[1] ZHAO Qian, SHI Longqing, HE Weiyi, et al. Genomic variation in the tea leafhopper reveals the basis of adaptive evolution [J/OL]. Genomics, Proteomics & Bioinformatics, 2022[2022-11-06]. doi: 10.1016/j.gpb.2022.05.011.
[2] YAO Qi, WANG Manqun, CHEN Zongmao. The relative preference of Empoasca onukii (Hemiptera: Cicadellidae) for oviposition on twenty-four tea cultivars [J]. Journal of Economic Entomology, 2022, 115(5): 1521 − 1530.
[3] 郭明明, 李兆群, 刘岩, 等. 双丙环虫酯对小贯小绿叶蝉的防治效果及残留评价[J]. 茶叶科学, 2022, 42(3): 358 − 366.

GUO Mingming, LI Zhaoqun, LIU Yan, et al. The control efficiency of afidopyropen to tea green leafhoppers and evaluation of residue in tea [J]. Journal of Tea Science, 2022, 42(3): 358 − 366.
[4] HAZZI N A, HORMIGA G. Molecular phylogeny of the tropical wandering spiders (Araneae, Ctenidae) and the evolution of eye conformation in the RTA clade [J]. Cladistics, 2023, 39(1): 18 − 42.
[5] MONSIMET J, COLINET H, DEVINEAU O, et al. Biogeographic position and body size jointly set lower thermal limits of wandering spiders [J]. Ecology and Evolution, 2021, 11(7): 3347 − 3356.
[6] LAPINSKI W, TSCHAPKA M. Vertical distribution of wandering spiders in central America [J]. The Journal of Arachnology, 2018, 46(1): 13 − 20.
[7] CHEN Shiyan, CHENG Honghao, WU Xiaomeng, et al. The dominant species of natural enemies of Pentatomidae in the peak period [J]. Entomological Research, 2023, 53(3): 95 − 105.
[8] 孙佳照, 吴筱萌, 徐悦, 等. 小贯小绿叶蝉与其主要天敌空间关系研究方法的比较[J]. 植物保护, 2021, 47(5): 190 − 197.

SUN Jiazhao, WU Xiaomeng, XU Yue, et al. A comparison of methods for investigating the spatial relationships between Empoasca onukii Matsuda and its main natural enemies [J]. Plant Protection, 2021, 47(5): 190 − 197.
[9] 吴筱萌, 徐悦, 张淋, 等. 4种茶园花蓟马与其天敌的空间关系及差异[J]. 应用昆虫学报, 2022, 59(4): 805 − 814.

WU Xiaomeng, XU Yue, ZHANG Lin, et al. Spatial relationships between Frankliniella intonsa and its natural enemies in four tea gardens [J]. Chinese Bulletin of Entomology, 2022, 59(4): 805 − 814.
[10] CHENG Honghao, CHEN Shiyan, WU Xiaomeng, et al. Analysis of the following effect of the natural enemies with Frankliniella intonsa in tea garden [J]. Entomological Research, 2022, 52(8): 356 − 366.
[11] ZHANG Lin, SUN Jiazhao, WU Xiaoment, et al. Comprehensive evaluation of natural enemy dominant species of Breuipalpus oboyats in tea garden in autumn and winter [J]. Entomological Research, 2021, 51(12): 650 − 657.
[12] CHENG Xian, ZHANG Lin, WU Xiaomeng, et al. Differences in the closeness of spatial relationship between Ricanidae in their prime and natural enemies in five kinds of tea gardens [J]. Entomological Research, 2022, 52(8): 367 − 375.
[13] 徐悦, 吴筱萌, 陈诗燕, 等. 茶园蜘蛛与广翅蜡蝉的时间和空间关系[J]. 浙江农林大学学报, 2022, 39(5): 1067 − 1079.

XUE Yue, WU Xiaomeng, CHEN Shiyan, et al. Temporal and spatial relationship between spiders and Ricanidae in tea gardens [J]. Journal of Zhejiang A&F University, 2022, 39(5): 1067 − 1079.
[14] BI Shoudong, QIAN Guangjing, SONG Xueyu, et al. Studies on dominant natural enemies of Ceroplastes rubens Maskell in tea gardens at different altitudes [J]. International Journal of Tropical Insect Science, 2022, 42(4): 2845 − 2852.
[15] 李兆群. 我国茶园有害生物生物防治技术研究及应用[J]. 中国茶叶, 2022, 44(5): 8 − 12.

LI Zhaoqun. Research and application of tea pest control technology in China [J]. China Tea, 2022, 44(5): 8 − 12.
[16] 黄焯钦. 生物防治技术在茶园病虫害绿色防控中的应用研究[J]. 种子科技, 2022, 40(5): 103 − 105.

HUANG Zhuoqin. Study on the application of biological control technology in the green control of diseases and pests in tea garden [J]. Seed Scicence &Technology, 2022, 40(5): 103 − 105.
[17] SENTIS A, HEMPTINNE J L, MAGRO A, et al. Biological control needs evolutionary perspectives of ecological interactions [J]. Evolutionary Applications, 2022, 15(10): 1537 − 1554.
[18] 徐学农, 吕佳乐, 王恩东. 国际捕食螨研发与应用的热点问题及启示[J]. 中国生物防治学报, 2013, 29(2): 163 − 174.

XU Xuenong, LÜ Jiale, WANG Endong. Hot spots in international predatory mite studies and lessons to us [J]. Chinese Journal of Biological Control, 2013, 29(2): 163 − 174.
[19] FAUST K, RAES J. Microbial interactions: from networks to models [J]. Nature Reviews Microbiology, 2012, 10(8): 538 − 550.
[20] ROSALIA S, YONARIZA Y, SYAHRAWATI M. Effect of farmer’s behavior in cocoa management on insect diversity in Salayo Cocoa Plantation, West Sumatra, Indonesia [J]. Biodiversitas Journal of Biological Diversity, 2022, 23(10): 5064 − 5073.
[21] ZOU Yan, SHEN Fangyuan, ZHONG Yanni, et al. Impacts of intercropped maize ecological shading on tea foliar and functional components, insect pest diversity and soil microbes [J/OL]. Plants, 2022, 11(14): 1883[2022-11-06]. doi: 10.3390/plants11141883.
[22] 张书平, 钱广晶, 毕守东, 等. 基于Fuzzy分析的假眼小绿叶蝉与天敌蜘蛛的数量关系[J]. 四川农业大学学报, 2019, 37(5): 653 − 662.

ZHANG Shuping, QIAN Guangjing, BI Shoudong, et al. Quantitative relationship between Empoasca vitis and spiders of natural enemies based on Fuzzy analysis [J]. Journal of Sichuan Agricultural University, 2019, 37(5): 653 − 662.
[23] 汪清, 潘萍, 欧阳勋志, 等. 马尾松-木荷不同比例混交林种内和种间竞争强度[J]. 生态学杂志, 2021, 40(1): 49 − 57.

WANG Qing, PAN Ping, OUYANG Xunzhi, et al. Intraspecific and interspecific competition intensity in mixed plantation with different proportion of Pinus massoniana and Schima superba [J]. Chinese Journal of Ecology, 2021, 40(1): 49 − 57.
[24] 邓聚龙. 灰色系统理论教程[M]. 武汉: 华中理工大学出版社, 1990: 33 − 84.

DENG Julong. Grey System Theory Tutorial [M]. Wuhan: Huazhong University of Science and Technology Press, 1990: 33 − 84.
[25] 贺仲雄. 模糊数学及其应用[M]. 天津: 天津科学技术出版社, 1984.

HE Zhongxiong. Fuzzy Mathematics and Its Application [M]. Tianjin: Tianjin Science and Technology Press, 1984.
[26] 邹运鼎. 模糊分级法在害虫分析中的应用[J]. 昆虫知识, 1986, 23(3): 138 − 140.

ZOU Yunding. Application of fuzzy classification method in pest analysis [J]. Chinese Bulletin of Entomology, 1986, 23(3): 138 − 140.
[27] 宋丁全, 姜志林, 郑作孟, 等. 光皮桦林优势树种间的竞争[J]. 南京林业大学学报, 2000, 24(4): 26 − 28.

SONG Dingquan, JIANG Zhilin, ZHENG Zuomeng, et al. Competition among dominant species in forest of Betula luminifera [J]. Journal of Nanjing Forestry University, 2000, 24(4): 26 − 28.
[28] PIANKA E R. The structure of lizard communities [J]. Annual Review of Ecology and Systematics, 1973, 4(1): 53 − 74.
[29] MAY R M. Stability and Complexity in Model Ecosystems [M]. Princeton: Princeton University Press, 2019.
[30] MAY R M. Some notes on estimating the competition matrix, α [J]. Ecology, 1975, 56(3): 737 − 741.
[31] 李永宏, 黄清臻. 新复极差法在生物统计中的应用[J]. 医学动物防制, 2002, 18(5): 270 − 272.

LI Yonghong, HUANG Qingzhen. Application of new complex range method in biostatistics [J]. Journal of Medical Pest Control, 2002, 18(5): 270 − 272.
[32] 张翠玲, 侯君合, 王芝云, 等. 青岛地区茶树无性系品种抗寒性比较试验[J]. 山东林业科技, 2008, 38(2): 30 − 31.

ZHANG Cuiling, HOU Junhe, WANG Zhiyun, et al. The comparison of the cold-resistance of the tea clone varieties in Qingdao district [J]. Journal of Shandong Forestry Science and Technology, 2008, 38(2): 30 − 31.
[33] CUSUMANO A, PERI E, BRADLEIGH VINSON S, et al. Interspecific extrinsic and intrinsic competitive interactions in egg parasitoids [J]. BioControl, 2012, 57(6): 719 − 734.