[1] 黎章矩, 程晓建, 戴文圣, 等.香榧品种起源考证[J].浙江林学院学报, 2005, 22(4):443-448.

LI Zhangju, CHENG Xiaojian, DAI Wensheng, et al. Origin of Torreya grandis 'Merrillii'[J]. J Zhejiang For Coll, 2005, 22(4):443-448.
[2] 黎章矩, 程晓建, 戴文圣, 等.浙江香榧生产历史、现状与发展[J].浙江林学院学报, 2004, 21(4):471-474.

LI Zhangju, CHENG Xiaojian, DAI Wensheng, et al. History and status and development of Torreya grandis in Zhejiang Province[J]. J Zhejiang For Coll, 2004, 21(4):471-474.
[3] 龚丽, 胡恒康, 胡渊渊, 等.香榧幼胚发育与胚性感受态之间的相关性[J].浙江农林大学学报, 2018, 35(5):861-867.

GONG Li, HU Hengkang, HU Yuanyuan, et al. Immature embryo development and embryogenic frequency in Torreya grandis 'Merrillii'[J]. J Zhejiang A&F Univ, 2018, 35(5):861-867.
[4] 吾中良, 徐志宏, 陈秀龙, 等.香榧病虫害种类及主要病虫害综合控制技术[J].浙江林学院学报, 2005, 22(5):545-552.

WU Zhongliang, XU Zhihong, CHEN Xiulong, et al. Species and controls of main diseases and insect pests of Torreya grandis 'Merrillii'[J]. J Zhejiang For Coll, 2005, 22(5):545-552.
[5] 吕军美, 郑文彪, 刘金龙, 等.石硫合剂防治香榧绿藻的试验[J].南方林业科学, 2015, 43(3):30-32, 54.

LÜ Junmei, ZHENG Wenbiao, LIU Jinlong, et al. Test of LSSS control of Chlorella[J]. South China For Sci, 2015, 43(3):30-32, 54.
[6] 徐志宏, 吾中良.香榧病虫害防治彩色图谱[M].北京:中国农业科学技术出版社, 2014.
[7] 陈李红, 陈秀龙, 金国龙.香榧绿藻的发生及防治试验[J].浙江林业科技, 2005, 25(2):44-45.

CHEN Lihong, CHEN Xiulong, JIN Guolong. Primary report on occurrence and control of Chlorella on Torreya grandis[J]. J Zhejiang For Sci Technol, 2005, 25(2):44-45.
[8] JI Jing, LONG Zhifeng, LIN Daohui. Toxicity of oxide nanoparticles to the green algae Chlorella sp.[J]. Chem Eng J, 2011, 170(2/3):525-530.
[9] CHEN Jianmeng, MA Jianyi, CAO Wei, et al. Sensitivity of green and blue-green algae to methyl tert-butyl ether[J]. J Environ Sci, 2009, 21(4):514-519.
[10] 卡丽比努尔·艾依提, 艾山江, 努尔古丽·热合曼, 等. 4组沙漠绿藻分子生物学鉴定及其生物学特性研究[J].食品与机械, 2017, 33(5):25-29.

Kalibinuel Ayit, Aishanjiang, Nurguri Rahman, et al. Morphological and molecular identification of four groups desert green algae[J]. Food Mach, 2017, 33(5):25-29.
[11] 周楠.水体中微囊藻毒素的分析提纯及去除实验研究[D].哈尔滨: 哈尔滨工业大学, 2009..

ZHOU Nan. Studies on the Analysis Extraction and Purification and Removal Experiment of Microcystin in Water[D]. Harbin: Harbin Institute of Technology, 2009.
[12] 卢梦瑶, 刘书亮, 胡凯弟, 等.酵素中1株高产酸醋酸菌的鉴定及其产酸特性[J].食品与机械, 2016, 32(12):64-69.

LU Mengyao, LIU Shuliang, HU Kaidi, et al. Identification of a strain of high yieldacetic acid bacteria from ferment and its acid-producing characteristics[J]. Food Mach, 2016, 32(12):64-69.
[13] BHATTACHARYA D, FRIEDL T, DAMBERGER S. Nuclear-encoded rDNA group Ⅰ introns:origin and phylogenetic relationships of insertion site lineages in the green algae[J]. Mol Biol Evol, 1996, 13(7):978-989.
[14] 苏敏. Fulgensia fulgens绿藻细胞的分离培养研究[J].安徽农业科学, 2008, 36(2):413-414.

SU Min. Isolation and culture of Fulgensia fulgens green algae cells[J]. J Anhui Agric Sci, 2008, 36(2):413-414.
[15] KUMAR S, NEI M, DUDLEY J, et al. MEGA:A biologist-centric software for evolutionary analysis of DNA and protein sequences[J]. Brief Bioinform, 2008, 9(4):299-306.
[16] NOVAKOVSKAYA I V, PATOVA E. Green algae in spruce forests in the north-east of European Russia[J]. Biologia, 2008, 63(6):836-842.
[17] 熊源新, 罗应春, 林跃光.贵州中部石灰岩地区气生藻生态研究[J].贵州农学院学报, 1994, 13(3):29-38.

XIONG Yuanxin, LUO Yingchun, LIN Yueguang. A study on ecology of aerophtische from limestone region in Guizhou Province[J]. J Guizhou Agric Sch, 1994, 13(3):29-38.
[18] 李润霞, 刘学敏, 赵祉鹤, 等.黄瓜的一种新病害——"绿藻病"[J].吉林农业大学学报, 2002, 24(2):106-107.

LI Runxia, LIU Xuemin, ZHAO Zhihe, et al. A new cucumber disease:"green algae disease"[J]. J Jilin Agric Univ, 2002, 24(2):106-107.
[19] 李芳芳, 隋正红, 龚春霞, 等. 5种沙漠微藻的分离鉴定及其18S rDNA保守区片段差异分析[J].石河子大学学报(自然科学版), 2012, 30(3):265-270.

LI Fangfang, SUI Zhenghong, GONG Chunxia, et al. Isolation and identification of five desert microalgae and analysis of 18S rDNA conserved fragment[J]. J Shihezi Univ Nat Sci, 2012, 30(3):265-270.
[20] 龚春霞, 王丹, 苟亚峰, 等. 4株沙漠土壤衣藻的分离培养及形态和分子鉴定[J].石河子大学学报(自然科学版), 2013, 31(3):294-300.

GONG Chunxia, WANG Dan, GOU Yafeng, et al. Study on morphology and molecular phylogeny of four desert chlamydomonas[J]. J Shihezi Univ Nat Sci, 2013, 31(3):294-300.
[21] 徐娜, 逄少军. 3种海洋浮游微藻的分子鉴定及培养条件研究[J].海洋科学, 2012, 36(10):13-25.

XU Na, PANG Shaojun. Molecular identification and culture trials of three marine microalgae[J]. Mar Sci, 2012, 36(10):13-25.
[22] 王雪青, 赵培, 胡萍, 等.金藻3011的培养条件优化及扩大培养研究[J].食品科学, 2006, 27(12):253-259.

WANG Xueqing, ZHAO Pei, HU Ping, et al. Optimization of cultural conditions of Isochrysis galbana Parks 3011 and its mass-cultural[J]. Food Sci, 2006, 27(12):253-259.
[23] 欧阳峥嵘, 温小斌, 耿亚红, 等.光照强度、温度、pH、盐度对小球藻(Chlorella)光合作用的影响[J].植物科学学报, 2010, 28(1):49-55.

OUYANG Zhengrong, WEN Xiaobin, GENG Yahong, et al. The effects of light intensities, temperatures, pH and salinities on photosynthesis of Chlorella[J]. Plant Sci J, 2010, 28(1):49-55.
[24] 李艳红.环境因子对铜绿微囊藻生长和光合作用的影响[D].南昌: 南昌大学, 2010.

LI Yanhong. The Effects of Environmental Factors on Growth and Photosynthesis of Microcystis aeruginosa[D]. Nanchang: Nanchang University, 2010.
[25] 张虎, 张桂艳, 温小斌, 等. pH对小球藻Chlorella sp. XQ-200419光合作用、生长和产油的影响[J].水生生物学报, 2014, 38(6):1084-1091.

ZHANG Hu, ZHANG Guiyan, WEN Xiaobin, et al. Effects of pH on the photosynthesis, growth and lipid production of Chlorella sp. XQ-200419[J]. Acta Hydrobiol Sin, 2014, 38(6):1084-1091.
[26] 赵娜, 冯鸣凤, 朱琳.不同pH值条件下Cr6+对小球藻和斜生栅藻的毒性效应[J].东南大学学报(医学版), 2010, 29(4):382-386.

ZHAO Na, FENG Mingfeng, ZHU Lin. Toxic effects of chromium(Cr6+) on Chlorella vulgaris and Scenedesmus obliquus at different pH[J]. J Southeast Univ Med Sci Ed, 2010, 29(4):382-386.
[27] 袁丽娜, 宋炜, 肖琳, 等.多环境因素全面正交作用对铜绿微囊藻生长的效应研究[J].南京大学学报(自然科学), 2008, 44(4):77-83.

YUAN Lina, SONG Wei, XIAO Lin, et al. The overall orthogonal design study of multifactor interaction on the growth of Microcystis aeruginosa in the presence of adnascent Pseudomonas sp.[J]. J Nanjing Univ Nat Sci, 2008, 44(4):77-83.
[28] EVANS E H, FOULDS I, CARR N G. Environmental conditions and morphological variation in the blue-green alga Chlorogloea fritschii[J]. J Gen Microbiol, 1976, 92(1):147-155.
[29] 刘京, 胡章立, 雷安平.藻类快速鉴定研究进展[J].生物技术通讯, 2005, 16(6):700-702.

LIU Jing, HU Zhangli, LEI Anping. The advances in identification for the algae[J]. Lett Biotechnol, 2005, 16(6):700-702.
[30] HONG J W, KIM S A, CHANG J W, et al. Isolation and description of a Korean microalga, Asterarcys quadricellulare KNUA020, and analysis of its biotechnological potential[J]. Algae, 2012, 27(3):197-203.
[31] OLMOS-SOTO J, PANIAGUA J, CONTRERAS R. Molecular identification of Dunaliella sp. utilizing the 18S rDNA gene[J]. Lett Appl Microbiol, 2000, 30(1):80-84.
[32] 李芳芳, 隋正红, 周伟, 等.两种沙漠微藻的形态学和分子生物学鉴定[J].干旱区资源与环境, 2013, 27(3):167-172.

LI Fangfang, YAN Zhenghong, ZHOU Wei, et al. Two kinds of desert microalgae identification according to morphological and molecular biology[J]. J Arid Land Resour Environ, 2013, 27(3):167-172.
[33] 徐芬.利用RAPD和18S rDNA基因序列对几种索科线虫系统发育分析[D].武汉: 华中师范大学, 2005.

XU Fen. Phylogenetic Analysis of Several S. elegans Using RAPD and 18S rDNA Gene Sequences[D]. Wuhan: Huazhong Normal University, 2005.
[34] FAGGIAN R, BULMAN S R, LAWRIE A C, et al. Specific polymerase chain reaction primers for the detection of Plasmodiophora brassicae in soil and water[J]. Phytopathology, 1999, 89(5):392-397.
[35] 罗立明, 胡鸿钧, 李夜光, 等.东海原甲藻的分子鉴定[J].海洋学报, 2006, 28(1):127-131.

LUO Liming, HU Hongjun, LI Yeguang, et al. Molecular identification on Prorocentrum donghaiense[J]. Acta Oceanologica Sin, 2006, 28(1):127-131.
[36] 郑俊斌, 张凤英, 马凌波, 等.米氏凯伦藻18S rDNA和转录间隔区序列分析[J].上海海洋大学学报, 2009, 18(6):680-685.

ZHENG Junbin, ZHANG Fengying, MA Lingbo, et al. Sequence analysis of Karenia mikimotoi based on ribosomal18S rDNA and internal transcribed space regions[J]. J Shanghai Ocean Univ, 2009, 18(6):680-685.
[37] ZOU Shanmei, FEI Cong, WANG Chun, et al. How DNA barcoding can be more effective in microalgae identification:a case of cryptic diversity revelation in Scenedesmus (Chlorophyceae)[J]. Sci Rep, 2016, 6:36822.