[1]刘君璞,马跃. 我国西瓜甜瓜种业的现状与发展对策[J]. 中国西瓜甜瓜,2000,13(3):2-6.
[2]王志丹. 中国甜瓜产业经济发展研究[D]. 北京:中国农业科学院,2014.
[3]程瑞,仲秀娟,李越,等. 从文献统计分析我国近10a甜瓜育种特点及方向[J]. 浙江农业科学,2021,62(5):861-865.
[4]Cohen Y,van den Langenberg K M,Wehner T C,et al. Resurgence of Pseudoperonospora cubensis:the causal agent of cucurbit downy mildew[J]. Phytopathology,2015,105(7):998-1012.
[5]任毓忠,翁晓梅,李国英,等. 10种药剂防治甜瓜霜霉病的效果试验[J]. 石河子大学学报(自然科学版),2004,22(增刊1):101-103.
[6]Savory E A,Granke L L,Quesada-Ocampo L M,et al. The cucurbit downy mildew pathogen Pseudoperonospora cubensis[J]. Molecular Plant Pathology,2011,12(3):217-226.
[7]冯东昕,李宝栋. 主要瓜类作物抗霜霉病育种研究进展[J]. 中国蔬菜,1997(2):45-48.
[8]Hiura M,Kawada S. On the overwintering of Peronoplasmopara cubensis (B. and C.) Clinton causing downy mildew of cucurbits.[J]. An Inst Cerc pentru Prot Pl,1933(10):151-159.
[9]杜志强,王迪,徐慧春,等. 甜瓜霜霉病的发生规律与防治研究进展[J]. 黑龙江农业科学,2019(10):152-156.
[10]田黎,陈向东,孙京城. 新疆黄瓜、甜瓜霜霉病侵染途径及防治[J]. 新疆农业科学,1995,32(3):133-134.
[11]杨柳燕,徐永阳,徐志红,等. 甜瓜霜霉病研究进展[J]. 中国瓜菜,2011,24(3):38-43.
[12]张全官,赵杰. 水蓼提取液对甜瓜霜霉病的防治效果[J]. 上海农业科技,2012(6):131.
[13]张学军,杨俊涛,李寐华,等. 甜瓜PI414723抗霜霉病基因SSR分子标记[J]. 华北农学报,2016,31(增刊1):86-91.
[14]吉训聪,王运勤,吴辉策,等. 海南省甜瓜霜霉病药剂防治试验[J]. 长江蔬菜,2009(18):79-80.
[15]张保民. 不同药剂防治甜瓜霜霉病药效试验研究[J]. 现代农业科技,2018(12):114,127.
[16]汪可心,李淑敏,孟繁君,等. 吉林省甜瓜霜霉病的发生规律及综合防治方法[J]. 农业开发与装备,2017(12):165.
[17]李丽娜.甜瓜霜霉病的发生与防治[J]. 现代农村科技,2020(5):29.
[18]Palti J,Cohen Y. Downy mildew of Cucurbits (Pseudoperonospora cubensis):the fungus and its hosts,distribution,epidemiology and control[J]. Phytoparasitica,1980,8(2):109-147.
[19]林乙明. 海南西南区大棚甜瓜霜霉病的发生特点与防治对策[J]. 农业与技术,2013,33(9):100.
[20]Horejsi T,Staub J E,Thomas C. Linkage of random amplified polymorphic DNA markers to downy mildew resistance in cucumber (Cucumis sativus L.)[J]. Euphytica,2000,115(2):105-113.
[21]傅俊范,傅淑云. 黄瓜霜霉菌生理分化研究[J]. 沈阳农业大学学报,1986,17(3):22-32.
[22]Ellis D E. Noteworthy diseases of cucurbits in North Carolina in 1949 and 1950[J]. Plant Disease Reporter,1951,35:91-93.
[23]Epps W M,Barnes W C . The increased susceptibility of the Palmetto cucumber to downy mildew in South Carolina[J]. Plant Disease Reporter,1952,36:14-15.
[24]Hughes M B,van Halteren F. Two biological forms of Pseudoperonospora cubensis[J]. Plant Disease Reporter,1952,36:365-367.
[25]Bains S S,Jhooty J S. Over wintering of Pseudoperonospora cubensis causing downy mildew of muskmelon[J]. Indian Phytopathol,1976,29:213-214.
[26]Thomas C E,Inaba T,Cohen Y. Physiological specialization in Pseudoperonospora cubensis[J]. Phytopathology,1987,77(12):1621-1624.
[27]Cohen Y,Meron I,Mor N,et al. A new pathotype of Pseudoperonospora cubensis causing downy mildew in cucurbits in Israel[J]. Phytoparasitica,2003,31(5):458-466.
[28]Burkhardt A,Day B. Transcriptome and small rnaome dynamics during a resistant and susceptible interaction between cucumber and downy mildew[J]. Plant Genome,2016,9(1):1-10.
[29]张雪辉. 黄瓜霜霉病发生与防治[J]. 北方园艺,2007(9):212-213.
[30]van Vliet G J A,Meysing W D. Inheritance of resistance to Pseudoperonospora cubensis Rost. in cucumber (Cucumis sativus L.)[J]. Euphytica,1974,23(2):251-255.
[31]岳海艳,刘玉辉,李迎春,等. 北方早春温室大棚甜瓜栽植应注意的几点问题[J]. 现代农业,2018(7):42-43.
[32]曾祥彬. 北方大棚甜瓜霜霉病的诊断与防治[J]. 蔬菜,2009(4):24-25.
[33]Cohen Y. The combined effects of temperature,leaf wetness,and inoculum concentration on infection of cucumbers with Pseudoperonospora cubensis[J]. Canadian Journal of Botany,1977,55(11):1478-1487.
[34]Cohen Y,Eyal H,Cohen A,et al. Evaluating downy mildew resistance in Cucumis melo L.[J]. Cucurbit Genetics Cooperative Report,1984(7):38-40.
[35]Perchepied L,Bardin M,Dogimont C,et al. Relationship between loci conferring downy mildew and powdery mildew resistance in melon assessed by quantitative trait loci mapping[J]. Phytopathology,2005,95(5):556-565.
[36]张学军,郭丽霞,马新力,等. 甜瓜种质资源抗霜霉病和蔓枯病苗期筛选与评价[J]. 中国瓜菜,2014,27(增刊1):38-40.
[37]张学军,郭丽霞,张健,等. 甜瓜霜霉病苗期抗病性鉴定方法建立及种质资源评价[J]. 新疆农业科学,2019,56(5):899-909.
[38]凌悦铭,李寐华,杨永,等. 基于BSA-Seq技术的甜瓜抗霜霉病 InDel标记开发[J]. 新疆农业科学,2021,58(12):2265-2273.
[39]Lebeda A,Stepankova J,Krskova M,et al. Resistance in Cucumis melo germplasm to Pseudoperonospora cubensis pathotypes[J]. Advances in Downy Mildew Research,2007,3:157-167.
[40]Thomas C E. Inheritance of resistance to downy mildew in Cucumis melo[J]. Plant Disease,1988,72(1):33.
[41]Kenigsbuch D. Inheritance of resistance to downy mildew in Cucumis melo PI 124112 and commonality of resistance genes with PI 124111F[J]. Plant Disease,1992,76(6):615.
[42]Cohen Y,Cohen S,Eyal H,et al. Inheritance of resistance to downy mildew in Cucumis melo PI124111[J]. Cucurbit Genet Coop Rep,1985(8):36-38.
[43]Ivanoff S S. Resistance of cantaloupes to downy mildew and the melon aphid[J]. Journal of Heredity,1944,35(2):35-39.
[44]Sowell J G,Corley W L. PI321005 (Tainan No. 2),a high-quality source of resistance to three cantaloup diseases[Mycosphaerella citrullina,Sphaerotheca fuliginea,Pseudoperonospora cubensis][J]. Plant Disease Reporter,1974,58:899-902.
[45]Cohen Y. Downy mildew of cucurbits[M]//Spencer D M. The downy mildews. NewYork:Academic Press,1981:341-354.
[46]Dhillon N P S,Ranjana R,Singh K,et al. Diversity among landraces of Indian snapmelon (Cucumis melo var. momordica)[J]. Genetic Resources and Crop Evolution,2007,54(6):1267-1283.
[47]Pandey K K,Singh B,Gupta R C,et al. Evaluation of cucumber (Cucumis sativus) genotypes against downy mildew[J]. Vegetable Science,2008,35(2):197-198.
[48]Cohen Y,Eya L H,Kenigsbueh D. Genetics,nature and utilization of resistance to downy and powdery mildew in musknlelon[C]//Institut National de la Recherche Agronomique. Proceed ings of the EUCARPIA meeting on cucurbit Genetics and breeding Avignon. France:INRA,1988:207-288.
[49]Epinat C,Pitrat M. Inheritance of resistance of three lines of muskmelon (Cucumis melo) to downy mildew (Pseudoperonospora cubensis)[J]. Proceedings of Cucurbitaceae,1989:133-135.
[50]Angelov D,Krasteva L. Dominant inheritance of downy mildew resistance in melons[J]. Acta Horticulturae,2000(510):273-276.
[51]Shashikumar K T,Pitchaimuthu M,Rawal R D. Generation mean analysis of resistance to downy mildew in adult muskmelon plants[J]. Euphytica,2010,173(1):121-127.
[52]杨柳燕. 甜瓜霜霉病(Pseudoperonospora cubensis)抗性遗传研究及SRAP分子标记[D]. 北京:中国农业科学院,2012:1-2.
[53]翟文强,伊鸿平,冯炯鑫,等. 新疆甜瓜的抗病性转育及其效果[J]. 西北农业学报,2003,12(1):57-59,62.
[54]张学军,杨俊涛,李寐华,等. 甜瓜PI414723抗霜霉病基因SSR分子标记[J]. 华北农学报,2016,31(增刊1):86-91.
[55]Fan J X,Qin Z W. Progress of breeding with molecular markers in Cucurbitaceae[J]. Journal of Northeast Agricultural University,2006,37(2):23.
[56]Garcia-Mas J,Benjak A,Sanseverino W,et al. The genome of melon (Cucumis melo L.)[J]. Proceedings of the National Academy of Sciences of the United States of America,2012,109(29):11872-11877.
[57]Yang L Y,Xu Y Y,Xu Z H,et al. Inheritance of downy mildew resisitance in melon and SRAP marker linked to resistance genes[J]. Jiangsu Journal of Agricultural Sciences,2012,28(5):1200-1202.
[58]贺玉花,徐永阳,徐志红,等. 甜瓜霜霉病抗性基因的SSR标记[J]. 江苏农业科学,2014,42(7):54-55.
[59]张学军,宁雪飞,杨永,等. 甜瓜PI390452霜霉病抗性基因的QTL定位[J]. 新疆农业科学,2016,53(12):2157-2165.
[60]张学军,杨文莉,张永兵,等. 采用GBS-seq技术构建甜瓜高密度遗传图谱[J]. 新疆农业科学,2019,56(10):1828-1838.
[1]夏瑾华,喻慧荣,邹如意,等.6-BA、赤霉素和水杨酸对甜瓜种子萌发的影响[J].江苏农业科学,2015,43(12):204.
Xia Jinhua,et al.Effects of 6-BA,GA3 and SA on seed germination of muskmelon[J].Jiangsu Agricultural Sciences,2015,43(18):204.
[2]付瑞敏,韩鸿鹏,张丽琴,等.葡萄霜霉病和白粉病拮抗菌的分离、鉴定和He-Ne 激光诱变[J].江苏农业科学,2013,41(08):122.
Fu Ruimin,et al.Isolation and identification of antagonistic bacteria against grape downy mildew and powdery mildew,and its mutation under He-Ne laser irradiation[J].Jiangsu Agricultural Sciences,2013,41(18):122.
[3]李宝燕,王英姿,刘学卿,等.3种杀菌剂对葡萄霜霉病菌的毒力测定和田间药效试验[J].江苏农业科学,2014,42(01):98.
Li Baoyan,et al.Toxicity tests and field control effects of three fungicides against grape downy mildew pathogen[J].Jiangsu Agricultural Sciences,2014,42(18):98.
[4]吕琛,李锋霞,马本学,等.甜瓜成熟度检测技术研究进展[J].江苏农业科学,2014,42(01):244.
Lv Chen,et al.Research progress of detection technology for maturity of Cucumis melo[J].Jiangsu Agricultural Sciences,2014,42(18):244.
[5]艾子凌,高鹏,杜黎黎,等.利用CAPS初步定位甜瓜MR-1白粉病抗性基因[J].江苏农业科学,2016,44(06):66.
Ai Ziling,et al.Location of powdery mildew resistant gene using CAPS makers in melon MR-1[J].Jiangsu Agricultural Sciences,2016,44(18):66.
[6]邢卫峰,于侦云,陈刘军,等.生物肥料“宁盾”对甜瓜枯萎病的防治效果[J].江苏农业科学,2014,42(03):78.
Xing Weifeng,et al.Control effect of biological fertilizer “Ningdun” on Fusarium oxysporum f. sp. melonis[J].Jiangsu Agricultural Sciences,2014,42(18):78.
[7]刘会宁,姚晓雯.葡萄霜霉病抗性与叶片生理生化指标的关系[J].江苏农业科学,2015,43(11):180.
Liu Huining,et al.Relationship between resistance of grape to Plasmopara viticola and physiological and biochemical indices in leaf[J].Jiangsu Agricultural Sciences,2015,43(18):180.
[8]王爱玲,张敏,郑贺云,等.甜瓜红心脆和早皇后再生体系的建立[J].江苏农业科学,2015,43(11):82.
Wang Ailing,et al.Establishment of regeneration system of sweet melon “Hongxincui” and “Zaohuanghou”[J].Jiangsu Agricultural Sciences,2015,43(18):82.
[9]王洋洋,袁丽伟,盛云燕.航天诱变甜瓜的形态学变异[J].江苏农业科学,2015,43(10):203.
Wang Yangyang,et al.Morphological variation of melon with space mutation[J].Jiangsu Agricultural Sciences,2015,43(18):203.
[10]齐付国,刘小飞,孙景生.不同供水水平对间作甜瓜叶片活性氧代谢及光合特性的影响[J].江苏农业科学,2015,43(09):199.
Qi Fuguo,et al.Effects of different water treatments on active oxygen metabolism and photosynthetic characteristics of intercropping melon leaf[J].Jiangsu Agricultural Sciences,2015,43(18):199.
[11]贺玉花,徐永阳,徐志红,等.甜瓜霜霉病抗性基因的SSR标记[J].江苏农业科学,2014,42(07):54.
He Yuhua,et al.SSR markers linked to downy mildew resistant gene in melon[J].Jiangsu Agricultural Sciences,2014,42(18):54.