中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)研究所研究員、博士生導(dǎo)師,中國(guó)科學(xué)院森林生態(tài)與管理重點(diǎn)實(shí)驗(yàn)室骨干成員。曾多次獲得中國(guó)科學(xué)院沈陽(yáng)分院優(yōu)秀青年學(xué)者、中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)研究所先進(jìn)科技工作者。長(zhǎng)期以來(lái)主要從事森林生態(tài)系統(tǒng)碳氮循環(huán)方面的研究,在土壤碳庫(kù)組成、土壤有機(jī)碳分解、凋落物分解等方面取得了一系列原創(chuàng)性研究成果。先后主持國(guó)家重點(diǎn)研發(fā)計(jì)劃子課題、中國(guó)科學(xué)院戰(zhàn)略性先導(dǎo)科技專項(xiàng)子課題、973項(xiàng)目子課題、國(guó)家自然科學(xué)基金等12項(xiàng)課題。已在Global Change Biology, Ecology, Soil Biology & Biochemistry, Agricultural and Forest Meteorology, Plant and Soil, Forest Ecology and Management等土壤學(xué)、生態(tài)學(xué)和林學(xué)國(guó)際主流刊物上發(fā)表論文近110篇,包括SCI論文近80余篇,第一作者(通訊作者)SCI論文近60篇;參編專著2部。
受教育情況:
2003—2006:中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)所,生態(tài)學(xué)專業(yè),獲博士學(xué)位;
2000—2003:山東農(nóng)業(yè)大學(xué),土壤學(xué)專業(yè),獲碩士學(xué)位;
1996—2000:山東農(nóng)業(yè)大學(xué),土地管理專業(yè),獲學(xué)士學(xué)位。
工作經(jīng)歷:
2021—至今:中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)所研究員,湖南會(huì)同森林生態(tài)系統(tǒng)國(guó)家觀測(cè)研究站站長(zhǎng);
2012—2020:中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)所研究員,湖南會(huì)同森林生態(tài)系統(tǒng)國(guó)家觀測(cè)研究站副站長(zhǎng);
2008—2012:中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)所副研究員,湖南會(huì)同森林生態(tài)系統(tǒng)國(guó)家觀測(cè)研究站副站長(zhǎng);
2006—2008:中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)所助理研究員。
國(guó)際合作與交流:
2014.11.1—8:參加在美國(guó)加州Long Beach 舉行的“作物學(xué)會(huì)、農(nóng)學(xué)會(huì)和土壤學(xué)會(huì)”年會(huì)國(guó)際會(huì)議
2010—2011:兩次到德國(guó)卡爾斯魯厄研究中心大氣環(huán)境研究部氣象與氣候研究所進(jìn)行“大氣氮沉降對(duì)森林土壤碳氮轉(zhuǎn)化的微生物學(xué)影響”合作研究,合作導(dǎo)師為Klaus Butterbach-Bahl。
承擔(dān)項(xiàng)目情況:
先后主持課題主要有:
1.國(guó)家自然科學(xué)基金面上項(xiàng)目“杉木林土壤微生物殘?bào)w積累的分異特征及其凋落物輸入的調(diào)控機(jī)制”,2022.1—2025.12,60萬(wàn)元(直接經(jīng)費(fèi))
2.國(guó)家重點(diǎn)研發(fā)計(jì)劃子課題“幾種杉闊混交模式對(duì)土壤有機(jī)質(zhì)和養(yǎng)分的影響”,2021.12—2024.11,40萬(wàn)。
3.中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)研究所創(chuàng)新團(tuán)隊(duì)“人工林生態(tài)功能與提升”
4.國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目“杉木人工林SOM形成與轉(zhuǎn)化的生物學(xué)調(diào)控機(jī)制”,2019.1—2023.12,281萬(wàn)元(直接經(jīng)費(fèi))。
5.國(guó)家重點(diǎn)研發(fā)計(jì)劃子課題“氮沉降與升溫對(duì)北方典型森林SOM分解的影響機(jī)理”,2016.7—2021.6,70萬(wàn)元。
6.國(guó)家自然科學(xué)基金面上項(xiàng)目“CO2濃度升高和氮沉降對(duì)樹木光合碳向SOM關(guān)鍵組分轉(zhuǎn)化的影響”,2016.1—2019.12,75萬(wàn)元。
7.森林與土壤國(guó)家重點(diǎn)實(shí)驗(yàn)室群體項(xiàng)目“氮沉降對(duì)森林土壤有機(jī)碳分解的影響及生物學(xué)機(jī)制”,2015.7—2018.6,75萬(wàn)元。
8.中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)研究所特色研究所項(xiàng)目“人工林多目標(biāo)經(jīng)營(yíng)的理論與技術(shù)研究及示范”,2015.8—2018.12。
9.中國(guó)科學(xué)院戰(zhàn)略性先導(dǎo)科技專項(xiàng)B“土壤-生物系統(tǒng)功能及其調(diào)控”子課題“典型森林土壤微生物組成及水平空間格局” 2014.6—2019.5,678萬(wàn)元。
10.973項(xiàng)目子課題“地下生態(tài)系統(tǒng)碳儲(chǔ)量與林分蓄積增長(zhǎng)對(duì)施肥措施的響應(yīng)”,2012.1—2016.12,100萬(wàn)元。
11.森林與土壤國(guó)家重點(diǎn)實(shí)驗(yàn)室項(xiàng)目子課題“會(huì)同亞熱帶森林生態(tài)系統(tǒng)大氣沉降氮去向:15N示蹤研究”,2013.6—2016.5,15萬(wàn)元。
12.中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)研究所青年創(chuàng)新研究群體基金項(xiàng)目“碳輸入對(duì)我國(guó)主要森林土壤碳庫(kù)構(gòu)成與碳循環(huán)的影響”,2012.1—2015.12,100萬(wàn)元。
13.中國(guó)科學(xué)院戰(zhàn)略性先導(dǎo)科技專項(xiàng)子課題“杉木林固碳增匯技術(shù)實(shí)驗(yàn)示范”,2011.1—2015.12,150萬(wàn)元。
14.國(guó)家自然科學(xué)基金面上項(xiàng)目“改變碳輸入對(duì)杉木林土壤碳庫(kù)構(gòu)成及CO2通量的影響”,2011.1—2013.12,38萬(wàn)元。
15.國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目子課題“亞熱帶人工林SOC主要來(lái)源及其相對(duì)貢獻(xiàn)”,2011.1—2014.12,40萬(wàn)元.
16.中科院沈陽(yáng)應(yīng)用生態(tài)所青年人才領(lǐng)域前沿項(xiàng)目“氮肥對(duì)杉木人工林土壤活性有機(jī)質(zhì)的影響”,2007.1—2007.12,5萬(wàn)元。
獲獎(jiǎng)情況:
1.2010年湖南省科技進(jìn)步二等獎(jiǎng)(第三完成人);
2.2008-2013連續(xù)獲得中國(guó)科學(xué)院沈陽(yáng)應(yīng)用生態(tài)所先進(jìn)工作者;
3.2008年獲中國(guó)科學(xué)院沈陽(yáng)分院首屆優(yōu)秀青年學(xué)者獎(jiǎng)。
代表性論著(*為通訊作者):
已發(fā)表學(xué)術(shù)論文110余篇,其中SCI論文80余篇。
1.Zhao Xuechao, Tian Peng, Liu Shengen, Yin Pan, Sun Zhaolin, Wang Qingkui*. 2022. Mean annual temperature and carbon availability respectively controlled the contributions of bacterial and fungal residues to organic carbon accumulation in topsoil across China's forests. Global Ecology and Biogeography, DOI: 10.1111/geb.13605
2.Liu Shengen, Sun Zhaolin, Tian Peng, Zhao Xuechao, Zhou Guiyao, Peter Dietrich, Wang Qingkui*, Manuel Delgado-Baquerizo. 2022. Temperature legacies predict microbial metabolic quotient across forest biomes. Global Ecology and Biogeography, DOI: 10.1111/geb.13609
3.Zhao Xuechao#, Tian Peng#, Liu Shengen, Sun Zhaolin, Zeng Zhangquan, Wang Qingkui*. 2022. Cunninghamia lanceolata and understory ferns had positive rhizosphere effects on the temperature sensitivity of soil microbial respiration in a subtropical forest. Geoderma 408, 115593.
4.Zhao Xuechao, Tian Peng, Sun Zhaolin, Liu Shengen, Wang Qingkui*, Zeng Zhangquan*. 2022. Rhizosphere effects on soil organic carbon processes in terrestrial ecosystems: A meta-analysis. Geoderma 412, 115739.
5.Fan Bo#, Yin Liming#, Dijkstra FA, Lu Jiayu, Shao Shuai, Wang Peng*, Wang Qingkui*, Cheng Weixin. 2022. Potential gross nitrogen mineralization and its linkage with microbial respiration along a forest transect in eastern China. Applied Soil Ecology 171, 104347.
6.Tian Peng, Zhao Xuechao, Liu Shengen, Wang Qinggui, Zhang Wei, Guo Peng, Razavi BS, Liang Chao, Wang Qingkui*. 2022. Differential responses of fungal and bacterial necromass accumulation in soil to nitrogen deposition in relation to deposition rate. Science of the Total Environment 847, 157645.
7.Tian Peng#, Zhao Xuechao#, Liu Shengen, Sun Zhaolin, Jing Yanli, Wang Qingkui*. 2022. Soil microbial respiration in forest ecosystems along a north-south transect of eastern China: Evidence from laboratory experiments. Catena 211, 105980.
8.Jing Yanli, Ding Xueli, Zhao Xuechao, Tian Peng, Xiao Fuming, Wang Qingkui*. 2022. Non-additive effects of nitrogen and phosphorus fertilization on microbial biomass and residue distribution in a subtropical plantation. European Journal of Soil Biology 108, 103376.
9.Jing Y, Zhao X, Liu S, Tian P, Sun Z, Chen L, Wang Qingkui*. 2022. Microbial Residue Distribution in Microaggregates Decreases with Stand Age in Subtropical Plantations. Forests 13, 1145.
10.Zheng Sijia, Zhao X, Sun Z, Li J, Jing Y, Wang Qingkui*. 2022. Carbon addition modified the response of heterotrophic respiration to soil sieving in ectomycorrhizal-dominated forests. Forests 13, 1263.
11.Sun Zhaolin, Wang Qingkui*, Zhu Yifan. 2022. Net carbon balance between priming and replenishment of soil organic carbon with biochar addition regulated by N addition differing in contrasting forest ecosystems. Forests 13, 1710.
12.Zheng Wenhua, Li Renshan, Yang Qingpeng*, Zhang Weidong, Huang Ke, Guan Xin, Chen Longchi, Yu Xin, Wang Qingkui*, Wang Silong*. 2022. Allocation patterns of nonstructural carbohydrates in response to CO2 elevation and nitrogen deposition in Cunninghamia lanceolata saplings. Journal of Forestry Research, doi.org/10.1007/s11676-022-01533-x
13.Liu Shengen, Garcia-Palacios P, Tedersoo L, Guirado E, van der Heijden MGA, Wagg C, Chen Dima, Wang Qingkui, Wang Juntao, Singh BK, Delgado-Baquerizo M. 2022. Phylotype diversity within soil fungal functional groups drives ecosystem stability. Nature Ecology & Evolution 6, 900-909.
14.Li Renshan, Yang Qingpeng, Guan Xin, Chen Longchi, Wang Qingkui, Wang Silong, Zhang Weidong*. 2022. High quality litters with faster initial decomposition produce more stable residue remaining in a subtropical forest ecosystem. Catena 213, 106134.
15.Chen Tian, Hong Xiaomin, Hu Yalin, Wang Qingkui, Yu Lizhong, Wang Xianwei. 2022. Effects of litter input on the balance of new and old soil organic carbon under natural forests along a climatic gradient in China. Biogeochemistry, doi.org/10.1007/s10533-022-00970-4
16.Wei Junlan, Zhang Qianqian, Wang Qingkui, Tian Peng*. 2022. Effects of Litter Input on Temperature Sensitivity of Soil Organic Carbon Mineralization along a Forest Elevation Gradient. Forests 13, 1250.
17.Yu Xin, Guan Xin, Xiao F, Zhang W, Yang Q, Wang Q, Wang S, Chen L. 2022. Effects of Liming on the Morphologies and Nutrients of Different Functional Fine Roots of Cunninghamia lanceolata Seedlings. Forests 13, 822.
18.Chen Bohan, Wang J, Duan X, Zhao F, Zhang W, Guan X, Chen L, Wang Q, Wang S, Yang Q. 2022. Nitrogen Addition Decreases Rhizodepositionby Chinese Fir (Cunninghamia lanceolata (Lamb.) Hook) Seedlings and Its Distribution in Soil Aggregates. Forests 13, 1166.
19.Yu Kailiang, van den Hoogen J, Wang Zhiqiang, Averill C, Routh D, Smith GR, Drenovsky RE, Scow KM, Mo Fei, Waldrop MP, Yang Yuanhe, Tang Weize, De Vries FT, Bardgett RD, Manning P, Bastida F, Baer SG, Bach EM, Garcia C, Wang Qingkui, Ma Linna, Chen Baodong, He Xianjing, Teurlincx S, Heijboer A, Bradley JA, Crowther TW. 2022. The biogeography of relative abundance of soil fungi versus bacteria in surface topsoil. Earth Syst. Sci. Data 14, 4339–4350.
20.Tian Peng#, Liu Shengen#, Zhao Xuechao#, Sun Zhaolin, Yao Xiong, Niu Shuli, Crowther TW, Wang Qingkui*. 2021. Past climate conditions predict the influence of nitrogen enrichment on the temperature sensitivity of soil respiration. Communications Earth & Environment, 2:251.
21.Wang Qingkui*#, Zhao Xuechao#, Tian Peng#, Liu Shengen, Sun Zhaolin. 2021. Bioclimate and arbuscular mycorrhizal fungi regulate continental biogeographic variations in effect of nitrogen deposition on the temperature sensitivity of soil organic carbon decomposition. Land Degradation and Development, 32, 936-945.
22.Jing Y, Tian P, Wang Q*, Li W, Sun Z, Yang H. 2021. Effects of root dominate over aboveground litter on soil microbial biomass in global forest ecosystems. Forest Ecosystems 8: 38.
23.Zhu Q, Wang N, Duan B, Wang Qingkui, Wang Yanping*. 2021. Rhizosphere bacterial and fungal communities succession patterns related to growth of poplar fine roots. Science of the Total Environment 756, 143839.
24.Wang Chao, Qu L, Yang L, Liu D, Morrissey E, Miao R, Liu Z, Wang Q, Fang Y, Bai E*. 2021. Large-scale importance of microbial carbon use efficiency and necromass to soil organic carbon. Global Change Biology 27: 2039–2048.
25.Wang S#, Bao X#, Feng K#, Deng Y*, Zhou W, Shao P, Zheng T, Yao F, Yang S, Liu S., Shi R, Bai Z, Xie H, Yu J, Zhang Y, Zhang Y, Sha L, Song Q, Liu Y, Zhou J., Zhang Y., Li H, Wang Q, Han X, Zhu Y, Liang C*. 2021. Warming-driven migration of core microbiota indicates soil property changes at continental scale, Science Bulletin. Science Bulletin 66: 2025–2035.
26.Li Renshan, Zhang Y,Yu D, Wang Y, Zhao X, Zhang R, Zhang W, Wang Q, Xu M, Chen L, Wang S, Han J*, Yang Q*. 2021. The decomposition of green leaf litter is less temperature sensitive than that of senescent leaf litter. Geoderma 381, 114691.
27.Liu Shengen, Wang Hang, Tian Peng, Yao Xiong, Sun Hao, Wang Qingkui*, Delgado-Baquerizo Manuel*. 2020. Decoupled diversity patterns in bacteria and fungi across continental forest ecosystems. Soil Biology & Biochemistry, 144: 107763
28.Tian Peng, Razavi BS, Zhang Xuechen, Wang Qingkui*, Blagodatskaya E. 2020. Microbial growth and enzyme kinetics in rhizosphere hotspots are modulated by soil organics and nutrient availability. Soil Biology & Biochemistry, 141: 107662
29.Wang Hang, Liu Shengen, Kuzyakov Yakov, Zhan Pengfei, Wang Qingkui, Hettenhausen Christian, Xiao Derong, Qi Jinfeng, Zhang Zhijian. 2020. Differentiating microbial taxonomic and functional responses to physical disturbance in bulk and rhizosphere soils. Land Degradation and Development, 31, 2858-2871.
30.Li Renshan, Han Jianming, Guan Xin, Chi Yonggang, Zhang Weidong, Chen Longchi, Wang Qingkui, Xu Ming, Yang Qingoeng*, Wang Silong*. 2020. Crown pruning and understory removal did not change the tree growth rate in a Chinese fir (Cunninghamia lanceolata) plantation. Forest Ecology and Management 464, doi.org/10.1016/j.foreco.2020.118056
31.Tian Peng, Liu Shengen, Wang Qingkui*, Sun Tao, Evgenia Blagodatskaya. 2019. Organic N deposition favours soil C sequestration by decreasing priming effect. Plant Soil, 445, 439–451.
32.Sun Z, Liu S, Zhang T, Zhao X, Chen S, Wang Qingkui*. 2019. Priming of soil organic carbon decomposition induced by exogenous organic carbon input: a meta-analysis. Plant Soil, 443, 463-471.
33.Tian Peng, Mason-Jones Kyle, Liu Shengen, Wang Qingkui*, Sun Tao. 2019. Form of nitrogen deposition affects soil organic matter priming by glucose and cellulose. Biology & Fertility of Soils, 55: 383–391.
34.Wang Qingkui*, Zhao Xuechao, Chen Longchi, Yang Qingpeng, Chen Shi, Zhang Weidong*. 2019. Global synthesis of temperature sensitivity of soil organic carbon decomposition: Latitudinal patterns and mechanisms. Functional Ecology, 33:514–523.
35.Wang Qingkui*, Chen Longchi, Yang Qingpeng, Sun Tao, Li Changmeng. 2019. Different effects of single versus repeated additions of glucose on the soil organic carbon turnover in a temperate forest receiving long-term N addition. Geoderma 341, 59–67.
36.Yang Qingpeng, Zhang Weidong, Li Renshan, Zheng Wenhui, Yang Jinyan, Xu Ming, Guan Xin, Huang Ke, Chen Longchi, Wang Qingkui*, Wang Silong*. 2019. Effects of girdling on stem CO2 efflux and its temperature sensitivity in Chinese fir and sweetgum trees. Agricultural and Forest Meteorology, 268, 116–123?
37.Chen Longchi, Guan Xin, Li Maimei, Wang Qingkui*, Zhang Weidong, Yang Qingpeng, Wang Silong*. 2019. Spatiotemporal patterns of carbon storage in forest ecosystems in Hunan Province, China. Forest Ecology and Management, 432, 656–666.
38.Li Renshan, Zheng Wenhui, Yang Qingpeng*, Zhang Weidong, Chi Yonggang, Wang Peng, Xu Ming, Guan Xin, Chen Longchi, Wang Qingkui*, Wang Silong*. 2019. The response of soil respiration to thinning was not affected by understory removal in a Chinese fir (Cunninghamia lanceolata) plantation. Geoderma, 353, 47–54.
39.Jing Yanli, Wang Yi, Liu Shirong*, Zhang Xudong, Qingkui Wang, Liu Kuan, Yin You, Deng Jifeng. 2019. Interactive effects of soil warming, throughfall reduction, and root exclusion on soil microbial community and residues in warm-temperate oak forests. Applied Soil Ecology, 142, 52–58.
40.Wang Qingkui*, Liu Shengen, Tian Peng. 2018. Carbon quality and soil microbial property control the latitudinal pattern in temperature sensitivity of soil microbial respiration across Chinese forest ecosystems. Global Change Biology, 24:2841–2849
41.Wang Qingkui*, Liu Shengen, Wang Yanping*, Tian Peng, Sun Tao. 2018. Influences of N deposition on soil microbial respiration and its temperature sensitivity depend on N type in a temperate forest. Agricultural and Forest Meteorology, 260–261, 240–246.
42.Liu Shengen, Wang Hang, Deng Ye, Tian Peng, Wang Qingkui*. 2018. Forest conversion induces seasonal variation in microbial β-diversity. Environmental Microbiology, 20(1), 111–123
43.Sun Tao, Hobbie Sarah E, Berg Bj?rn, Zhang Hongguang, Wang Qingkui, Wang Zhengwen*, H?ttenschwiler Stephan. 2018. Contrasting dynamics and trait controls in first-order root compared with leaf litter decomposition. Proceedings of the National Academy of Sciences of the United States of America, 115, 10392-10397.
44.Yang Qingpeng, Li Renshan, Zhang Weidong, Zheng Wenhui, Wang Qingkui, Chen Longchi, Xu Ming, Wang Silong*. 2018. Decomposition of harvest residue needles of different needle ages in a Chinese fir (Cunninghamia lanceolata) plantation. Plant Soil, 423, 273–284.
45.Wang Qingkui*, Yu Youzhi, He Tongxin, Wang Yanping. 2017. Aboveground and belowground litter have equal contributions to soil CO2 emission: an evidence from a 4-year measurement in a subtropical forest. Plant Soil, 421:7–17.
46.Wang Qingkui*, Tian Peng, Liu Shengen, Sun Tao. 2017. Inhibition effects of N deposition on soil organic carbon decomposition was mediated by N types and soil nematode in a temperate forest. Applied Soil Ecology, 120, 105-110.
47.Wang Qingkui*, Zhang Weidong, Sun Tao, et al. 2017. N and P fertilization reduced soil autotrophic and heterotrophic respiration in a young Cunninghamia lanceolata forest. Agricultural and Forest Meteorology 232, 66–73.
48.Wang Qitong, Wang Nian, Wang Yanping*, Wang Qingkui, Duan Baoli. 2017. Differences in root-associated bacterial communities among fine root branching orders of poplar (Populus × euramericana (Dode) Guinier.). Plant Soil, 421, 123–135.
49.Wang Qingkui*, Zeng Zhangquan, Zhong Mcai. 2016. Soil moisture alters the response of soil organic carbon mineralization to litter addition. Ecosystems, 19(3), 450-460.
50.Wang Qingkui*, He Tongxin, Liu Jing. 2016. Litter input decreased the response of soil organic matter decomposition to warming in two subtropical forest soils. Scientific Reports 6, 33814; doi: 10.1038/srep33814.
51.Wang Qingkui*, Zhong Micai. 2016. Composition and mineralization of soil organic carbon pools in four single-tree species forest soils. Journal of Forestry Research 27(6): 1277–1285.
52.He Tongxin, Wang Qinkui*, Wang Silong, Zhang Fangyue. 2016. Nitrogen addition altered the effect of belowground C allocation on soil respiration in a Subtropical Forest. PLoS ONE 11(5): e0155881. doi:10.1371/journal. pone.0155881.?
53.Zhang Weidong, Chao Lin, Yang Qingpeng, Wang Qingkui, et al. 2016. Litter quality mediated nitrogen effect on plant litter decomposition regardless of soil fauna presence. Ecology, 97(10), 2834–2843.
54.Chen Longchi*, Wang Silong*, Wang Qingkui. 2016. Ecosystem carbon stocks in a forest chronosequence in Hunan Province, South China. Plant and Soil, 409, 217-228
55.Xia Zongwei, Bai Edith*, Wang Qingkui, et al. 2016. Biogeographic distribution patterns of bacteria in typical Chinese forest soils. Frontiers in Microbiology, 7:1106.doi: 10.3389/fmicb.2016.01106.
56.Wang Yanping*, Li Chuanrong, Wang Qingkui, et al. 2016. Environmental behaviors of phenolic acids dominated their rhizodeposition in boreal poplar plantation forest soils. Journal of Soils and Sediments 16, 1858–1870.
57.Sun Tao, Dong Lili, Zhang Lili, Wu Zhijie, Wang Qingkui, Li Yuanyuan, Zhang Hongguang, Wang Zhengwen*. 2016. Early stage fine-root decomposition and its relationship with root order and soil depth in a Larix gmelinii plantation. Forests 7, 234; doi:10.3390/f7100234.
58.Li Weibin, Jin Changjie, Guan Dexin, Wang Qingkui, Wang Anzhi, Yuan Fenghui, Wu Jiabing*. 2015. The effects of simulated nitrogen deposition on plant root traits: A meta-analysis. Soil Biology & Biochemistry 82, 112-118.
59.Wang Qingkui*, Wang Yanping, Wang Silong*, Tongxin He, Liu Li. 2014. Fresh carbon and nitrogen inputs alter organic carbon mineralization and microbial community in forest deep soil layers. Soil Biology & Biochemistry 72, 145-151.
60.Wang Qingkui*, Wang Silong, Tongxin He, Liu Li, Wu Jiabing. 2014. Response of organic carbon mineralization and microbial community to leaf litter and nutrient additions in subtropical forest soils. Soil Biology & Biochemistry 71, 13-20.?
61.Wang Qingkui*, Tongxin He, Wang Silong, Liu Li. 2013. Carbon input manipulation affects soil respiration and microbial community composition in a subtropical coniferous forest. Agricultural and Forest Meteorology 178-179, 152–160.?
62.Wang Qingkui*, Wang Silong, Zhong Micai. 2013. Ecosystem carbon storage and soil organic carbon stability in pure and mixed stands of Cunninghamia lanceolata and Michelia macclurei. Plant and Soil, 370:295–304.?
63.Wang Qingkui*, Zhong Micai, Wang Silong. 2013. Home-field advantage of litter decomposition and nitrogen release in forest ecosystems. Biology & Fertility of Soils 49, 427-434.?
64.Wang Qingkui, Liu Suping, Wang Silong*. 2013. Debris manipulation alters soil CO2 efflux in a subtropical plantation forest. Geoderma 193, 316-322.?
65.Wang Qingkui*, Fuming Xiao, Tongxin He, Wang Silong. 2013. Responses of labile soil organic carbon and enzyme activity in mineral soils to forest conversion in the subtropics. Annals of Forest Science 70:579–587.?
66.Wang Qingkui*, Fuming Xiao, Zhang Fangyue, Wang Silong. 2013. Labile soil organic carbon and microbial activity in three subtropical plantations. Forestry 86, 569–574.?
67.Wang Qingkui*, Zhong Micai, Wang Silong. 2012. A meta-analysis on the response of microbial biomass, dissolved organic matter, respiration, and N mineralization in mineral soil to fire in forest ecosystems. Forest Ecology and Management 271, 91–97.?
68.Wang Qingkui*, Xiao Fuming, Wang Silong, Xu Guangbiao. 2012. Response of selected soil biological properties to stump presence and age in a managed subtropical forest ecosystem. Applied Soil Ecology 57, 59–64.?
69.Wang Qingkui*, Wang Silong. 2011. Response of labile soil organic matter to changes in forest vegetation in subtropical regions. Applied Soil Ecology 47, 210–216.?
70.Wang Qingkui*, Wang Silong, Yu Xiaojun. 2011. Decline of soil fertility during forest conversion of secondary forest to Chinese fir plantations in subtropical China. Land Degradation and Development 22, 444–452.?
71.Wang Qingkui, Wang Silong*, Xu Guangbiao, Fan Bing. 2010. Conversion of secondary broadleaved forest into Chinese fir plantation alters litter production and potential nutrient returns. Plant Ecology 209, 269-278.?
72.Liu Yanxin, Wang Silong*, Wang Qingkui, Zhang Jian. 2010. Effects of mixed-species leaf litter on litter decomposition and soil microbial communities in experimental subtropical plantation forest. Journal of Food, Agriculture & Environment 8, 1102–1108.?
73.Wang Qingkui, Wang Silong*, Zhang Jian. 2009. Assessing the effects of vegetation types on carbon storage fifteen years after reforestation on a Chinese fir site. Forest Ecology and Management 258, 1437–1441.?
74.Wang Qingkui, Wang Silong*, Huang Yu. 2009. Leaf litter decomposition in the pure and mixed plantations of Cunninghamia lanceolata and Michelia macclurei. Biology & Fertility of Soils 45, 371–377.?
75.Zhang Jian, Wang Silong*, Feng Zongwei, Wang Qingkui. 2009. Carbon mineralization of soils from native evergreen broadleaf forest and three plantations in mid-subtropic China. Communications in Soil Science and Plant Analysis. 40, 1964–1982.?
76.Zhang Jian, Wang Silong*, Feng Zongwei, Wang Qingkui. 2009. Stability of soil organic carbon changes in successive rotations of Chinese fir (Cunninghamia lanceolata (Lamb.) Hook) plantations. Journal of Environmental Sciences 21, 352–359.
77.Wang Qingkui, Wang Silong*, Liu Yanxin. 2008. Responses to N and P fertilization in a young Eucalyptus dunnii plantation: microbial properties, enzyme activities and dissolved organic matter. Applied Soil Ecology 40, 484–490.?
78.Wang Qingkui, Wang Silong*, Huang Yu. 2008. Comparisons of litterfall, litter decomposition and nutrient return in a monoculture Cunninghamia lanceolata and a mixed stand in southern China. Forest Ecology and Management 255, 1210–1218.?
79.Wang Qingkui, Wang Silong*. 2007. Soil organic matter under different forest types in Southern China. Geoderma 142, 349–356.?
80.Wang Qingkui, Wang Silong*, Fan Bing, Yu Xiaojun. 2007. Litter production, leaf litter decomposition and nutrient return in Cunninghamia lanceolata plantations in south China: effect of planting conifers with broadleaved species. Plant and Soil 297, 201–211.
81.Wang Qingkui, Wang Silong*. 2008. Soil microbial properties and nutrients in pure and mixed Chinese fir plantations. Journal of Forestry Research 19, 131–135.?
82.Wang Qingkui, Wang Silong*. 2006. Microbial biomass in subtropical forest soils: effect of conversion of natural secondary broad-leaved forest to Cunninghamia lanceolata plantation. Journal of Forestry Research 17, 197–200.?
83.Wang Qingkui, Wang Silong*, Deng Shijian. 2005. Comparative study on active soil organic matter in Chinese fir plantation and Native broad-leaved forest in subtropical China. Journal of Forestry Research 16, 23–26.?
84.王清奎*, 田鵬, 孫兆林, 趙學(xué)超. 2020. 森林土壤有機(jī)質(zhì)研究的現(xiàn)狀與挑戰(zhàn). 生態(tài)學(xué)雜志 39 (11): 3829-3843.
85.朱依凡, 孫兆林, 王清奎*. 2020. 生物炭和氮添加對(duì)亞熱帶常綠闊葉林土壤有機(jī)碳分解與平衡的影響. 生態(tài)學(xué)雜志39(9): 2851-2859.
86.趙學(xué)超, 徐柱文, 劉圣恩, 王清奎*. 2020. 氮添加對(duì)多倫草原土壤微生物呼吸及其溫度敏感性的影響. 生態(tài)學(xué)報(bào)40(5): 1551-1561.
87.俞有志, 王清奎*, 于小軍, 鄭文輝. 2018. 施氮磷肥對(duì)杉木人工林土壤活性有機(jī)碳的影響. 生態(tài)學(xué)雜志37: 3053-3060
88.程云云, 孫濤, 王清奎, 梁文舉, 張曉珂. 2018. 模擬氮沉降對(duì)溫帶森林土壤線蟲群落組成和代謝足跡的影響. 生態(tài)學(xué)報(bào) 38: 475-484.
89.劉靜, 孫濤, 程云云, 王清奎*. 2017. 氮沉降和土壤線蟲對(duì)落葉松人工林土壤有機(jī)碳礦化的影響. 生態(tài)學(xué)雜志 36:2085–2093.
90.賀同鑫, 孫建飛, 李艷鵬, 胡寶清, 王清奎*. 2017. 環(huán)割對(duì)杉木和馬尾松人工林土壤微生物群落結(jié)構(gòu)的影響. 林業(yè)科學(xué) 53: 77–84.
91.李艷鵬, 賀同鑫, 王清奎*. 2016. 施肥對(duì)杉木林土壤酶和活性有機(jī)碳的影響. 生態(tài)學(xué)雜志35(10):2722–2731.
92.王清奎*, 李艷鵬, 張方月, 賀同鑫. 2015. 短期施氮肥降低杉木幼林土壤的根系和微生物呼吸. 植物生態(tài)學(xué)報(bào)39 (12): 1166–1175.
93.賀同鑫, 李艷鵬, 張方月, 王清奎*. 2015. 林下植被剔除對(duì)杉木林土壤呼吸和微生物群落結(jié)構(gòu)的影響. 植物生態(tài)學(xué)報(bào)39: 797–806.
94.張方月, 王清奎*, 于小軍. 2015. CO2濃度升高和N沉降對(duì)中亞熱帶森林土壤呼吸的短期影響. 生態(tài)學(xué)雜志34:1638–1643.
95.仲米財(cái), 王清奎*, 高洪, 于小軍. 2013. 中亞熱帶主要樹種凋落葉在杉木人工林中分解及氮磷釋放過(guò)程. 生態(tài)學(xué)雜志 32, 1653–1659.
96.王清奎*. 2011. 碳輸入方式對(duì)森林土壤碳庫(kù)和碳循環(huán)的影響研究進(jìn)展. 應(yīng)用生態(tài)學(xué)報(bào) 22, 1075–1081.
97.楊明, 汪思龍*, 張偉東, 王清奎. 2010. 杉木人工林生物量與養(yǎng)分積累動(dòng)態(tài). 應(yīng)用生態(tài)學(xué)報(bào) 21, 1674–1680.
98.王清奎*, 范冰, 徐廣標(biāo). 2009. 亞熱帶地區(qū)闊葉林與杉木林土壤活性有機(jī)質(zhì)比較. 應(yīng)用生態(tài)學(xué)報(bào) 20, 1536–1542.
99.張劍, 汪思龍*, 王清奎, 劉燕新. 2009. 不同森林植被下土壤活性有機(jī)碳含量極其季節(jié)變化. 中國(guó)生態(tài)農(nóng)業(yè)學(xué)報(bào) 17, 41–47.
100.李榮華, 汪思龍*, 王清奎. 2008. 不同林齡馬尾松針葉凋落前后養(yǎng)分含量及回收特征. 應(yīng)用生態(tài)學(xué)報(bào) 19, 1443–1447.
101.王清奎, 汪思龍*, 于小軍, 張劍, 劉燕新. 2007. 常綠闊葉林與杉木林的土壤碳礦化潛力及其對(duì)土壤活性有機(jī)碳的影響. 生態(tài)學(xué)雜志 26, 1918–1923.
102.王清奎, 汪思龍*, 于小軍, 張劍, 劉燕新. 2007. 杉木與闊葉樹葉凋落物混合分解對(duì)土壤活性有機(jī)質(zhì)的影響. 應(yīng)用生態(tài)學(xué)報(bào) 18, 1203–1207.
103.王清奎, 汪思龍, 馮宗煒. 2006. 杉木純林與常綠闊葉林土壤活性有機(jī)碳庫(kù)的比較. 北京林業(yè)大學(xué)學(xué)報(bào) 28(5), 1–6.
104.何友軍, 王清奎, 汪思龍*, 于小軍. 2006. 杉木人工林土壤微生物生物量碳氮特征及其與土壤養(yǎng)分的關(guān)系. 應(yīng)用生態(tài)學(xué)報(bào) 17, 2292–2296.
105.王清奎, 汪思龍*, 高洪, 劉艷, 于小軍. 2005. 土地利用方式對(duì)土壤有機(jī)質(zhì)的影響. 生態(tài)學(xué)雜志 24(4), 360–363.
106.王清奎, 汪思龍*, 馮宗煒, 黃宇. 2005. 土壤活性有機(jī)質(zhì)及其與土壤質(zhì)量的關(guān)系. 生態(tài)學(xué)報(bào) 25, 513–519.
107.王清奎, 汪思龍*, 馮宗煒. 2005. 杉木人工林土壤可溶性有機(jī)質(zhì)及其與土壤養(yǎng)分的關(guān)系. 生態(tài)學(xué)報(bào) 25, 1299–1305.
108.王清奎, 汪思龍, 高洪, 于小軍. 2005. 杉木人工林土壤活性有機(jī)質(zhì)變化特征. 應(yīng)用生態(tài)學(xué)報(bào) 16, 1270–1274.
109.王清奎, 汪思龍*. 土壤團(tuán)聚體形成與穩(wěn)定機(jī)制及影響因素. 土壤通報(bào) 36, 415–421.
110.汪思龍*, 黃志群, 王清奎, 于小軍. 2005. 凋落物的樹種多樣性與杉木人工林土壤生態(tài)功能. 生態(tài)學(xué)報(bào) 25, 474–480.
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參編專著:
汪思龍,陳楚瑩編著《森林殘落物生態(tài)學(xué)》,科學(xué)出版社,2010;
朱永官主編《中國(guó)土壤微生物組》,浙江大學(xué)出版社
專利:
王清奎,井艷麗. 一種森林凋落物原位分解器. 實(shí)用新型. 專利號(hào):ZL 201920337023.X。
王清奎,關(guān)欣,江黎黎. 陶瓷杯土壤溶液取樣器. 實(shí)用新型. 專利號(hào):ZL 201721789676.9?!?/div>
審? 稿:
目前主要為Global Change Biology, Soil Biology & Biochemistry, Plant and Soil, Geoderma, Forest Ecology and Management, Ecosystems, Journal of Forestry Research, 植物生態(tài)學(xué)報(bào),應(yīng)用生態(tài)學(xué)報(bào),生態(tài)學(xué)雜志,生態(tài)環(huán)境學(xué)報(bào),亞熱帶資源與環(huán)境學(xué)報(bào)等學(xué)術(shù)期刊審稿。
國(guó)內(nèi)外學(xué)術(shù)任職:
Frontiers in Forests and Global Change、《生態(tài)學(xué)雜志》等學(xué)術(shù)期刊編委。中國(guó)林學(xué)會(huì)土壤學(xué)會(huì)森林土壤專業(yè)委員會(huì)委員、中國(guó)自然資源學(xué)會(huì)森林資源專業(yè)委員會(huì)委員、中國(guó)生態(tài)學(xué)學(xué)會(huì)生態(tài)系統(tǒng)專業(yè)委員會(huì)委員、中國(guó)生態(tài)學(xué)學(xué)會(huì)長(zhǎng)期生態(tài)專業(yè)委員會(huì)委員。