| [1] |
牟雪姣, 张强, 吴燕, 王雪娟. 切花月季保鲜技术研究进展[J]. 仲恺农业工程学院学报, 2023, 36(1): 63-70.
|
|
Mu X J, Zhang Q, Wu Y, Wang X J. Research progress on preservation technology of cut rose[J]. Journal of Zhongkai University of Agriculture and Engineering, 2023, 36(1): 63-70.(in Chinese)
|
| [2] |
Liu X, Cao X, Shi S, Zhao N, Li D, Fang P, Chen X, Qi W, Zhang Z. Comparative RNA-Seq analysis reveals a critical role for brassinosteroids in rose (Rosa hybrida) petal defense against Botrytis cinerea infection[J]. BMC Genetics, 2018, 19(1): 62.
|
| [3] |
陈宇春, 陈敏, 王其刚, 晏慧君, 唐开学, 邱显钦. 植物灰霉病及抗性研究进展[J]. 江苏农业科学, 2020, 48(15): 42-51, 63.
|
|
Chen Y C, Chen M, Wang Q G, Yan H J, Tang K X, Qiu X Q. Research progress of plant gray mold and resistance[J]. Jiangsu Agricultural Sciences, 2020, 48(15): 42-51, 63.(in Chinese)
|
| [4] |
谷莉莉, 陈长军, 陈永明, 马洪雨. 中国防治灰霉病杀菌剂的登记品种、现状与建议[J]. 农学学报, 2021, 11(11): 19-26.
|
|
Gu L L, Chen C J, Chen Y M, Ma H Y. Fungicides for controlling grey mold in China: Registered products, present situation and suggestions[J]. Journal of Agriculture, 2021, 11(11): 19-26.(in Chinese)
|
| [5] |
张永强, 王飞钊, 谢锦钿, 张景欣, 林壁润, 杨祁云, 沈会芳, 孙大元, 蒋成爱, 蒲小明. 不同植保器械在水稻不同生育期喷施农药的沉积率及雾滴参数[J]. 农药学学报, 2022, 24(2): 376-384.
|
|
Zhang Y Q, Wang F Z, Xie J T, Zhang J X, Lin B R, Yang Q Y, Shen H F, Sun D Y, Jiang C A, Pu X M. Pesticide deposition rates and droplet parameters of different plant protection instruments applied at different growth stages of rice[J]. Chinese Journal of Pesticide Science, 2022, 24(2): 376-384.(in Chinese)
|
| [6] |
袁会珠, 陈万权, 杨代斌, 齐淑华, 秦庆明. 药液浓度、 雾滴密度与氧乐果防治麦蚜的关系研究[J]. 农药学学报, 2000, 2(1): 58-62.
|
|
Yuan H Z, Chen W Q, Yang D B, Qi S H, Qin Q M. Relationship between the efficacy of wheat aphids control and the omethoate concentration, droplets density[J]. Chinese Journal of Pesticide Science, 2000, 2(1): 58-62.(in Chinese)
|
| [7] |
陈奕璇, 覃贵亮, 周晓欣, 黄军军, 蒙全, 吴俊辉, 闫晓静, 袁会珠. 不同植保机械喷施雾滴在水稻冠层沉积分布规律及对病虫害防效比较[J]. 中国水稻科学, 2022, 36(2): 207-214.
|
|
Chen Y X, Qin G L, Zhou X X, Hang J J, Meng Q, Wu J H, Yan X J, Yuan H Z. Deposition and distribution of droplets sprayed by different plant protection machinery in rice canopy and comparison of control effects on diseases and pests[J]. Chinese Journal of Rice Science, 2022, 36(2): 207-214.(in Chinese)
|
| [8] |
温晶, 陈杰新, 赵亚茹, 郑秋月, 郭云云. 5种植保机械在冬小麦田喷雾作业的效果评价[J]. 中国植保导刊, 2022, 42(1): 70-73, 82.
|
|
Wen J, Chen J X, Zhao Y R, Zheng Q Y, Guo Y Y. Evaluation of spraying performance of five plant protection machines in winter wheat fields[J]. China Plant Protection, 2022, 42(1): 70-73, 82.(in Chinese)
|
| [9] |
李颖, 祁兴华, 郑莹, 余朝阁, 赵小龙. 喷雾器喷头数量和喷雾压强对农药在番茄上的沉积率和防病效果的影响[J]. 农业工程技术, 2022, 42(10): 46-48.
|
|
Li Y, Qi X H, Zheng Y, Yu C G, Zhao X L. Effects of sprayer nozzle quantity and spraying pressure on pesticide deposition rate and disease control efficacy on tomato[J]. Agricultural Engineering Technology, 2022, 42(10): 46-48.(in Chinese)
|
| [10] |
陈盛德, 兰玉彬, 周志艳, 廖娟, 朱秋阳. 小型植保无人机喷雾参数对橘树冠层雾滴沉积分布的影响[J]. 华南农业大学学报, 2017, 38(5): 97-102.
|
|
Chen S D, Lan Y B, Zhou Z Y, Liao J, Zhu Q Y. Effects of spraying parameters of small plant protection UAV on droplet deposition distribution in citrus canopy[J]. Journal of South China Agricultural University, 2017, 38(5): 97-102.(in Chinese)
|
| [11] |
Wu L, Ma N, Jia Y C, Zhang Y, Feng M, Jiang C Z, Ma C, Gao J P. An ethylene-induced regulatory module delays flower senescence by regulating cytokinin content[J]. Plant Physiology, 2017, 173(1): 853-862.
|
| [12] |
崔丽, 王金凤, 秦维彩, 尹姣, 袁会珠. 机动弥雾法施用70%吡虫啉水分散粒剂防治小麦蚜虫的雾滴沉积密度与防效的关系[J]. 农药学学报, 2010, 12(3): 313-318.
|
|
Cui L, Wang J F, Qin W C, Yin J, Yuan H Z. Relationship between droplet density and field efficacy when applying imidacloprid 700WG against wheat aphids with knapsack mist-blower[J]. Chinese Journal of Pesticide Science, 2010, 12(3): 313-318.(in Chinese)
|
| [13] |
邱占奎, 袁会珠, 楼少巍, 纪明山, 于娟娟, 宋晓宇. 水溶性染色剂诱惑红和丽春红-G作为农药沉积分布的示踪剂研究[J]. 农药, 2007, 46(5): 323-325, 337.
|
|
Qiu Z K, Yuan H Z, Lou S W, Ji M S, Yu J J, Song X Y. The research of water soluble dyes of allura red and ponceau-G as tracers for determing pesticide spray distribution[J]. Agrochemicals, 2007, 46(5): 323-325, 337.(in Chinese)
|
| [14] |
Jensen P K, Olesen M H. Spray mass balance in pesticide application: A review[J]. Crop Protection, 2014, 61: 23-31.
|
| [15] |
国家市场监督管理总局、 国家标准化管理委员会. 主要切花产品采后处理技术规程: GB/T 23897-2024[S] (2024-03-15) [2026-03-11].
|
|
State Administration for Market Regulation, Standardization Administration of the People’s Republic of China. Technical code of practice for postharvest handling of major cut flower products: GB/T 23897-2024[S] (2024-03-15) [2026-03-11].(in Chinese)
|
| [16] |
中华人民共和国农业农村部. 农药田间药效试验准则(一)杀菌剂防治蔬菜灰霉病: GB/T17980.28-2000[S] (2000-02-01) [2026-03-11].
|
|
Ministry of Agriculture and Rural Affairs of the People’s Republic of China. Pesticide-guidelinesforthefieldefficacytrials(I)-Fungicidesagainstgreymouldofvegetables:GB/T17980.28-2000[S] (2000-02-01) [2026-03-11].(in Chinese)
|
| [17] |
Capdeville G, Paul N, Elad Y. Gray mold severity and vase life of rose buds after pulsing with citric acid, salicylic acid, calcium sulfate, sucrose and 8-hydroxyquinoline citrate[J]. Postharvest Biology and Technology, 2003, 29(2): 147-154.
|
| [18] |
Saffman P G, Meiron D I. Kinetic energy generated by the incompressible Richtmyer-Meshkov instability in a continuously stratified fluid[J]. Physics of Fluids A: Fluid Dynamics, 1989, 1(11): 1767-1771.
|
| [19] |
He L, Ding L, Zhang P, Li B, Mu W, Liu F. Impact of the equilibrium relationship between deposition and wettability behavior on the high-efficiency utilization of pesticides[J]. Pest Management Science, 2021, 77(5): 2485-2493.
|
| [20] |
Lee Y B, Kim W S. ClO2 dipping treatment inhibits gray mold on cut rose flowers during storage[J]. The Horticulture Journal, 2020, 89(4): 496-501.
|
| [21] |
Fisher R W, Menzies D I, Herne D C, Chiba M. Parameters of dicofol spray deposit in relation to mortality of European red mite[J]. Journal of Economic Entomology, 1974, 67(1): 124-126.
|
| [22] |
Munthali D C, Wyatt I J. Factors affecting the biological efficiency of small pesticide droplets against Tetranychus urticae eggs[J]. Pesticide Science, 1986, 17(2): 155-164.
|
| [23] |
Salyani M, Fox R D. Evaluation of spray quality by oil and water-sensitive papers[J]. Transactions of the ASAE, 1999, 42(1): 37-43.
|
| [24] |
袁会珠, 王国宾. 雾滴大小和覆盖密度与农药防治效果的关系[J]. 植物保护, 2015, 41(6): 9-16.
|
|
Yuan H Z, Wang G B. Effects of droplet size and deposition density on field efficacy of pesticides[J]. Plant Protection, 2015, 41(6): 9-16.(in Chinese)
|
| [25] |
刘秀娟, 周宏平, 郑加强. 农药雾滴飘移控制技术研究进展[J]. 农业工程学报, 2005, 21(1): 186-190.
|
|
Liu X J, Zhou H P, Zheng J Q. Research progress on pesticide droplet drift control technology[J]. Transactions of the Chinese Society of Agricultural Engineering, 2005, 21(1): 186-190.(in Chinese)
|
| [26] |
王国宾, 王十周, 陈鹏超, 韩小强, 单常峰, 陈盛德, 兰玉彬. 植保无人机喷施不同雾滴粒径药剂对其在棉花冠层沉积、穿透及脱叶催熟效果的影响[J]. 植物保护学报, 2021, 48(3): 493-500.
|
|
Wang G B, Wang S Z, Chen P C, Han X Q, Shan C F, Chen S D, Lan Y B. Effect of spraying droplet size with drones on deposition, penetration, and cotton harvest-aid efficacy[J]. Journal of Plant Protection, 2021, 48(3): 493-500.(in Chinese)
|
| [27] |
Grinstein A, Riven Y, Elad Y. Improved chemical control of botrytis blight in roses[J]. Phytoparasitica, 1997, 25(1): S87-S92.
|
| [28] |
Macnish A J, Morris K L, de Theije A, Mensink M G J, Boerrigter H A M, Reid M S, Jiang C Z, Woltering E J. Sodium hypochlorite: A promising agent for reducing Botrytis cinerea infection on rose flowers[J]. Postharvest Biology and Technology, 2010, 58(3): 262-267.
|
| [29] |
李辉辉, 朱晓锋, 赵莉, 秦坤焕, 徐兵强, 宋博, 陈浩宇. 不同施药方式防治枣瘿蚊的效果及效益分析[J]. 中国植保导刊, 2024, 44(9): 79-81.
|
|
Li H H, Zhu X F, Zhao L, Qin K H, Xu B Q, Song B, Chen H Y. Analysis of the effects and benefits of different pesticide application methods on the control of jujube gall mosquitoes[J]. China Plant Protection, 2024, 44(9): 79-81.(in Chinese)
|
| [30] |
王文慧. 切花月季花朵形态生理特性与灰霉病发生的关联分析[D]. 北京: 中国农业大学, 2024.
|
|
Wang W H. Analysis of the correlation between the morphological and physiological characteristics of cut rose flowers and the occurrence of gray mold disease[D]. Beijing: China Agricultural University, 2024.(in Chinese)
|