàng)目

2022-2025年,主持國家自然基金面上項(xiàng)目:破碎生境中鳥類對種子傳播網(wǎng)絡(luò)結(jié)構(gòu)與功能的影響

2018-2020年,主持國家自然基金青年項(xiàng)目:不同擾動生境中鳥類功能特征對瀕危植物種子傳播有效性的影響

2022-2025年,主持江蘇省科技計(jì)劃面上項(xiàng)目:鹽城沿海濕地鳥類對植物種子的傳播效率研究

2017-2020年,主持江蘇省科技計(jì)劃青年項(xiàng)目遷地保護(hù)生境中鳥類對瀕危植物種子傳播的有效性機(jī)制

2015-2016年主持中國博士后面上項(xiàng)目:干擾生境中鳥類對美洲商陸傳播的有效性機(jī)制

2019-2022年,主持國家自然基金地區(qū)項(xiàng)目:拉沙山滇金絲猴對森林植物的種子傳播及二者的互作關(guān)系

2017-2019參與環(huán)保部生物多樣性示范監(jiān)測課題:全國生物多樣性監(jiān)測示范項(xiàng)目-江蘇句容縣、泰州市、東臺市、如東縣和連云港市五樣

代表性論文

圍繞江蘇省濱海濕地生態(tài)系統(tǒng)和森林生態(tài)系統(tǒng)開展瀕危動物保護(hù)和動植物關(guān)系的研究工作,在Ecology Letters, Forest Ecology and Management, Integrative Zoology, Ecological Processes等期刊發(fā)表20余篇SCI論文。

1) Wang Z, Chen QE, Gu ZY , Tang N, Li N* . 2023. Effects of landscape features on the structure and function of bird seed dispersal networks in fragmented forests. Forest Ecology and Management, 545: 121251.(通訊作者)

2) Yin S, Li N, Xu W, et al. 2023. Functional traits explain waterbirds' host status, subtype richness, and community-level infection risk for avian influenza. Ecology Letters, 26: 17801791. (并列一作)

3Shen J, Gu X, Liu R, Feng HY, Li DP, Liu Y, Jiang XF, Qin G, An SQ, Li N* , Leng X*. 2023. Damming has changed the migration process of microplastics and increased the pollution risk in the reservoirs in the Shaying River Basin. Journal of Hazardous Materials, 443: 130067.(通訊作者)

4Li N, Yang XF, Ren YH, Wang Z. 2022.Importance of species traits on individual-based seed dispersal networks and dispersal distance for endangered trees in a fragmented forest. Frontiers in Plant Science, doi: 10.3389/fpls.2022.1010352.

5Li N, Tang N, Wang Z, Zhang L. 2022. Response of different waterbird guilds to landscape changes along the Yellow Sea coast: a case study. Ecological indicators, https://doi.org/10.1016/j.ecolind.2022.109298

6Li N, Tang N, Ren YH, Wang Z. 2022. Effects of forest ropeway construction on bird diversity and its seed dispersal mutualism for endangered Taxus chinensis, southeast China. Global Ecology and Conservation, e02227.

7Wang Z, Gao S, Huang XL, Zhang S, Li N* 2022. Functional importance of bird-dispersed habitat for the early recruitment of Taxus chinensis in a fragmented forest. Acta Oecologica, 103819.

8Li N, Huang XL, Yan Q, Zhang WW, Wang Z. 2021. Save Chinas Blue-crowned Laughingthrush. Science 373(6551): 171.

9Li N, Wang Z, Cai Y, Zhang L. 2020. Importance of microhabitat selection by birds for the early recruitment of endangered trees in a fragmented forest. Avian Research 11, 46.

10Li N, Zhang S, Ren YH, Wang Z. 2020. Importance of plant and bird traits on the seed removal pattern of endangered trees across different forest patches in southeast China. Ecological Processes 9, 43. https://doi.org/10.1186/s13717-020-00253-6.

11Wang Z, Li N*, Gao S, An SQ. 2020. Response of wintering waterbird diversity to reclamation history and post-reclamation habitat along Yellow Sea coast. Integrative Zoology, 15: 595-602. (通訊作者)

12Li N, Wang Z, Li XH, Yi XF, Yan C, Lu CH, Chen SC. 2019. Effects of bird traits on seed dispersal of endangered Taxus chinensis (Pilger) Rehd. with ex-Situ and in-Situ conservation. Forests, 10, 790.

13Li N, Wang Z, Xia L, Xu LQ, Yan F, Qiao YJ, Li XH, An SQ, Fang SB. 2019. Effects of long-term coastal reclamation on suitable habitat and wintering population size of the endangered Red-crowded Crane, Grus japonensis. Hydrobiologia, 827: 21-29.

14Li N, Wang Z, Zhang S, Yan C, Li XH, Lu CH. 2019. Importance of bird traits for seed dispersal patterns of co-fruiting trees in a patchy forest. Integrative Zoology, 14: 470-478.

15Li N, Wang Z, Li XH, Li ZH. 2018. Bird functional traits affect seed dispersal patterns of China’s endangered trees across different disturbed habitats. Avian Research, Doi: https://doi.org/10.1186/s40657-018-0105-x.

16Li N, Bai B, Li XH, An SQ, Lu CH. 2017. Dispersal of remnant endangered trees in a fragmented and disturbed forest by frugivorous birds. Journal of Plant Research, 130: 669676.

17Li N, Yang W, Fang SB, Li XH, Liu ZC, Leng X, An SQ. 2017. Dispersal of invasive Phytolacca americana seeds by birds in an urban garden in China. Integrative Zoology, 12: 26–31.

18Li N, Yang W, Xu LQ, Jia XB, An SQ, Fang SB. 2017. Two comparative approaches to identify the conservation priority areas impacted by heavy metals on Yellow Sea coasts. Journal of Coastal Conservation, 21: 177188.

19Li N, Li XH, An SQ, Lu CH. 2016. Impact of multiple bird partners on the seed dispersal effectiveness of China's relic trees. Scientific Reports, doi: 10.1038/srep17489.

20Li N, An SQ, Fu WY, Lu CH. 2015. Ecological rescue of remnant fengshui trees in farmlands by avian frugivores. Plant Ecology & Diversity, 8: 401405.

21Li N, Bai B, Wang Z, Luo F, Lu XZ, Lu CH. 2015. Avian seed dispersal and seedling distribution of the endangered tree species, Taxus chinensis, in patchy habitats. Plant Ecology & Diversity, 8: 407414. 

22Li N, Fang SB, Li XH, An SQ, Lu CH. 2015. Differential contribution of frugivorous birds to dispersal patterns of the endangered Chinese yew (Taxus chinensis). Scientific Reports, doi: 10.1038/srep10045.

23Li N, An SQ, Liu Z, Lu CH. 2014. Fruit consumption and seed dispersal by birds in native vs. ex-situ individuals of the endangered Chinese yew, Taxus chinensis. Ecological Research, 29: 917–923.                                                                                            



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