3,972 research outputs found
(30(3):277-284)小菜蛾抗藥性之研究-Ⅰ.調查方法之探討
A sampling method for surveying the insecticide-resistance in diamondback moth, Plutella xylostella L. has been developed in a large vegetable growing area in Taiwan. We identified a diamondback moth population which was homogeneous in the permethrin resistance and the coverage of this population was about five thousand hectares. The result indicated that the diamondback moth has the ability in mixing their different genetic strains in a quite large area. The fact made us believe that the distribution pattern survey of insecticide-resistance in diamondback moth served a real significance in the future pest management study of this pest. Based on the analysis of the data obtained, we further considered that sampling diamondback moth in five separated cruciferus fields in an area of five thousand hectares was both economical and accurate in measuring the insecticide resistance.為建立本省各蔬菜產地小菜蛾(Plutella xylostella L.)抗藥程度測定體系,必須了解小菜蛾抗藥品系空間分布與距離之關係,從而決定正確的取樣距離與頻度。此研究係在溪湖、永靖地區約140平方公里範圍之蔬菜栽培區,每隔四至五公里,設置樣本區一處,全區共設立四個樣本區,每一樣本區取樣四個採集點,各點相距約一至二百公尺,均為獨立之十字花科菜田,共計十六處採集點,將所採得小菜蛾幼蟲及蛹携返室內,用不噴殺蟲劑之甘藍菜飼養,取其第一代三齡幼蟲,測定其對培丹及百減靈的半量致死濃度,再將所得資料按區排列,以變方分析不同區間樣本之差異。尋得具共同抗藥程度之族群後,再比較小菜蛾樣本數與平均值之機差關係,由此一關係訂定最經濟的取樣數,但以不嚴重影響統計值的正確性為原則,在此,吾人訂定之容許機差為10%,取樣量為五個樣本點。因為研究結果顯示抗藥族群具相同抗藥力者可涵蓋五千公頃之廣,亦小菜蛾有相當的能力不斷地混合田間的生理小種,樣本點相距數百公尺之差異不大,而在無障礙物時此一現象尤其一致,因此在五千公頃範圍之蔬菜專業區內,只需獨立取樣五點,即可測出有代表性的抗藥程度,供預測之用
Redundancy relations and robust failure detection
Bibliography: p. 18-19."January, 1984""N00014-77-C-0224" "NGL-22-009-124"Edward Y. Chow, Xi-Cheng Lou, George C. Verghese, Alan S. Willsky
(50(4):80-89)小菜蛾抗藥性之研究-XI. 對數種新型殺蟲劑之抗性(1990 ~ 2001)
The diamondback moth (Plutella xylostella, DBM) has developed resistances to almost all conventional insecticides, for example, carbamates, organophosphorus compounds, synthetic pyrethroids, and insect growth regulators. The resistance and cross-resistance amongst these insecticides had been studied and clarified. A strategy by rotating selected insecticides to manage the resistant DBM has been proposed and tested in field, and the result is acceptable to farmers. From 1990 to 2000, many new insecticides with unique mode of actions were registered, and DBM control is no longer a problem for farmers. However, whether DBM also slowly develops resistance to those new insecticides is worth to study. DBM strains were collected from two largest vegetable districts, Hsi-hu and Lu-chu, for testing the resistance profile to newly registered insecticides. The test results confirmed that field DBM has developed resistance to new insecticides except diafenthiuron. The resistance ratios of abamectin and emamectin benzoate between two field DBM populations are 2500~5000 and 300~150 respectively; the resistance ratio of another GABA inhibitor, fipronil, between these two populations is 65~104. The resistance ratio of derivatives of cartap and carbamate, bensultap and benfuracarb between two different populations are 20~30 and 10~30 respectively. The resistance ratio of chiorfenapyr and spinosad between two different populations are 10 and 60 respectively. The DBM resistance to commercial product of neem extract, azadirachtin, is too high for field application practically since the high viscosity of the extracted product plugged the spray nuzzle of sprayer when the concentrated product was used.小菜蛾對傳統殺蟲劑氨基甲酸鹽劑、有機磷劑、合成除蟲菊精劑及昆蟲生長調節劑等抗性之偵測研究已於1980~1990年間完成,並經田間測試減緩抗性發展之對策,以因應此一易發生抗藥性害蟲之防治。而農藥工業界也於1990~2000年間陸續推出各類作用不同的新殺蟲劑,其中登記於小菜蛾者包括免速達、免扶克、阿巴汀、汰芬隆、芬普尼、克凡派、賜諾殺、因滅汀、印楝素及多種新型蘇力菌。但此一期間,本省之小菜蛾田間族群對上列新型藥劑是否已產生抗性則尚有待瞭解。本研究選定溪湖及路竹兩大蔬菜專業區進行採集及藥效測試,結果顯示除了汰芬隆因使用不多,未發現明顯抗藥性外,兩地區之小菜蛾對所有新登記藥劑均產生不同程度之抗性,尤甚者為效果極佳之阿巴汀及經純化之同型藥劑因滅汀,分別有2500~5000倍及150~300倍之抗藥性,而作用同為抑制GABA傳導之另一藥劑芬普尼,也有65~100倍抗性產生。分屬氨基甲酸鹽及培丹類似物之免扶克及免速達,於1997年時之抗性倍數已達20~30倍。作用於粒線體之克凡派抗性約10倍,小菜蛾對賜諾殺之抗性也已有60倍。印楝素亦有抗性產生,且因該藥劑本身極為黏稠,提高濃度更使噴藥不易,而無法使用。1996~97年監測時發現,溪湖及路竹小菜蛾對蘇力菌均有中等程度之抗性,路竹地區「向前走」及「獨佳」兩種製劑之效果均有下降趨勢,但2001年之測試結果仍維持原有之抗性程度。由以上資料研判,近10年來小菜蛾之防治因新藥劑不斷推出,而獲良好之控制,惟因對各類新藥之抗性已逐漸形成,未來5~10年間小菜蛾仍可能因對新藥劑之嚴重抗藥性,再度成為十字花科蔬菜之首要害蟲,故吾人應持續對新型藥劑進行抗性監測及抗藥性對策之研究
(47(2):142-158)應用IRAC Method No.7(葉片浸藥法)偵測小菜蛾對BPU類生長調節劑抗性之研究
Results of the IRAC Method NO.7 (leaf dipping method) were compared to those of the spray tower method in aspect of the resistance of diamondback moth (DBM), Plutella xylostella, to benzoylphenyl urea (BPU)-type insect growth regulators (IGR). The leaf dipping method resulted in 3.29-fold higher BPU-IGR deposit than the spray tower method. The treating period of leaf dipping lasts from 3rd instar to pupation, which is longer than the 48-hour period in the spray tower method. Both the higher dosage and the longer treating period of leaf dipping had resulted in higher sensitivity of the DBM to the treated doses of BPU-type IGR compared to the spray tower method. No anti-feeding effect of BPU-type IGR against DBM was observed.
The susceptibility of a susceptible strain to 4 BPUs, chlorfluazuron, teflubenzuron, hexaflumuron and flufenoxuron, had been determined by using the leaf dipping method. The reproducibility of this method was tested and substantiated by comparing LC50s in the n and n+6 generations of the susceptible strain. The ability of leaf dipping method in detecting the BPU-resistance in DBM was verified by the Independent Student’s t-distribution test, which confirmed the separation of LC50s of the susceptible strain from 3 BPU-resistant strains at 95 % fiducial limits.
We concluded that four to five IGR concentrations in 10-fold increments with water are sufficient for testing BPU-resistance in DBM, except for hexaflumuron, the increment should be adjusted to 4-5 fold. The leaf dipping method is not suitable for synergistic with piperonyl butoxide (PB) due to different methods were applied to the DBM.本研究係比較IRAC(Insecticide Resistance Action Committee)之建議方法,IRAC Method No. 7(葉片浸藥扶),與噴霧塔兩種方法測試小菜蛾對BPU類生長調節劑抗藥性之差異。葉片之沾藥量方面,葉片浸藥怯高出噴霧塔法3.29倍。葉片浸藥怯之測試時間為三齡蟲至化蛹,較一般噴霧塔方法之48小時為長,未發現小菜蛾對BPU類生長調節劑處理之葉片有拒食現象。由於葉片浸藥法採用較高的處理濃度與較長的測試時間,所得到之感度也比噴霧塔法更高。以葉片浸藥法測試感性與抗性品系小菜蛾對chlorfluazuron、teflubenzuron、hexaflumuron及flufenoxuron四種BPU類生長調節劑感度,並以感性品系測試間隔六代之LC50差異,以確認此一方按之重現性。經以Indcpendent student's t-test分析,證實葉片浸藥怯適用於小菜蛾對BPU類生長調節劑抗藥性之檢測,感性品系小菜蛾與供試之3個抗性品系小菜娥LC50在95%之信賴區間有顯著差異,因而可檢出抗性。四種供試之BPU類生長調節劑中,除hexaflumuron須以4~5倍之濃度間隔測試外,餘均以4至5個連續稀釋十倍之藥劑濃度測試,葉片浸藥法可有效檢測小菜蛾對BPU類生長調節劑之抗藥性。因IRAC Method No. 7係以餵食處理,不適用於BPU類生長調節添加協力劑piperonyl butoxid (PB)之測試
(32(2):146-154)小菜蛾抗藥性之研究-III.對三種殺蟲劑之抗性發展及引發之交互抗性
The toxicity information of twenty-two insecticides on the diamondback moth was obtained by testing a native susceptible I-lan strain. Top five insecticides of all tested compounds are synthetic pyrethroids. Decamethrin is the most effective insecticide and carbaryl is the worst one. Mevinphos and carbofuran are the most effective compound for organophosphates and carbamates respectively. The overall result of toxicity test of I-lan strain is quite comparable to that of a susceptible strain introduced from France. Carbofuran can rapidly induce the resistance developed in the diamondback moth with only minor cross resistance problem in other insecticides. Fenvalerate induced the resistance at a rate slower than that of carbofuran, hut it caused severe cross resistance in the moth. Cartap can only induce the resistance at a very slow rate and result in a moderate cross resistance problem. Both the cartap-resisted and the fenvalerate-resisted strains responded to fenvalerate and decamethrin in a similar fashion but were different from cypermethrin and permethrin.
本試驗係利用本所於民國 69-70 年間於宜蘭所採得之感性品系小菜蛾 Plutella xylostella ( L ),測定買種登記於防洽此蟲之殺蟲劑的基本毒理資料。所測得最有效之前五種均屬人工合成除蟲菊精 ( Synthetic pyrethroids ) ,而其中,又以第滅靈(Decamethrin )最為有效。數種有機磷劑效果均佳,但以美文松為第一,氨基甲酸鹽類之效果為不理想,僅加保扶尚可,加保利為所有供試藥劑中感度最差者(見表 1)。總體而言,所測得結果與劉明毅等人所測之 FS-品系反應類似(見表 2.)。但宜蘭品系對有機磷類殺蟲劑之感度偏低,似與該類藥劑已在本省使用多年,可能有某種程度之抗藥性發生有關。
在抗藥性誘發試驗中,係以加保扶,培丹及芬化利等三種殺蟲劑之百分之七十五致死濃度( LC75 )進行汰選,各世代所需用之 LC75 隨汰選次數而增加,故每代均需重新測定,吾人係以各世代需用之 LC75 增加速率為該藥劑誘發抗藥能力之指標(見圖 1)。一旦抗性品系之抗藥力達十至二十倍時,即可進行交互抗性之測定,測定仍依基本毒理測定方式進行,將所得結果與原有宜蘭品系毒理資料比較,以檢查各抗藥性品系對不同殺蟲劑之交互抗性是否發生及發生程度。
所得結果顯示,加保扶誘發抗藥能力最強,經過 8 世代之汰選,可誘發 36 倍抗藥能力。芬化利則次之, 12 代即可誘發 15 倍之抗藥力。三種供試殺蟲劑中,以培丹之抗性誘發能力最低,經 10 代僅誘發約 10 倍之抗藥力。
抗加保扶品系僅對其他殺蟲劑產生輕微或全無交互抗性,因此,如需於田間換用其他藥劑對付抗加保扶之小菜蛾時,選藥範圍較寬。抗芬化利者,則完全不同,其交互抗性範圍廣泛,程度較嚴重。抗培丹者居中,只對部分殺蟲劑發生中等程度之交互抗性(見表 3.)。
由以上結果,可預測使用不同化學防治藥劑時,小菜蛾之可能反應,因而選用較理想之藥劑進行防治
An open system for intravascular ultrasound imaging
Author name used in this publication: Cheng, Wang FaiInvited conference paper2011-2012 > Academic research: refereed > Invited conference paperVersion of RecordPublishedPublisher permissio
(33(4):418-423)Thiazoles一適用於防治抗藥性小菜蛾之新殺蟲劑
A recently introduced experimental insecticide - SN72129, belongs to a new class of chemical with insecticidal action, was tested against both the laboratory-bred and field collected resistant diamondback moths in this study. The result showed that the effectiveness of this new chemical is universal to all tested diamondback moths in spite of their already presented resistance to other insecticides. The information indicates that SN72129 bears a different mode of action and thus suffers no cross effect from all existing insecticide resistances.
為因應本省小菜蛾的抗藥問題,本所在各類新型殺蟲劑中尋得此種化學結構屬於 thiazoles 的藥劑,試驗代號為 SN72129 。此殺蟲劑具有不受現用各類殺蟲劑交互抗性影響之特性,由田間採得七種混合抗藥品系及室內培養之五種專屬抗藥品系小菜蛾所測對該藥劑之感度,均與感性品系無異,顯示此藥劑對小菜蛾之殺蟲效果,與該蟲是否已對現用殺蟲劑產生抗藥性無關。
所得結果顯示:此新型殺蟲劑極有希望成為未來防治本省小菜蛾的核心藥劑,可抒解目前小菜蛾抗藥性問題之困擾
, 062007 (2021)]
This article was originally published online on 17 June 2021 with an error in the author list. Alan Chen Hou Tsang should have appeared as Alan Cheng Hou Tsang. The author list is correct as it appears above. All online versions of the article were corrected on 18 June 2012; the article is correct as it appears in the printed version of the journal
(33(3):331-336)十字花科蔬菜三種鱗翅目害蟲抗藥性之探討
The imported cabbageworm, Pieris rapae Boisduval the tobacco cutworm, Spodoptera litura Fabricius; and the cabbage looper, Trichoplusia ni Hubner, were sampled from several major vegetable growing areas for the insecticide susceptibility study. For each species, susceptibilities differ among sampled populations resulted from resistance. The finding of this investigation indicated that the imported cabbageworms were free from the resistance problem and chemical control is a very effective measure for controlling this pest. The cabbage loopers are sensitive to neither mevinphos nor carbofuran and are very sensitive to the insecticidal action of synthetic pyrethroids. The test results clearly showed that resistance had developed in tobacco cutworms and the degree of resistance varied from region to region. The highest resistant ratios observed in tobacco cutworm were 63.0 for mevinphos, 79.0 for carbofuran, 13.0 for permethrin and 4.1 for fenvalerate.
In general, the synthetic pyrethroids are still the most effective agents for controlling the three tested pest species, but the organophosphorus and carbamates have encountered resistance problem in both cabbage loopers and tobacco cutworms.
本省歷年來蔬菜之蟲害保護工作多仰賴殺蟲劑,以致近年來害蟲相較趨於單純,但使用藥劑時,常有效果減退之現象發生。查其原因,可能係害蟲已對常用殺蟲劑產生不同程度之抗藥能力,小菜蛾,Plutella xylostella ( L. ) ,即是一已經證實且抗藥問題極嚴重之十字花科蔬菜害蟲。此外,在十字花科蔬某上經常發生的鱗翅目害蟲尚有紋白蝶, Pieris rapae Boisduval 、斜紋夜盜 Spodoptera litura Fabricius 及擬尺蠖Trichoplusia ni Hubner。為暸解後三種害蟲是否亦對殺蟲劑產生某種程度之抗藥力,乃進行本研究。
研究結果發現,本省各地採得之紋白蝶對四種常用殺蟲劑,美文松( Mevinphos )、加保扶(Carbofuran )、百滅寧( Permethrin )及芬化利( Fenvalerate),均極為敏感,無抗藥性產生之跡象,因此利用化學藥劑防治紋白蝶,仍為經濟可行而無抗藥性顧慮之防治方法。而擬尺蟆則對美文松、加保扶均不甚敏感,根據美、加地區之試驗結果報導,上述兩種藥劑對擬尺蠖之防治效果亦不甚良好;所測得之芬化利及百減寧對擬尺蠖則無優良殺除效果。就斜紋夜盜而言,在所採得樣品中已明顯地發現,某些蔬菜密集生產地區之斜紋夜盜已經對常用殺蟲劑產生極高之抗藥性,溪湖地區即為明顯之例證,該樣品較敏感品系對加保扶、美文松之抗藥力分別高出 79倍及 63 倍,對合成除蟲菊精類殺轟劑亦有輕微之抗藥性。斜紋夜盜對不同殺蟲劑產生之抗藥程度,依地區有甚大之差異,但一般而言除蟲菊精類仍有相當好的防治效果;約有半數取樣地區之斜紋夜盜已對美文松產生中等程度以上之抗藥性;而加保扶之防治效果已明顯地消退。本研究之結論為:暫時使用合成除蟲菊精類殺蟲劑,仍為防治此三種鱗翅目害蟲之通用辦法;若採用有機磷劑或氨基甲酸鹽劑作為防治藥劑時,必須密切注意該地區此等害蟲抗藥性之發展
(33(1):73-80)小菜蛾抗藥性之研究 V、抗美文松品系誘發之交互抗性及其Glutathione-S-transferase活性變化情形
The diamondback moth, Plutella xylostella (L.), developed resistance to mevinphos rather slow and unstable. After twenty generations of mevinphos suppression at LC75 level, only 5-8 folds resistance was obtained. The mevinphos-resistant diamondback moth has a broad cross resistance to other organophosphorus compounds and cartap, but this resistance was not extended to most of the synthetic pyrethroids. Significant increase of glutathione-S-transferase activity occurred in the 4th instar and was paralleled with a reduction in mevinphos susceptibility during the same period. The age related glutathione-S-transferase activity change was also observed in the mevinphos-resistant strain except the overall enzyme activity was at higher level.
採自宜蘭地區之感性品系小菜蛾對一般常用殺蟲劑感度均高,使用此品系測定對美文松抗藥性時,發現抗藥性之發展緩慢且不甚穩定,經過 20 世代,淘汰 75%總蟲數之選擇,僅獲得 5-8 倍抗藥能力,較以往使用加保扶、芬化利及培丹誘發抗藥力為緩慢。所得抗美文松品系小菜蛾對其他有機磷劑均能產生交互抗性,其中以普伏松之交互抗性最為嚴重,其次為拜裕松、佈飛松;美福松、達馬松及賽達松雖無顯著之交互抗性生成,然其原來之感度甚低,造成 9 種有機磷劑對抗美文松品系無良好殺蟲效果;對培丹亦有交互抗性,但對合成除蟲菊精類則無明顯之交互抗性發生。 Glutathione-S-trans - ferase 係一對有機磷類殺蟲劑之解毒酵素,其活性在抗藥品系中較高。研究中發現,該酵素在小菜蛾幼蟲期第四齡時有大幅度之變化,酵素活性由三到四齡增加 5-6 倍,四齡末以後至蛹期之酵素活性變化甚小,因此本試驗亦比較同為感性品系之三、四齡幼蟲對美文松之敏感度,結果顯示該兩齡期幼蟲之敏感度隨 glutathione-S-transferase 活性的增加而降低,此一現象可能與解毒作用之自然增加有密切之關係,且對田間防治小菜蛾用藥劑量及其所能殺死之不同齡期小菜蛾幼蟲影響很大,因此在防治率之測定上,有值得再行檢討之必要
- …
