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Current Knowledge of Mango and Fruit Fly (Diptera: Tephritidae) Control in Myanmar: A Review
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作者 Kyaw Lin Maung Yin Yin Mon +7 位作者 Myat Phyu Khine Khin Nyein Chan Aye Phyoe Aye Thandar Soe Thae Yu Yu Han Wah Wah Myo Sein Su Su San Aye Aye Khai 《Advances in Entomology》 2021年第1期49-58,共10页
Mango is one of the largest commercial fruit<span style="font-family:Verdana;">s</span><span style="font-family:Verdana;"> in Myanmar and the fruit fly, </span><i>... Mango is one of the largest commercial fruit<span style="font-family:Verdana;">s</span><span style="font-family:Verdana;"> in Myanmar and the fruit fly, </span><i><span style="font-family:Verdana;">B</span></i><span style="font-family:Verdana;">. </span><i><span style="font-family:Verdana;">dorsalis</span></i><span style="font-family:Verdana;"> and </span><i><span style="font-family:Verdana;">B</span></i><span style="font-family:Verdana;">. </span><i><span style="font-family:Verdana;">correcta</span></i><span style="font-family:Verdana;"> are the major pests. Mango is a kind of native fruit which can grow well as natural vegetation throughout the entire country under the various climatic conditions. We aimed to point out overuse of insecticide application in agricultural sector of Myanmar and further criteria of effective fruit fly control techniques were also proposed for worldwide ecosystem. Traditional fruit fly control is primarily focused on the uncoordinated use of insecticide applications which is orchard-by-orchard strategy. However, in view of flying distance, this localized strategy is not successful and harms the ecosystem. Occasionally, fruit bagging technique was applied by some farmers. In Myanmar’s agricultural sector, numerous varieties of cheap insecticides which mostly imported from China were plentiful. While conventional insecticide application controls were implemented annually, the population of fruit flies increased year after year, particularly in tropical region. The requirement of technical-scientific research reduced the worldwide fruit fly records. Furthermore, traditional insecticide application approach inhibits the yield and quality of mangoes that have adversely affected international trade. Importantly, in long term period of the entire previous decade, the conventional insecticide application controls make more fruit fly infestation.</span> 展开更多
关键词 MANGOES Fruit Fly Control Technique insecticides application Myanmar
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Optimization of aviation adjuvants based on wettability analysis for insecticide application on maize using UAV
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作者 Yu Zang Zhiyan Zhou +7 位作者 Ying Zang Xiwen Luo Juan Liao Rui Ming Cancan Song Le Zi Rui Jiang Hanxiang Xiao 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2021年第5期11-18,共8页
Adjuvants can increase the control efficacy of diseases and insect pests by changing the physico-chemical properties of pesticides.Most of the aviation spray adjuvants are versions of ground adjuvants.Maize insecticid... Adjuvants can increase the control efficacy of diseases and insect pests by changing the physico-chemical properties of pesticides.Most of the aviation spray adjuvants are versions of ground adjuvants.Maize insecticide sprays with unmanned aerial vehicles(UAV),have problems such as relatively low droplet deposition rate and poor wettability.Hence,wettability research and optimization tests for aviation spray adjuvants are needed.The present study screened 12 spray adjuvants using physico-chemical property experiments.The adjuvants were applied to improve the droplet deposition and control efficacy in maize borers controlling by UAV.The selected spray adjuvants were Po2(a hyperbranched polymer adjuvant)and VO3(a vegetable oil adjuvant).Results showed that,(1)When Po2 was added in water-dispersible granules(WGs)at volume rate of 12 L/hm2,the dynamic surface tension(DST)of WGs was decreased by 37.41%,and the maize leaves were covered by droplets 100%,the droplet deposition was increased by 104%and maize borer control was increased by 46%;(2)VO3 decreased the surface tension of ultra-low-volume(ULV)formulation by 12.02%and the maize leaves were covered by droplets 100%.The effect of VO3 on improving the droplet deposition and control efficacy at 12 L/hm2 with ULV was not significant.Thus,the addition of aviation spray adjuvant to improve the wettability of WGs significantly improved the droplet deposition and control efficacy but it had no significant effect on the ULV formulation. 展开更多
关键词 unmanned aerial vehicles spray adjuvants WETTABILITY maize insecticide application
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