教育經歷
2003.09-2006.07,農學博士,動物醫學,四川農業大學
2000.09-2003.07,農學碩士,動物醫學,西南民族大學
1996.09-2000.07,農學學士,動物醫學,西南民族大學
工作經歷
2018.07-至今,大理大學,東喜瑪拉雅研究院
2006.09-2018.06,大理大學,農學與生物科學學院
榮譽獎勵
1. 云南省雙一流課程《微生物學》負責人,2020;
2.大理大學教學質量獎特等獎2次(2014、2016),一等獎1次(2015),二等獎1次(2017),教學質量優秀教師5次;
3.指導學生獲得過國家級競賽銅獎,省級金獎、銀獎、三等獎及校級各類獎勵多項
科研興趣
微生物生物資源挖掘、保護與應用;天然抗氧化產物;火生態學;流域生態學;微生物生物地理學
項目成果
1. 國家自然科學基金地區科學基金項目,32360002,火干擾下的捕食線蟲真菌適應機制及多樣性研究,32萬元,2024/01-2027/12,主持,在研
2. 大理州科技專項,202301A020023,三江并流區微生物源天然抗氧化劑的篩選,2024/01-2026/12,40萬元,主持,在研
3. 國家自然科學基金地區科學基金項目,31360013,基于GIS的云南捕食線蟲真菌系統發生生物地理學研究,2014/01-2017/12,50萬元,主持,結題
4. 國家自然科學基金地區科學基金項目,31100093,云南省溫泉捕食線蟲真菌生物多樣性研究,2012/01-2014/12,21萬元,主持,結題
5. 國家自然科學基金云南聯合項目,U1602262,滇西北高山溪流水生生物多樣性及演化研究,2017/01-2020/12,參與,200萬元,結題
代表性論文
(1) Zhang, F.; Yang, Y.-Q.; Zhou, F.-P.; Xiao, W.; Boonmee, S.; Yang, X.-Y. 2024. Multilocus Phylogeny and Characterization of Five Undescribed Aquatic Carnivorous Fungi (Orbiliomycetes). J. Fungi. 10, 81. https://doi.org/10.3390/jof10010081
(2) She Rong, Qi Fu-Liang, Chen Yi-Ting, Zhou Fa-Ping, Deng Wei, Lu Ya-Xian, Huang Zhi-Pang, Yang Xiao-Yan, Xiao Wen. 2023. Soil sampling methods for microbial study in montane regions. Global Ecology and Conservation.47:e2679.
(3) Yang, X.; Zhang, F.; Yang, Y.; Zhou, F.; Boonmee, S.; Xiao, W.; Yang, X. 2023. Conidia Fusion: A Mechanism for Fungal Adaptation to Nutrient-Poor Habitats. J. Fungi. 9, 755. https://doi.org/10.3390/jof9070755
(4) Zhang, F.; Yang, Y.-Q.; Zhou, F.-P.; Xiao, W.; Boonmee, S.; Yang, X.-Y. 2023. Morphological and Phylogenetic Characterization of Five Novel Nematode-Trapping Fungi (Orbiliomycetes) from Yunnan, China. Journal of Fungi. 9,735.
https:// doi.org/10.3390/jof907073Z5
(5) Zhang F, Boonmee S, Yang Y-Q, Zhou F-P, Xiao W, Yang X-Y. 2023. Arthrobotrys blastospora sp. nov. (Orbiliomycetes): A Living Fossil Displaying Morphological Traits of Mesozoic Carnivorous Fungi[J]. Journal of Fungi. 9(4):451. https://doi.org/10.3390/jof9040451
(6) Deng W, Zhang F, Li Y-P, Zhang X, Fornacca D, Yang X-Y and Xiao W. 2023. Uncovering
the biogeographic pattern of the widespread nematode-trapping fungi Arthrobotrys oligospora: watershed is the key[J]. Front. Microbiol. 14:1152751.
doi: 10.3389/fmicb.2023.1152751
(7) Deng W, Yu G-B, Yang X-Y, Xiao W.2023.Testing the passive sampling hypothesis: The role of dispersal in shaping microbial species- area relationship[J].
Front. Microbiol. 14:1093695. doi: 10.3389/fmicb.2023.1093695
(8) Jun, N., Yi-Ting, C., Yu-Ting, G., Cheng-Fa, Z., Li-Juan, L., Rong, S., Xiao-yan, Y., Wen, X., & Xu, Y. 2023. Antioxidant, anti-inflammatory, and anticancer function of Engleromyces goetzei Henn aqueous extract on human intestinal Caco-2 cells treated with t-BHP[J]. Food Science & Nutrition, 00, 1–14. https://doi.org/10.1002/ fsn3.3335
(9) Wei Deng, Na Li, Chao‐Zhi Zhang, Rui An, Xiao‐Yan Yang & Wen Xiao. 2023. Extinction drives a discontinuous temporal pattern of species–area relationships in a microbial microcosm system[J]. Scientific Reports. 13:3720. https://doi.org/10.1038/s41598-023-30685-x
(10) Wei Deng, Fa Zhang, Davide Fornacca, Xiao‐Yan Yang, Wen Xiao. 2023.Those Nematode‐Trapping Fungi That are not Everywhere: Hints Towards Soil Microbial Biogeography[J].
Journal of Microbiology. https://doi.org/10.1007/s12275-023-00043-7
(11) Yao-Quan Yang, Fa Zhang, Zheng-Qiang, Fa-Ping Zhou, Xiao-Yan Yang & Wen Xiao. 2023. Morphological and multigene phylogenetic analyses reveal two new nematode- trapping fungi (Arthrobotrys, Orbiliaceae) from Yunnan, China [J]. Phytotaxa. 591 (4): 263–272. https://doi.org/10.11646/phytotaxa.591.4.3
(12) Lu, Y.-X.; Deng, W.; Qi, F.-L.; Yang, X.-Y.; Xiao, W. 2023. Revived Amplicon Sequence Variants Monitoring in Closed Systems Identifies More Dormant Microorganisms [J]. Microorganisms. 11: 757.
(13) Rong S., Hai-Qing, W.; Fornacca, D.; Fei-Teng, L.; Fa, Z.; Yao-Quan, Y.; Fa-Ping, Z.; Xiao-Yan, Y.; Wen, X. 2023. Independence Effects of Heat and Ash on Forest Soil Nematode-Trapping Fungi Communities [J]. Fire., 6: 27. https://doi.org/10.3390/fire6010027
(14) Zhang F, Boonmee S, Bhat JD, Xiao W, Yang X-Y. 2022. New Arthrobotrys Nematode-Trapping Species (Orbiliaceae) from Terrestrial Soils and Freshwater Sediments in China[J]. J. Fungi, 8, 671. https://doi.org/10.3390/ jof8070671
(15) Deng, W., Cheng, Y.-T., Li, Z.-Q., Zhou, F.-P., Yang, X.-Y., Xiao, W. 2022. Passive sampling hypothesis did not shape microbial species–area relationships in open microcosm systems[J]. Ecology and Evolution, 12, e9634. https://doi.org/10.1002/ece3.9634
(16) Zhang F, Boonmee S, Monkai J, Yang X-Y, Xiao W. 2022. Drechslerella daliensis and D. xiaguanensis (Orbiliales, Orbiliaceae), two new nematode-trapping fungi from Yunnan, China [J]. Biodiversity Data Journal. 10: e96642. https://doi.org/10.3897/BDJ.10.e96642
(17) Deng Wei, Yuan Cai‐Lian, Li Na, Liu Shuo‐Ran,Yang Xiao‐Yan, Xiao Wen. 2022. Island Formation History Determines Microbial Species‐Area Relationships[J]. Microbial Ecology. https://doi.org/10.1007/s00248-021-01906-5
(18) Zhang Xin, Zhang Fa, Jiang Lin, Yang Yao-qian, Yang Xiao-yan, Xiao Wen. 2022. Two new nematode-trapping fungi (Arthrobotrys, Orbiliaceae) from Yunnan, China [J]. Phytotaxa. 568(3): 255-266.
(19) DengW, Liu LL, Yu GB, Li N, Yang XY, Xiao W. 2022. Testing the Resource Hypothesis of Species–Area Relationships: Extinction Cannot Work Alone [J]. Microorganisms. 10, 1993. https://doi.org/10.3390/microorganisms10101993
(20) Rong She, Xin-Juan Zhou, Hai-Qing Wang, Fa Zhang, Xiao-Yan Yang, Wen Xiao. 2021.Natural recovery from fire disturbance is more favorable than assisted recovery for the restoration of soil nematode- trapping fungi[J]. Can. J. Microbiol. 68: 329-339dx.
doi.org/10.1139/cjm-2021-0237
(21) Deng Wei, Wang Jia-Liang, Matthew B. Scott, Fang Yi-Hao, Liu Shuo-Ran, Yang Xiao-Yan, Xiao Wen. 2020. Sampling methods affect nematode trapping fungi biodiversity patterns across an elevational gradient[J]. BMC Microbiology. 20(1):15.
(22) She Rong, Zhou Xin-Juan, Wang Hai-Qing, Zhang Fa, Yang Xiao-Yan, Xiao Wen. 2020. Succession of soil nematode-trapping fungi following fire disturbance in forest[J]. Journal of Forest Research. 25(6): 433-438.
(23) Zhang F, Liu Shuoran, Zhou Xinjuan, Monkai J, Hongsanan S, Shang Qiuju, Hyde KD, Yang Xiaoyan. 2020. Fusarium xiangyunensis (Nectriaceae), a remarkable new species of nematophagous fungi[J]. Phytotaxa. 450(3): 272-284.
(24) Fa Zhang, Xin-Juan Zhou, Jutamart Monkai, Fei-Teng Li, Shuo-Ran Liu, Xiao-Yan Yang, Xiao Wen, Kevin D. Hude. 2020. Two new species of nematode-trapping fungi (Dactylellina, Orbiliaceae) from burned forest in Yunnan, China [J]. Phytotaxa. 452(1): 65-74.
(25) Liu Shuoran, Su Hongyan, Su Xijun, Zhang Fa, Liao Guanghui, Yang Xiaoyan. 2014. Arthrobotrys xiangyunensis, a novel nematode-trapping fungus from hot-spring in Yunnan, China [J]. Phytotaxa.174(2): 089-096.
(26) Yang Xiaoyan, Qi Xuefeng, Cheng Anchun, Wang Mingshu, Zhu Dekang, Jia Renyong, Chen Xiaoyue. 2010. Intestinal mucosal immune response in ducklings following oral immunization with attenuated duck enteritis virus vaccine [J]. The Veterinary Journal. 185: 199-203.
(27) 張欣, 齊宇坤, 張發, 鄧巍, 楊曉燕,肖文. 2023.金沙江流域捕食線蟲真菌空間分布格局及其驅動機制探究.長江流域資源與環境.32(3):515-523. (C刊,北大核心)
(28) 安睿, 鄧巍, 李政強, 李靜超, 楊曉燕. 2024. 密封泡菜母水的真菌群落動態及與理化因子的相關性[J/OL]. 微生物學通報. https://doi.org/10.13344/j.microbiol.china.230757(北大核心)
(29) 倪俊, 袁彩蓮, 佘容, 趙成法, 李麗娟, 楊旭, 楊曉燕. 2023. 細胞代次對t-BHP誘導Caco-2細胞構建氧化應激模型的影響[J/OL]. 食品工業科技. 44(5):60-66. doi.org/10.13386/j.issn1002-0306.2022050222.(北大核心)
(30) 姜林, 鄧巍, 張淑霞, 楊曉燕. 2023.野生鳥類趾爪攜帶細菌多樣性及其潛在致病性種群分析[J]. 中國公共衛生. 39(1):36-41.(北大核心)
(31) 張欣, 鄧巍, 朱婭佼, 李娜, 肖文, 楊曉燕. 2022. 瀾滄江兩條支流捕食線蟲真菌水陸分布差異及關聯性初探[J]. 生態學報. (12):1-8.(北大核心)
(32) 張欣, 張發, 鄧巍, 楊曉燕, 李娜, 肖文. 2022. 三江并流區瀾滄江干流捕食線蟲真菌的水陸分布模式探究[J]. 水生態學雜志. DOI:10.15928/j.1674-3075.202201020002.(北大核心)
(33) 姜林, 鄧巍, 李飛騰, 譚坤, 張淑霞, 楊曉燕. 2022. 鳥類傳播捕食線蟲真菌的可能性探究[J]. 野生動物學報. 43(2):412-420.(北大核心)
(34) 李靜超, 鄧巍, 佘容, 楊曉燕, 肖文. 2022. 泡菜母水中細菌群落的動態變化規律及結構解析[J]. 食品工業科技. 43(20):144-151(北大核心)
(35) 李政強, 鄧巍, 安睿, 張發, 李靜超, 楊曉燕. 2022. 泡菜母水細菌群落組成及潛在基因功能分析[J]. 食品研究與開發. 43(24):188-194.(北大核心)
(36) 周發平, 楊耀權, 張發, 李娜, 楊曉燕. 2022. 不同采樣策略影響土壤捕食線蟲真菌物種多樣性檢測結果[J]. 微生物學通報. 49(9):3591-3603,(北大核心)
(37) 鄧巍, 王家亮, 劉李蕾, 房以好, 劉碩然, 楊曉燕, 肖文. 2019. 坡向的尺度差異對大理蒼山捕食線蟲真菌分布格局的影響[J]. 生態學報. 39(17):6452-6459.(北大核心)
(38) 王海清, 馬瑞, 劉碩然, 李小艷, 楊曉燕. 2019. 酸奶中乳酸菌耐藥性[J]. 中國公共衛生. 35(5):1027-1031.(北大核心)
(39) 范喜杰, 張欣, 張發, 劉碩然, 蘇錫鈞, 楊曉燕. 2018. 一株自發產生孢子捕食器的捕食線蟲真菌—Dactylellina parvicolla WZ27[J]. 菌物學報. 37(3):305-313.(北大核心)
(40) 林慧彪, 李延鵬, 段繼霞, 夏豐雨, 熊和菊, 王嘉寶, 楊曉燕, 肖文. 2016.滇金絲猴腸道寄生線蟲的生防捕食線蟲真菌篩選[J]. 四川動物. 1:31-37.(北大核心)
獲批專利:
發明專利:楊曉燕, 佘容, 肖文. 一種刺激樹干上捕食線蟲真菌生長的營養基質及其制備方法和用法. ZL 202110865908.9
實用新型專利:楊曉燕, 王偉, 肖文, 胡靖, 林慧彪. 測定捕食線蟲真菌對植物寄生線蟲捕食率的輔助裝置. ZL 201621242750.0
執教課程
1. 主講《微生物學》(本科生),大理大學,2006-至今;
2. 主講《病毒與生命》(本科生),大理大學,2012-至今;
3. 主講《微生物協·迫下的人類社會》(本科生),大理大學,2023-;
4. 主講《生物危害與生物安全》(本科生),大理大學,2014-至今;
5. 主講《基因工程》,(本科生),大理大學,2013年;
6. 參講本科課程:《專業導論》,《大型真菌資源開發與應用》,《生物化學實驗》;
7. 參講碩士研究生課程:《生物多樣性導論》,《生態學前沿》