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1.
为明确无翅型、有翅型柑橘蚜虫取食行为的差异,采用EPG技术对褐色橘蚜Toxoptera citricida(Kirkaldy)和棉蚜Aphis gossypii Glover的有翅型、无翅型成蚜在柑橘苗上的取食行为进行测定。结果表明,褐色橘蚜无翅型和有翅型的EPG均记录到7种取食波形,依次为非刺探波np、路径波A、B和C、电位下降波pd、韧皮部取食波E1和E2;棉蚜无翅型和有翅型的EPG记录到9种取食波形,除上述7种外,还包括木质部主动吸食波G和口针阻碍波F。褐色橘蚜有翅型和无翅型的np波持续时间为25.73 min和8.39 min,二者间差异显著;棉蚜有翅型的np波持续时间、刺探次数、C波次数分别为27.34 min、19.16次、20.21次,显著高于无翅型,而刺探总持续时间为332.66 min,显著低于无翅型。棉蚜的C波次数及总持续时间、刺探次数、pd波次数及总持续时间均显著高于褐色橘蚜,而E2波总持续时间及平均持续时间均显著小于褐色橘蚜。表明棉蚜无翅型比有翅型在柑橘上更容易取食,影响有翅型蚜虫取食的抗性因子可能位于柑橘表面;褐色橘蚜比棉蚜对柑橘的适应性更强。  相似文献   

2.
为研究棉长管蚜Acyrthosiphon gossypii 与棉蚜 Aphis gossypii 对蚜虫取食诱导棉花的取食适应性, 揭示取食诱导下两种蚜虫的取食竞争机制, 采用刺探电位图谱技术(electrical penetration graph, EPG)测定在健康棉花、棉长管蚜或棉蚜诱导的棉花上取食6 h的棉长管蚜和棉蚜的16个重要参数, 比较两种蚜虫的取食行为。研究发现:1) 取食健康棉花时, 棉蚜在木质部(G波)的取食持续总时间长于棉长管蚜,棉蚜在木质部的取食能力大于棉长管蚜,但二者在韧皮部的取食能力相差不大。2) 取食棉长管蚜诱导的棉花时, 棉蚜取食韧皮部(E2波)持续的总时间为(2 531.33±60.86)s, 显著大于棉长管蚜E2波持续总时间[(2 196.00±98.91)s];取食棉蚜诱导的棉花时, 棉蚜取食韧皮部、木质部持续的总时间显著长于棉长管蚜(P<0.05), 说明棉蚜对于棉蚜诱导棉花的取食耐受性大于棉长管蚜。棉蚜对两种蚜虫取食诱导棉花的适应性更强, 更易在竞争中取得优势。棉长管蚜与棉蚜取食棉长管蚜或棉蚜诱导棉花的F波持续总时间长于健康棉花, 说明经取食诱导的棉花具有一定的抗虫性。  相似文献   

3.
为探究不同体色生物型烟蚜Myzus persicae取食行为的差异,明确其在烟田的分布特征,利用刺探电位图谱(EPG)技术测定了红色型、绿色型和褐色型3种体色生物型烟蚜在烟草上的取食行为。结果表明:红色型烟蚜刺探取食之前对烟草寄主所花费的识别时间最短,为2.20 min,极显著短于褐色型烟蚜的10.09 min。绿色型烟蚜在刺探过程中pd波平均持续时间为7.45 s,显著长于红色型烟蚜的6.85 s,极显著长于褐色型烟蚜的3.95 s,但3种体色生物型烟蚜的pd波次数无显著差异。首次刺吸至第1次出现E2波所需时间,绿色型和褐色型烟蚜均约为红色型烟蚜的2倍。韧皮部取食阶段,3种体色生物型烟蚜分泌唾液(E1波)的时间无显著差异;红色型烟蚜被动吸食汁液(E2波)时间为112.28 min,显著长于绿色型烟蚜的70.02 min和褐色型烟蚜的75.15 min。褐色型烟蚜在木质部主动摄取汁液(G波)的时间最短为8.58 min,与另外2种体色生物型烟蚜差异显著。表明3种体色生物型烟蚜各自具有不同的取食策略,但总体而言红色型烟蚜对烟草的适应性最强。  相似文献   

4.
吡蚜酮对禾谷缢管蚜的亚致死效应   总被引:4,自引:0,他引:4  
本文研究了吡蚜酮对禾谷缢管蚜的亚致死效应。试验利用刺探电位图谱(EPG)技术测定了亚致死剂量的吡蚜酮对禾谷缢管蚜成虫取食行为的影响,结果表明:经吡蚜酮处理的蚜虫口针从开始刺探到持续吸食韧皮部和木质部汁液的时间明显延长,分别延长至(199.9±34.0)min和(236.4±29.5)min,对照分别为(155.5±18.1)min和(145.5±27.1)min。并且,经药剂处理的蚜虫口针在韧皮部和木质部中持续取食的时间明显缩短,分别为(44.7±9.4)min和(11.8±2.5)min,对照分别为(93.0±24.9)min和(19.0±3.6)min。通过生长和繁殖试验可知:亚致死剂量的吡蚜酮使禾谷缢管蚜的重量显著减轻,繁殖率明显降低。经药剂处理的蚜虫最大重量和最高繁殖率分别为(1.28±0.025)mg/10头和(2.9±0.2)头/成蚜,而对照分别为(1.56±0.099)mg/10头,(5.2±0.2)头/成蚜。  相似文献   

5.
柑橘衰退病毒含量对其蚜传效率的影响   总被引:1,自引:0,他引:1  
为明确毒源植株和蚜虫中柑橘衰退病毒(Citrus tristeza virus,CTV)的发生情况与蚜虫传播CTV能力的关系,将褐色橘蚜、棉蚜、橘二叉蚜和绣线菊蚜置于分别感染了4个CTV分离株的锦橙上取食24 h后,运用巢式RT-PCR和实时RT-PCR检测蚜虫和锦橙的带毒情况,并分析蚜虫的传毒能力。结果显示,蚜虫中CTV的平均带毒率为0.76~0.84,其中棉蚜的最高,其次为绣线菊蚜、褐色橘蚜和橘二叉蚜。锦橙中各CTV分离株的含量差异不大,与蚜虫传毒效率间无显著相关性;也未发现蚜虫带毒率与其传播CTV能力之间存在相关性。蚜虫体内CTV的含量为5.36×103±2.33×103~2.01×106±3.67×105拷贝,褐色橘蚜中含量最高,其次为棉蚜、橘二叉蚜和绣线菊蚜;且高蚜传能力CTV分离株在褐色橘蚜体内的含量远高于低蚜传能力分离株。表明蚜虫体内CTV的含量可能与蚜虫传毒能力有关。  相似文献   

6.
O3浓度升高对棉蚜取食行为的影响   总被引:1,自引:0,他引:1  
在加倍O3浓度的开顶式气室(OTC)中培养抗虫棉GK12幼苗30 d,正常O3浓度处理为对照。应用刺探电位图谱(EPG)技术,对棉蚜(Aphis gossypii Glover)在苗期棉花上的取食行为进行了比较研究。结果表明:蚜虫在加倍O3浓度下生长的棉苗上取食的过程中,C波数量显著减少,pd波首次出现时间明显提前,被动取食持续时间(E2波的总时间)明显拉长。棉蚜的取食适合度明显提高的原因可能是加倍O3浓度对棉花叶片组织结构和体内营养物质的变化有影响。  相似文献   

7.
为探明烟蚜茧蜂Aphidius gifuensis Ashmead对烟蚜Myzus persicae(Sulzer)取食感染马铃薯Y病毒(Potato virus Y,PVY)烟株的适应性,利用刺探电位图谱(EPG)技术记录了烟蚜在感病烟株与健康烟株上的取食行为,并测定了烟蚜茧蜂对取食2种烟株烟蚜的寄生率以及烟蚜茧蜂的羽化率、发育时间及性比等指标。结果表明,与健康烟株相比,烟蚜在感染PVY烟株上的第1次刺探取食持续时间显著延长,且口针遇到阻力的次数(F波)和总持续时间均显著减少。烟蚜在感病烟株木质部的吸食时间(G波)显著长于健康烟株。感病烟株上烟蚜在韧皮部阶段的分泌唾液时间(E1波)较在健康烟株上显著缩短,而被动吸食汁液时间(E2波)显著延长。烟蚜茧蜂寄生取食感染PVY烟株的烟蚜,虽然能成功完成其生活史,但适应性与寄生取食健康烟株烟蚜的蚜茧蜂存在差异。在感染PVY烟株上,烟蚜茧蜂对烟蚜的寄生率为33.67%,显著低于对照的64.67%;且僵蚜体重明显下降,羽化的成蜂个体较小;成蜂存活时间1.48 d也极显著短于对照组的2.25 d。表明烟蚜茧蜂对取食感染PVY烟株烟蚜的适应性较低,PVY可通过烟蚜为介体间接降低烟蚜茧蜂的适应力。  相似文献   

8.
为比较杭白菊主栽品种早、晚小洋菊对菊小长管蚜Macrosiphoniella sanborni、棉蚜Aphis gossypii、桃蚜Myzus persicae的抗性,通过刺吸电位技术(electrical penetration graph,EPG)研究菊蚜在菊顶叶上刺吸行为,并检测了菊顶叶主要化合物。结果表明:在晚小洋菊上,菊小长管蚜的E1、E2波平均持续时间4.31、3.47 min,分别短于在早小洋菊上的4.63、3.75 min;棉蚜、桃蚜的E1、E2波平均持续时间分别为4.32、4.72 min和4.92、4.64 min;3种蚜虫的平均刺探次数均大于在早小洋菊上的平均刺探次数。聚类分析结果显示,2个主栽品种之间抗性存在差异。早小洋菊顶叶平均可溶性糖和可溶性蛋白含量分别为2.71 mg/g和25.36 mg/g,均高于晚小洋菊;早小洋菊顶叶总酚含量为0.24 mg/g,显著低于晚小洋菊;早、晚小洋菊总黄酮含量分别为3.46 mg/g和3.37 mg/g。早小洋菊顶叶可溶性糖、可溶性蛋白含量基本上与每种菊蚜的E1、E2波持续时间显著正相关,总酚含量、总黄酮含量与每种菊蚜的E1或E2波持续时间显著负相关。推测早小洋菊对于菊长管蚜的抗性稍弱于晚小洋菊,2种杭白菊对棉蚜或桃蚜的抗性相当,且菊叶中的这4种物质含量与抗蚜性相关。  相似文献   

9.
邓劲松 《植物医生》2010,23(5):31-32
<正>蚜虫是为害柑橘新梢的主要害虫,主要种类有橘蚜、橘二叉蚜、桃蚜和棉蚜等。成虫和若虫群集在柑橘的芽、嫩梢、嫩叶、花蕾和幼果上吸食汁液为害,造成叶片卷曲,新梢枯死,落花落果。为了控制柑橘蚜虫的为害,笔者引进了青岛海纳  相似文献   

10.
为明确6个苜蓿品种对苜蓿蚜Aphis craccivora的抗性差异机理,观察苜蓿蚜在不同苜蓿品种植株上的取食选择行为,利用刺吸电位(electrical penetration graph,EPG)技术判定取食过程中所出现的波形,并筛选适宜参数作为对不同苜蓿品种抗蚜性的评价指标。结果表明,苜蓿蚜在取食苜蓿时呈现出Np、Pd、A、B、C、E1、E2和F波共8种波形。苜蓿的抗虫位点主要存在于苜蓿植株的表皮、叶肉和韧皮部,当苜蓿蚜开始取食时,中苜2号的抗虫位点在叶表面,但抗性较弱,第1次刺探的发生时间迟,为16.00 min,E2波的总持续时间长,为26.99 min;赛迪7的抗虫位点集中在叶肉和韧皮部且抗性强,E2波的持续时间短,为5.00 min;金皇后的抗虫位点出现在第1个E2波之后,第1次E2波后的E1波个数为7.78个,即韧皮部的抗性最强。苜蓿蚜在不同苜蓿品种上的取食行为各异,且不同品种的抗虫位点和抗虫机制不同。聚类分析结果显示,6个苜蓿品种对苜蓿蚜的抗性存在差异,其中赛迪7的抗性最强,中苜2号的抗性较弱。  相似文献   

11.
The feeding behavior of the melon aphidAphis gossypii Glover (Homoptera: Aphididae) was monitored using the electrical penetration graph (EPG) technique on different melon (Cucumis melo L.) genotypes showing resistance to the aphid. The aphid-resistant genotypes used were PI-161375 and PI-414723, sources of theVat andAgr genes, respectively. TGR-1551, a newC. melo accession from Zimbabwe, was also tested. Our goal was to localize the tissues where the resistance factors are expressed and to determine if the resistance mechanisms operating in the three aphid-resistant accessions were the same. Our results indicated that the three selected lines have resistant factors located at the epidermis, mesophyll and vascular tissues. However, the behavior ofA. gossypii on TGR-1551 was different from the two other resistant accessions, as indicated by a longer phloem salivation phase (E1 phase). Many of the E1 phases observed for aphids feeding on TGR-1551 were not followed by phloem ingestion (E2 phase). These results suggest that TGR-1551 has a resistance mechanism that preventsA. gossypii from initiating ingestion from the phloem. Preference tests under free choice conditions also showed that aphids rejected accessions TGR-1551 or PI-414723 faster than PI-161375. Our results support the hypothesis thatAgr andVat are coding for different kinds of resistance strategies. Comparisons of aphid life history parameters also indicated that TGR-1551 is a very promising new source to breed for resistance againstA. gossypii. http://www.phytoparasitica.org posting Jan. 16, 2002.  相似文献   

12.
为明确蚜虫内共生细菌Buchnera能否协助蚜虫抑制植物的防御反应,采用混合抗生素除去瓜蚜Aphis gossypii体内的Buchnera,采用刺吸电位技术和生命表方法比较除菌瓜蚜和正常瓜蚜在黄瓜上的适合度,并测定被除菌瓜蚜和正常瓜蚜预侵染黄瓜叶片中H2O2、茉莉酸和水杨酸的含量变化以及抗蚜特性变化。结果表明,除菌瓜蚜体重较正常瓜蚜极显著下降了71.15%,净增殖率极显著下降了95.60%,但寿命延长了2.34倍;刺吸电位图谱显示除菌瓜蚜几乎不产生代表唾液分泌的E1波和韧皮部被动吸食的E2波。在黄瓜叶片中,除菌瓜蚜比正常瓜蚜能激发产生更高水平的H2O2;在为期14 d的侵染中,除菌瓜蚜侵染诱发总茉莉酸含量持续升高、总水杨酸含量持续下降,而正常瓜蚜侵染诱发总茉莉酸含量先升高后降低、总水杨酸含量先降低后升高。在被除菌瓜蚜预侵染黄瓜上,瓜蚜进入稳定取食的时间显著滞后于正常瓜蚜预侵染处理,且前3 d的产蚜量显著低于正常瓜蚜预侵染处理。表明Buchnera除了可为蚜虫提供必需的营养外,还有调控和抑制寄主植物防御反应的功能。  相似文献   

13.
正由柑橘衰退病病毒(Citrus tristeza virus,CTV)引起的柑橘衰退病,对全世界柑橘产业造成了严重威胁。褐色橘蚜Toxoptera citricida(Kirkaldy)属半翅目蚜科,以非循回型半持久方式传播CTV,是CTV的最有效传播媒介~([1])。我国广泛分布着CTV的各种株系和传媒褐色橘蚜,对我  相似文献   

14.
BACKGROUND: Cycloxaprid with cis‐configuration is a novel neonicotinoid insecticide, developed in China, that has good industrialisation prospects for its high activity against imidacloprid‐resistant pests. Studies were carried out to investigate the biological activity of cycloxaprid and its effect on the feeding behaviour of Sitobion avenae. RESULTS: The results demonstrated that cycloxaprid had good contact and root‐systemic activity. The electrical penetration graph (EPG) revealed that cycloxaprid significantly increased the total time of non‐probing periods and greatly inhibited phloem ingestion of treated aphids because it significantly reduced the total time and the frequency of phloem ingestion. Furthermore, cycloxaprid can increase the phloem salivation of treated aphids by comparison with aphids treated with imdacloprid and distilled water. Consequently, a sublethal dose of cycloxaprid impaired aphid ingestion of phloem sap and thereby reduced the weight of aphids. On the other hand, EPG data showed that a sublethal dose of cycloxaprid had no significant effect on xylem sap ingestion, in contrast to imidacloprid. CONCLUSION: All these tests indicated that cycloxaprid had both contact and root‐systemic activity, with sublethal effects resulting in reduction in Sitobion avenae phloem‐feeding behaviour and growth rate. Copyright © 2012 Society of Chemical Industry  相似文献   

15.
Host plant selection by aphids can be positively or negatively affected when plants are infected by phytoviruses. Potato plants infected by Potato virus Y (PVY), a non-persistent virus, are reported to affect settling behaviour and growth parameters of Myzus persicae Sulzer and Macrosiphum euphorbiae Thomas. Using the Electrical penetration graph system (EPG), we demonstrated that PVY-infection of potato plants influences the feeding behaviour of these two aphid species. Myzus persicae exhibited increased phloem sap ingestion and reduced non-probing duration. Macrosiphum euphorbiae showed delayed stylet insertion, reduced activity in the phloem vessels and an enhanced non-probing duration. In addition, we showed that these two species exhibited different transmission rates. The opposite effects of PVY-infected potato plant on these two aphids are discussed in terms of PVY spreading in the field.  相似文献   

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