[1] Sharma R, Chisti Y, Banerjee U C. Production, purification, characterization, and applications of lipases[J]. Biotechnology Advances, 2001, 19(8): 627-662. [2] Zechner R, Zimmermann R, Eichmann T O, et al. FAT SIGNALS-lipases and lipolysis in lipid metabolism and signaling[J]. Cell Metabolism, 2012, 15(3): 279-291. [3] Rogalska E, Cudrey C, Ferrato F, et al. Stereoselective hydrolysis of triglycerides by animal and microbial lipases[J]. Chirality, 1993, 5(1): 24-30. [4] Bolsoni-Lopes A, Alonso-Vale M I C. Lipolysis and lipases in white adipose tissue–An update[J]. Archives of Endocrinology and Metabolism, 2015, 59: 335-342. [5] Seth S, Chakravorty D, Dubey V K, et al. An insight into plant lipase research–challenges encountered[J]. Protein Expression and Purification, 2014, 95: 13-21. [6] Singh A K, Mukhopadhyay M. Overview of fungal lipase: a review[J]. Applied Biochemistry and Biotechnology, 2012, 166: 486-520. [7] Luan B, Zhou R. A novel self-activation mechanism of Candida antarctica lipase B[J]. Physical Chemistry Chemical Physics, 2017, 19(24): 15709-15714. [8] Angajala G, Pavan P, Subashini R. Lipases: An overview of its current challenges and prospectives in the revolution of biocatalysis[J]. Biocatalysis and Agricultural Biotechnology, 2016, 7: 257-270. [9] Derewenda Z S. Structure and function of lipases[J]. Advances in Protein Chemistry, 1994, 45: 1-52. [10] Matsuda K. Chemical and biological studies of natural and synthetic products for the highly selective control of pest insect species[J]. Bioscience, Biotechnology, and Biochemistry, 2022, 86(1): 1-11. [11] 王嘉乐. 蝶蛹金小蜂对寄主脂代谢的影响及相关毒液蛋白功能的探索[D]. 杭州: 浙江大学, 2020. [12] Gargouri Y, Moreau H, Verger R. Gastric lipases: biochemical and physiological studies[J]. Biochimica et Biophysica Acta (BBA)-Lipids and Lipid Metabolism, 1989, 1006(3): 255-271. [13] Holmquist M. Alpha beta-hydrolase fold enzymes structures, functions and mechanisms[J]. Current Protein and Peptide Science, 2000, 1(2): 209-235. [14] Akoh C C, Lee G C, Liaw Y C, et al. GDSL family of serine esterases/lipases[J]. Progress in Lipid Research, 2004, 43(6): 534-552. [15] Williams C E, Nemacheck J A, Shukle J T, et al. Induced epidermal permeability modulates resistance and susceptibility of wheat seedlings to herbivory by Hessian fly larvae[J]. Journal of Experimental Botany, 2011, 62(13): 4521-4531. [16] Kraemer F B, Shen W J. Hormone-sensitive lipase[J]. Journal of Lipid Research, 2002, 43(10): 1585-1594. [17] Arreguín-Espinosa R, Arreguín B, González C. Purification and properties of a lipase from Cephaloleia presignis (Coleoptera, Chrysomelidae)[J]. Biotechnology and Applied Biochemistry, 2000, 31(3): 239-244. [18] Grillo L A M, Majerowicz D, Gondim K C. Lipid metabolism in Rhodnius prolixus (Hemiptera: Reduviidae): role of a midgut triacylglycerol-lipase[J]. Insect Biochemistry and Molecular Biology, 2007, 37(6): 579-588. [19] Pistillo D, Manzi A, Tino A, et al. The Drosophila melanogaster lipase homologs: a gene family with tissue and developmental specific expression[J]. Journal of Molecular Biology, 1998, 276(5): 877-885. [20] Mueller J L, Ripoll D R, Aquadro C F, et al. Comparative structural modeling and inference of conserved protein classes in Drosophila seminal fluid[J]. Proceedings of the National Academy of Sciences, 2004, 101(37): 13542-13547. [21] 郑乐怡. 中国的蠋蝽属Arma Hahn (半翅目: 蝽科)[J]. 昆虫天敌, 1981, 3(4): 28-32. [22] Zou D, Wang M, Zhang L, et al. Taxonomic and bionomic notes on Arma chinensis (Fallou) (Hemiptera: Pentatomidae: Asopinae)[J]. Zootaxa, 2012, 3382(3382): 41-52. [23] 陈静, 张建萍, 张建华, 等. 蠋敌对双斑长跗萤叶甲成虫的捕食功能研究[J]. 昆虫天敌, 2007, 29(4): 149-154. [24] 张晓军, 张健, 孙守慧. 蠋蝽对榆紫叶甲的捕食作用[J]. 中国森林病虫, 2016, 35(1): 13-15. [25] 闫家河, 王文亮, 刘芹, 等. 鲁西北地区美国白蛾主要发生规律的观察研究[J]. 山东林业科技, 2011, 41(2): 1-8. [26] 郭义, 赵灿, 李君摘, 等. 蠋蝽对荔枝蝽一龄若虫的捕食功能反应[J]. 中国生物防治学报, 2020, 36(5): 826. [27] 姜秀华, 王金红, 李振刚. 蠋敌生物学特性及其捕食量的试验研究[J]. 河北林业科技, 2003(3): 7-8. [28] 梁艳. 兰州南北两山林区蠋蝽生物学特性研究[J]. 甘肃林业, 2015(6): 31-32. [29] 郑志英, 陈瑜伟, 温宇光. 利用蠋蝽防治几种林业害虫的试验[J]. 生物防治通报, 1992, 8(4): 155-156. [30] 梁文凯, 刘莎, 王玉琴, 等. 蠋蝽丝氨酸蛋白酶抑制剂基因鉴定及其表达特征分析[J]. 环境昆虫学报, 2024, 46(3): 1-15 [31] Mrdaković M, Lazarević J, Perić-Mataruga V, et al. Partial characterization of a lipase from gypsy moth (Lymantria dispar L.) larval midgut[J]. Folia Biologica (Kraków), 2008, 56(1-2): 103-110. [32] Minh B Q, Schmidt H A, Chernomor O, et al. IQ-TREE 2: new models and efficient methods for phylogenetic inference in the genomic era[J]. Molecular Biology and Evolution, 2020, 37(5): 1530-1534. [33] Horne I, Haritos V S, Oakeshott J G. Comparative and functional genomics of lipases in holometabolous insects[J]. Insect Biochemistry and Molecular Biology, 2009, 39(8): 547-567. [34] Park Y, Aikins J, Wang L J, et al. Analysis of transcriptome data in the red flour beetle, Tribolium castaneum[J]. Insect Biochemistry and Molecular Biology, 2008, 38(4): 380-386. [35] Winkler F K, d’Arcy A, Hunziker W. Structure of human pancreatic lipase[J]. Nature, 1990, 343(6260): 771-774. [36] Aoki J, Inoue A, Makide K, et al. Structure and function of extracellular phospholipase A1 belonging to the pancreatic lipase gene family[J]. Biochimie, 2007, 89(2): 197-204. [37] Aoki J, Nagai Y, Hosono H, et al. Structure and function of phosphatidylserine-specific phospholipase A1[J]. Biochimica et Biophysica Acta (BBA)-Molecular and Cell Biology of Lipids, 2002, 1582(1-3): 26-32. [38] Horne I, Haritos V S. Multiple tandem gene duplications in a neutral lipase gene cluster in Drosophila[J]. Gene, 2008, 411(1-2): 27-37. [39] Grönke S, Mildner A, Fellert S, et al. Brummer lipase is an evolutionary conserved fat storage regulator in Drosophila[J]. Cell Metabolism, 2005, 1(5): 323-330. [40] Kim K W, Zhao L, Donato Jr J, et al. Steroidogenic factor 1 directs programs regulating diet-induced thermogenesis and leptin action in the ventral medial hypothalamic nucleus[J]. Proceedings of the National Academy of Sciences, 2011, 108(26): 10673-10678. [41] Choi Y H, Fujikawa T, Lee J, et al. Revisiting the ventral medial nucleus of the hypothalamus: the roles of SF-1 neurons in energy homeostasis[J]. Frontiers in Neuroscience, 2013, 7: 39341. [42] Dow J A T. Insect midgut function[M]//Advances in Insect Physiology. Academic Press, 1987, 19: 187-328. [43] Hoffmann J A. The immune response of Drosophila[J]. Nature, 2003, 426(6962): 33-38. [44] Ponnuvel K M, Nakazawa H, Furukawa S, et al. A lipase isolated from the silkworm Bombyx mori shows antiviral activity against nucleopolyhedrovirus[J]. Journal of Virology, 2003, 77(19): 10725-10729. |