[1] 赵嘉鑫. 小麦条锈菌效应蛋白Pst14872靶标的鉴定及功能分析[D]. 杨凌: 西北农林科技大学, 2020.
[2] 郑立秋. 农杆菌及PEG介导向日葵核盘菌遗传转化体系的研究[D]. 大庆: 黑龙江八一农垦大学, 2021.
[3] 孙晓红, 陈明杰, 潘迎捷. 启动子克隆概述[J]. 食用菌学报, 2002(3): 57 − 62. doi:  10.3969/j.issn.1005-9873.2002.03.014
[4] LIYANAGE K K, KHAN S, BROOKS S, et al. Taxonomic revision and phylogenetic analyses of rubber powdery mildew fungi [J]. Microbial Pathogenesis, 2017, 105: 185 − 195. doi:  10.1016/j.micpath.2017.01.054
[5] LIYANAGE K K, KHAN S, MORTIMER P E, et al. Powdery mildew disease of rubber tree [J]. Forest Pathology, 2016, 46(2): 90 − 103. doi:  10.1111/efp.12271
[6] YIN J, WANG Y, ZHU L, et al. The determination of a novel inducible WY172 promoter derived from Oidium heveae HO-73 [J]. Plant Cell Tissue and Organ Culture, 2020, 143(2): 377 − 387. doi:  10.1007/s11240-020-01923-1
[7] WANG Y, RAJAOFERA M, ZHU L, et al. WY195, a new inducible promoter from the rubber powdery mildew pathogen, can be used as an excellent tool for genetic engineering [J]. Frontiers in Microbiology, 2020, 11: 610252. doi:  10.3389/fmicb.2020.610252
[8] 方思齐. 炭疽菌Colletotrichum siamense转录因子CsATF1功能分析及互作蛋白的筛选[D]. 海口: 海南大学, 2020.
[9] CHUNHUA L, GUIXIU H, FUCONG Z, et al. Functional characterization of CgPBS2, a MAP kinase kinase in Colletotrichum gloeosporioides, using osmotic stress sensitivity as a selection marker [J]. European Journal of Plant Pathology, 2018, 152: 801 − 813. doi:  10.1007/s10658-018-1529-1
[10] JIANG C, CAO S, WANG Z, et al. An expanded subfamily of G-protein-coupled receptor genes in Fusarium graminearum required for wheat infection [J]. Nat Microbiol, 2019, 4(9): 1582 − 1591. doi:  10.1038/s41564-019-0468-8
[11] 龙明滕, 梁晓宇, 杜艳楠, 等. 胶孢炭疽菌侵染橡胶树叶片染色方法的建立及显微观察[J]. 热带作物学报, 2021, 42(10): 7. doi:  10.3969/j.issn.1000-2561.2021.10.031
[12] 张浩东, 赵清梅, 薛佳祺, 等. 丝状真菌的转录调控启动子及其功能研究进展[J]. 农业科学研究, 2021, 42(4): 56 − 64. doi:  10.3969/j.issn.1673-0747.2021.04.010
[13] 林涛, 黄建忠. 丝状真菌启动子研究进展[J]. 安徽农业科学, 2013, 41(7): 2862 − 2863. doi:  10.3969/j.issn.0517-6611.2013.07.016
[14] WIEBE M G. Stable production of recombinant proteins in filamentous fungi–problems and improvements [J]. Mycologist, 2003, 17(3): 140 − 144. doi:  10.1017/S0269915X03003033
[15] MARGOLLES-CLARK E, HARMAN G E, PENTTILA M. Enhanced expression of endochitinase in Trichoderma harzianum with the cbh1 promoter of Trichoderma reesei [J]. Applied and Environmental Microbiology, 1996, 62(6): 2152 − 2155. doi:  10.1128/aem.62.6.2152-2155.1996
[16] HULL R, COVEY S N, DALE P. Genetically modified plants and the 35S promoter: assessing the risks and enhancing the debate [J]. Microbial Ecology in Health & Disease, 2000, 12(1): 1 − 5.
[17] MCELROY D, ZHANG W, CAO J, et al. Isolation of an efficient actin promoter for use in rice transformation [J]. The Plant Cell, 1990, 2(2): 163 − 171.
[18] CHRISTENSEN A H, SHARROCK R A, QUAIL P H. Maize polyubiquitin genes: structure, thermal perturbation of expression and transcript splicing, and promoter activity following transfer to protoplasts by electroporation [J]. Plant molecular biology, 1992, 18(4): 675 − 689. doi:  10.1007/BF00020010
[19] KUMMARI D, PALAKOLANU S R, KISHOR P B K, et al. An update and perspectives on the use of promoters in plant genetic engineering [J]. Journal of Biosciences, 2020, 45(1): 1 − 24. doi:  10.1007/s12038-019-9988-x
[20] 王雨卓. 诱导型启动子cbh1在高山被孢霉中的应用研究[D]. 无锡: 江南大学, 2020.