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1.
繁育寄主对三种赤眼蜂个体大小及抱卵量的影响   总被引:1,自引:0,他引:1  
黄静  张斌  张帆  李元喜 《昆虫学报》2015,58(10):1098-1107
【目的】繁育寄主及成蜂日龄均会影响赤眼蜂体内的抱卵量,为了解繁育寄主及育出赤眼蜂个体大小与赤眼蜂抱卵量的关系,我们在室内研究了米蛾 Corcyra cephalonica(Stainton)卵和亚洲玉米螟 Ostrinia furnacalis (Güenée)卵作为繁育寄主对3种赤眼蜂雌蜂大小、抱卵量的影响。【方法】在光周期14L:10D、温度25±1℃的室内条件下,以米蛾卵、亚洲玉米螟卵作为繁育寄主,解剖不同日龄(羽化后12-72 h)松毛虫赤眼蜂 Trichogramma dendrolimi Matsumura、玉米螟赤眼蜂Trichogramma ostriniae Pang et Chen以及稻螟赤眼蜂Trichogramma japonicum Ashmead,观察雌蜂抱卵量,测量成蜂的大小,分析雌蜂抱卵量与其日龄、个体大小以及繁育寄主的关系【结果】在羽化后48 h以内,3种蜂的抱卵量随雌蜂日龄的增长而增加。羽化后72 h,除米蛾卵繁育的玉米螟赤眼蜂及玉米螟卵繁育的松毛虫赤眼蜂的抱卵量比羽化后48 h时略高外,其他组合均出现下降。以亚洲玉米螟卵为繁育寄主时的玉米螟赤眼蜂的抱卵量显著高于对应日龄的以米蛾卵为繁育寄主时的抱卵量,而松毛虫赤眼蜂(除羽化后12和24 h外)和稻螟赤眼蜂则相反;以米蛾卵为繁育寄主时,相同日龄的赤眼蜂中,松毛虫赤眼蜂抱卵量最高,稻螟赤眼蜂的抱卵量最低;以亚洲玉米螟卵为繁育寄主时,玉米螟赤眼蜂抱卵量最高,稻螟赤眼蜂抱卵量最低。雌蜂抱卵量与雌蜂个体大小呈线性正相关,相关程度随雌蜂日龄增加而更加明显。【结论】后足胫节长度可以作为评价松毛虫赤眼蜂、玉米螟赤眼蜂和稻螟赤眼蜂质量的指标。赤眼蜂抱卵量受繁育寄主、赤眼蜂蜂种及雌蜂日龄的显著影响,寄主的适合性也会影响育出赤眼蜂的大小,筛选合适的繁育寄主有助于提高赤眼蜂的质量。  相似文献   

2.
高温对玉米螟赤眼蜂实验种群的影响   总被引:7,自引:1,他引:6  
以米蛾卵为繁育寄主,组建了玉米螟赤眼蜂在26、29、32和35 ℃下的实验种群生命表,探讨了高温对玉米螟赤眼蜂生长和生殖的影响.结果表明,高温32 ℃~35 ℃对玉米螟赤眼蜂各虫态的生长发育有明显的抑制作用.卵 幼虫的存活率在26 ℃和29 ℃分别为 94.2%和88.6%,32 ℃时下降至80.2%,而35 ℃时仅为53.2%,蛹的存活率也表现出相应的下降趋势.玉米螟赤眼蜂羽化后12 h内的抱卵量、体长及卵粒大小随温度的升高而减少或变小.26 ℃时,玉米螟赤眼蜂羽化后0~12 h的抱卵量为37.9粒,随着温度的升高,抱卵量急剧下降,29 ℃、32 ℃和35 ℃的抱卵量分别为29.6、21.6和13.7粒.在26 ℃及29 ℃时,所有雌蜂均能进行正常交配和产卵,32 ℃时有6.7%的个体不产卵,至35 ℃时,则有60%的个体不能进行正常的生殖活动.  相似文献   

3.
根据膜翅目寄生蜂未受精的卵发育为雄性个体,受精卵发育成雌性个体这一性别决定机制,考察了玉米螟赤眼蜂雄蜂生殖力的大小,探讨了雄蜂授精能力与个体大小、年龄及交配次数之间的关系。结果表明,玉米螟赤眼蜂雄蜂在羽化时或羽化后很短的时间内其精巢就已发育成熟,成虫期不再形成新的精子。雄蜂在羽化后立即可与雌蜂进行交配,在雌蜂过量的情况下,24 h内就可能将体内的精子或精液消耗尽,24 h后的雄蜂虽能与雌蜂继续交尾,但雌蜂所繁育的子代中未见有雌性个体。同一雄蜂能与多头雌蜂进行交尾,授精8~23头雌蜂,平均能繁育出346.15头雌性后代。雄蜂的授精能力与交配次数密切相关,授精量随交配次数增加而逐渐下降。首次交配时,雄蜂能给雌蜂提供较多的精子,约能繁育出58.85头雌性后代,但随着交配次数的增加,雄蜂向雌蜂输送的精子越来越少,10次交配之后,雄蜂所能授精、繁育的子代雌性数将不超过10头。以后足胫节长度表示个体大小时,体型较大的雄性个体进行多次交配的能力强,能繁育更多的雌性后代。  相似文献   

4.
【目的】以稻螟赤眼蜂Trichogramma japonicum Ashmead和玉米螟赤眼蜂T.ostriniae为试验对象,研究低温冷藏米蛾卵对赤眼蜂子代质量的影响,为米蛾卵的合理利用,赤眼蜂的工厂化生产和应用提供理论依据。【方法】将米蛾卵在不同温度(1、4、7、10℃)下冷藏不同时间(3、5、7、10、15、20、25、30、40d),研究米蛾卵冷藏后作为寄主卵对两种赤眼蜂子代寄生卵量、F_2代羽化出蜂率和雌蜂率的影响,利用赤眼蜂子代寄生卵量、F_2代羽化出蜂率和雌蜂率三者乘积表示赤眼蜂子代质量(Q),根据赤眼蜂子代质量判断冷藏米蛾卵对子代质量的影响。【结果】米蛾卵冷藏温度和时间对赤眼蜂子代寄生卵量影响显著,但不同赤眼蜂种类和不同冷藏温度间表现不同。繁殖稻螟赤眼蜂时,米蛾卵在4℃下冷藏赤眼蜂寄生卵量下降最缓,米蛾卵冷藏20d内赤眼蜂寄生卵量与对照之间差异不显著,在其他温度下米蛾卵冷藏3 d稻螟赤眼蜂寄生卵量与对照之间差异达到显著水平;繁殖玉米螟赤眼蜂时,米蛾卵在4℃下冷藏赤眼蜂寄生卵量下降最缓,米蛾卵冷藏20d赤眼蜂寄生卵量与对照之间差异达到显著水平,1℃下冷藏赤眼蜂寄生卵量下降最快,米蛾卵冷藏5 d赤眼蜂寄生卵量与对照之间达到显著水平。米蛾卵冷藏对稻螟赤眼蜂和玉米螟赤眼蜂F_2代的羽化率和雌蜂率产生的不利影响相对较小,米蛾卵冷藏30 d赤眼蜂F_2代的羽化率仍在70%以上,雌蜂率仍在75%以上。【结论】米蛾卵冷藏超过一定的时间以后会对稻螟赤眼蜂和玉米螟赤眼蜂子代的寄生卵量,F_2代的羽化出蜂率和雌蜂率产生不利影响,从而降低子代稻螟赤眼蜂和玉米螟赤眼蜂的质量,但在适宜的温度下冷藏一定时间内对其子代质量影响不显著,其中4℃下冷藏米蛾卵繁殖的赤眼蜂子代质量最佳,冷藏30 d赤眼蜂子代质量降低不到50%。  相似文献   

5.
玉米螟赤眼蜂Trichogramma ostriniae Pang et Chen是玉米螟的重要卵寄生性天敌,控制适宜的温度有利于室内大规模繁育。本试验以麦蛾卵为寄主,研究了不同温度(18℃、20℃、23℃、25℃、28℃、30℃、33℃、36℃)对玉米螟赤眼蜂的寿命、生殖力、子代羽化率和发育历期的影响。结果表明,20℃-25℃条件下雌蜂寿命最长,达7.9-9.0 d。在18℃-30℃亲代生殖力和子代羽化率无显著差异,亲代产卵量为40.9-61.7粒;羽化率为74.31%-84.22%。玉米螟赤眼蜂从卵到羽化的发育历期随温度的升高而显著缩短,由18℃时的22.6 d缩短至33℃的7.0 d。36℃时,雌蜂的寿命仅为0.56 d,且不能进行正常的生殖活动。因此,室内用麦蛾卵大规模繁育玉米螟赤眼蜂,适宜的温度为28℃-30℃;仅保存蜂种时,可选用温度18℃-20℃。  相似文献   

6.
寄生发生前寄生蜂的寄生行为及寄生发生后寄生蜂的生长发育情况能够反映出寄主对寄生蜂的适合性,而寄生蜂对寄主营养物质的吸收和利用是寄生蜂完成发育的生理基础。为了从寄生蜂利用寄主营养能力的角度探讨寄主对不同种赤眼蜂适合性变化的原因,本文观察了以米蛾Corcyra cephalonica Stainton卵为寄主时拟澳洲赤眼蜂Trichogramma confusumViggiani、松毛虫赤眼蜂T. dendrolimi Matsumura和玉米螟赤眼蜂T. ostriniae Pang et Chen的寄生行为及发育和存活情况,测定了被寄生米蛾卵内游离氨基酸的含量 。结果发现,玉米螟赤眼蜂的产卵时间为84.9 s,显著长于拟澳洲赤眼蜂和松毛虫赤眼蜂的产卵时间。拟澳洲赤眼蜂检测寄主所需时间为30.8 s,显著长于玉米螟赤眼蜂和松毛虫赤眼蜂所需时间,但从每寄主卵中羽化出的拟澳洲赤眼蜂数量显著高于松毛虫赤眼蜂及玉米螟赤眼蜂寄生的结果。3种赤眼蜂卵+幼虫的发育历期间不存在显著差异,但卵成虫的发育历期间存在显著差异。玉米螟赤眼蜂幼虫期和预蛹期的死亡率均显著高于拟澳洲赤眼蜂和松毛虫赤眼蜂相应虫期的死亡率。这些结果表明:米蛾卵对松毛虫赤眼蜂及拟澳洲赤眼蜂的适合性高于对玉米螟赤眼蜂的适合性。未被寄生的米蛾卵内游离氨基酸的总量在24~96 h时间段内从开始的2.194 mg/mL逐渐下降到1.565 mg/mL,而被寄生的米蛾卵内游离氨基酸总量均出现先升高后下降的现象。被松毛虫赤眼蜂和拟澳洲赤眼蜂寄生的米蛾卵内游离氨基酸总量在48 h达到最高值,分别为4.239 mg/mL和3.222 mg/mL,被玉米螟赤眼蜂寄生的米蛾在72 h达到最高值,为4 .323 mg/mL,显示同玉米螟赤眼蜂相比,松毛虫赤眼蜂和拟澳洲赤眼蜂能够更快地分解利用寄主营养。这些结果提示,3种赤眼蜂利用米蛾卵内营养物质能力的不同导致了米蛾卵对3种蜂适合性的不同。  相似文献   

7.
挥发性信息化合物对玉米螟赤眼蜂寄主选择行为的影响   总被引:1,自引:0,他引:1  
在实验室条件下,利用“Y”型嗅觉仪测定了源于寄主亚洲玉米螟Ostrinia furnacalis (Guenée) 鳞片、卵表以及不同生理阶段的雌蛾附腺的不同浓度的提取物对玉米螟赤眼蜂Trichogramma ostriniae Pang et Chen寄主选择行为的影响,并对其引诱作用大小进行了比较。结果表明: 亚洲玉米螟鳞片的正己烷提取物在0.5 mg/mL和 1 mg/mL浓度时对玉米螟赤眼蜂有明显的引诱作用; 寄主卵的正己烷提取物在5块卵/mL和10块卵/mL浓度时对玉米螟赤眼蜂有显著的引诱作用,而在40块卵/mL浓度时对玉米螟赤眼蜂有极显著的驱避作用; 玉米螟赤眼蜂对亚洲玉米螟交配未产卵和产卵后前期的雌蛾附腺提取液有反应,而对处女蛾和产卵后期的附腺提取液没反应。卵表提取物和附腺提取物比鳞片提取液对赤眼蜂引诱作用强,两者对赤眼蜂的引诱作用没有明显差异。  相似文献   

8.
玉米螟赤眼蜂是生物防治中一种重要的天敌昆虫,为探明艾叶精油对玉米螟赤眼蜂的影响及两者对米蛾的联合防治效果,本文研究了艾叶精油熏蒸、触杀、驱避活性对玉米螟赤眼蜂的影响及艾叶精油和玉米螟赤眼蜂对米蛾的联合作用。结果表明,艾叶精油熏蒸和触杀处理对玉米螟赤眼蜂卵具有明显影响,寄生在米蛾卵上的玉米螟赤眼蜂卵经0.1、0.2、0.3、0.4、0.5、0.6μg/cm3艾叶精油熏蒸处理72h后玉米螟赤眼蜂的羽化率分别为56.67%、49.33%、44.00%、33.33%、26.00%和14.67%;寄生在米蛾卵上的玉米螟赤眼蜂卵经100、200、300、400、500、600mg/L艾叶精油触杀处理72h后玉米螟赤眼蜂的羽化率分别为54.00%、45.33%、38.00%、28.67%、18.00%和6.00%,均与对照组表现出显著性差异。艾叶精油驱避活性对玉米螟赤眼蜂成蜂也有明显的影响,300mg/L艾叶精油对玉米螟赤眼蜂的驱避率79.05%,随着时间间隔和距离间隔的增加,这种影响作用降低;联合应用艾叶精油与玉米螟赤眼蜂时先释放玉米螟赤眼蜂,24h后再滴加艾叶精油的防治效果最佳,米蛾的死亡率可高达96%。  相似文献   

9.
霍氏啮小蜂是一些鳞翅目和双翅目昆虫蛹的寄生蜂。本文描述该寄生蜂从亚洲玉米螟羽化后0,6 12,18,24,30,36,42,48,54,60,66和72 h的卵巢发育和卵子发生过程。霍氏啮小蜂雌性生殖系统为典型的膜翅目姬小蜂类型,包括2个卵巢,每个卵巢通常有8-9根卵巢管,另有1对输卵管附腺,1个受精囊和1个受精囊腺等。卵黄和卵子形成于羽化后12 h,刚羽化的雌蜂不含成熟卵(成熟卵指数OI=0),成熟卵出现在羽化后24 h,成熟卵数量随后不断增加至数量较为稳定。卵巢管内卵数与雌蜂的体长和头宽呈正相关,相关系数分别为0.859和0.907。研究结果表明霍氏啮小蜂属卵育型(synovigeny)寄生蜂,本文还讨论了卵育型霍氏啮小蜂的卵成熟策略。  相似文献   

10.
【目的】为明确玉米田中常用杀菌剂和杀虫剂对玉米螟赤眼蜂Trichogramma ostriniae的安全性。【方法】室内用田间推荐剂量在玉米叶片上施用4种杀菌剂(甲基硫菌灵、戊唑醇、叶枯唑和吡唑醚菌酯)以及4种杀虫剂(阿维菌素、氯虫苯甲酰胺、高效氯氰菊酯和吡虫啉),施药后1, 3, 5和7 d调查玉米螟赤眼蜂成虫接触玉米叶片24 h时的死亡率、寄生能力(寄生的麦蛾Sitotroga cerealella卵量)及子代羽化率。【结果】施药后不同时间,不同杀菌剂和杀虫剂对玉米螟赤眼蜂成虫的死亡率、寄生能力和羽化率产生显著影响。4种杀菌剂中,叶枯唑和吡唑醚菌酯对玉米螟赤眼蜂寄生能力持续影响时间长,在施药7 d后,玉米螟赤眼蜂成虫接触含叶枯唑和吡唑醚菌酯残留的玉米叶片24 h时其寄生的麦蛾卵量分别为20.25和20.80粒;戊唑醇对玉米螟赤眼蜂的影响最大,施药7 d后玉米螟赤眼蜂成虫接触含戊唑醇残留的 玉米叶片24 h时子代羽化率为18.48%,施药3 d后接触时死亡率高达37.03%。4种杀虫剂中,阿维菌素和吡虫啉对玉米螟赤眼蜂寄生能力持续影响时间长并且毒性较大,在施药7 d后,玉米螟赤眼蜂成虫接触含阿维菌素和吡虫啉残留的玉米叶片24 h时的寄生的麦蛾卵量为3.43和9.19粒,施药后1-3 d时死亡率分别高达96.21%和74.00%;高效氯氰菊酯对玉米螟赤眼蜂子代羽化的持续伤害时间长,施药7 d后玉米螟赤眼蜂成虫接触含高效氯氰菊酯残留的玉米叶片24 h时的子代羽化率为27.92%。总体来说,4种杀虫剂对玉米螟赤眼蜂的影响较4种杀菌剂大。【结论】田间释放玉米螟赤眼蜂防治玉米螟Ostrinia nubilalis前7 d不建议喷施戊唑醇、叶枯唑和吡唑醚菌酯3种杀菌剂以及阿维菌素和吡虫啉两种杀虫剂,前5 d不建议喷施甲基硫菌灵和高效氯氰菊酯,氯虫苯甲酰胺使用时应该根据该药的田间推荐浓度合理喷施。  相似文献   

11.
We investigated under outdoor conditions and inside a climate chamber: (i) whether Anaphes nitens Girault (Hymenoptera: Mymaridae), an egg parasitoid of the Eucalyptus snout beetle, Gonipterus scutellatus Gyllenhal (Coleoptera: Curculionidae), experienced egg resorption, and (ii) how various treatments (location, food, and/or host supply) and body size influenced egg load, egg resorption, fecundity, and longevity. One‐day‐old females were mated and randomly assigned to five groups: (A) honey + hosts, (B) water + hosts, (C) only honey, (D) only water, and (E) control females killed at emergence. We compared the egg load of the newly emerged females, which represent the control group (egg load = ovarian eggs present at emergence), with the lifetime egg load (i.e., ovarian eggs + emerged offspring + not emerged offspring) of the females with various host and diet treatments, by dissection of the ovaries to find evidence of egg resorption. All groups reared outdoors had fewer eggs than the control, while indoors there was no significant difference. Outdoors, starved but host‐provided wasps (B) experienced the highest reduction of the lifetime egg load (51%). Groups without access to food (B + D) resorbed more eggs than groups provided with honey (A + C). Females with honey and hosts (A) had the highest lifetime fecundity, but those with water and hosts (B) showed a higher daily realized fecundity. Host‐deprived females with access to food (C) attained the longest lifespan. Our results suggest that under stress conditions, such as low temperature and food shortage, A. nitens females practice egg resorption, probably to save energy.  相似文献   

12.
The number of mature eggs carried by a female parasitoid at any given moment (egg load) is a fitness‐related parameter affecting reproductive potential and impacting upon host population dynamics. Microplitis rufiventris Kokujev (Hymenoptera: Braconidae) is a solitary koinobiont endoparasitoid wasp of several noctuid pests, including Spodoptera littoralis. The number of mature eggs carried by females at emergence is approximately 50. The rate of egg maturation is strongly affected both by feeding status and access to host larvae. In early adult life, egg maturation rates are lower for 6–72 h in fed wasps compared with food‐deprived wasps. When given access to hosts, honey‐fed wasps live for approximately 9 days with high lifetime fecundity (226 eggs). By contrast to early adult life, the total realized fecundity is positively affected by feeding status, where water‐fed and starved females have 140 and 107 eggs, respectively. Egg resorption is most pronounced in the later life of females. The results suggest, in addition to confirming the effect of honey‐feeding on total fecundity, that fecundity of starved wasps includes rapid egg maturation early in life, which potentially could improve the performance of the parasitoid as a biological control agent.  相似文献   

13.
E. W. Riddick 《BioControl》2006,51(5):603-610
The egg load of lab-cultured Cotesia marginiventris (Cresson) (Hymenoptera: Braconidae), a solitary koinobiont endoparasitoid of noctuid caterpillars, was determined in this study. Information on egg load may provide clues to more efficient in vivo rearing of C. marginiventris. I tested the hypothesis that egg load, defined as the number of mature oöcytes (i.e., fully chorionated eggs) found in adult females, was related to body size. Cotesia marginiventris females possessed two ovaries and two ovarioles per ovary; mature eggs were found in ovaries and oviducts. Newly-emerged females held an average of 149 mature eggs. Immature eggs were slightly visible in the distal portions of the ovarioles; they were not counted. Egg load was marginally related to body size (i.e., hind tibia length). The results of this study suggest that (1) body size can sometimes predict egg load or potential fecundity of lab-cultured C. marginiventris and (2) an efficient rearing system that exploits the potential fecundity of C. marginiventris might involve using young females and allowing them to oviposit in new hosts, each day, for up to a week.  相似文献   

14.
1. The relationships between parasitoid egg load, size, and age (3–72 h) for Trichogramma minutum, T. platneri, and T. pretiosum, reared from two factitious hosts, Ephestia kuehniella and Sitotroga cerealella, were evaluated to test the hypothesis that 24‐h egg load can be used to estimate the fecundity of Trichogramma parasitoids. 2. Egg load increased in relation to female age over the first 3 days of adult life for all three Trichogramma species to a mean egg storage capacity of 46.7 eggs for T. minutum, 41.1 for T. pretiosum, and 35.7 for T. platneri. At 24 h of age, T. minutum had matured enough eggs to fill 67% of its storage capacity, in comparison with 74% for T. pretiosum and 91% for T. platneri. There was a positive relationship between egg load and parasitoid size for all ages of the three Trichogramma species reared from both hosts (with the exception of T. platneri at 3 h post emergence), accounting for 14–69% of the variance in egg load. 3. The potential fecundity, realised (3 day cumulative) fecundity, and oviposition rate (potential fecundity/longevity) of T. platneri were all related linearly to size‐dependent variation in 24‐h egg load, but only the realised fecundity of T. pretiosum, and none of the reproductive characteristics of T. minutum. It is suggested that 24‐h egg load may not be an accurate measure of egg storage capacity in parasitoids and should be used cautiously to represent fecundity. 4. The potential fecundity of seven Trichogramma species reared from E. kuehniella varied from 55 to 150, but neither potential fecundity nor oviposition rate was related significantly to egg load (represented by eggs laid during first 24 h). Selection to avoid egg depletion in the attack of gregarious hosts appears most likely to account for the variation in potential fecundity among Trichogramma species.  相似文献   

15.
【目的】榕树(Ficus)依赖专性榕小蜂(Agaonidae)传粉,同时为传粉榕小蜂提供繁衍后代的场所,两者形成动植物间经典的协同进化关系。在雌花期果内,榕小蜂需在有限的存活时间内完成传粉和产卵,而传粉榕小蜂如何在传粉与产卵之间进行权衡仍然是悬而未解的问题。本研究旨在明确传粉榕小蜂——一种栉颚榕小蜂Ceratosolen sp.在雌雄同株的聚果榕Ficus racemosa雌花期果内的行为活动及繁殖模式。【方法】借助测微尺测量聚果榕榕果雌花花柱长度与传粉榕小蜂(Ceratosolen sp.)产卵器长度,通过显微视频记录传粉榕小蜂在雌花期果内搜索、传粉及产卵行为;结合单果控制性引蜂试验,测定不同阶段榕小蜂个体大小、孕卵量、携粉量,以及雄花期最终繁殖的榕小蜂后代和榕果种子数量。【结果】聚果榕雌花花柱长度存在树间变异,榕小蜂产卵器长度比绝大多数的雌花花柱长,说明该小蜂可以产卵于大部分的雌花子房里。通常个体大的榕小蜂孕卵量更多,但个体大小与携粉量之间相关性不显著。观察发现,榕小蜂进入雌花期榕果内,前6 h集中产卵,可产下孕卵量的95%,平均搜索用时27 s,产卵用时46 s,此期间传粉行为少见,花粉筐中携带花粉量亦无明显变化;榕小蜂进果后6-24 h,主要执行传粉,其行为主动,连贯高效,单次传粉用时平均为2 s,最终可传完携粉量的80%。控制引蜂试验也证实榕小蜂进入榕果内前6 h主要执行产卵繁殖后代,之后6-24 h主要执行传粉以繁殖榕树种子。【结论】在雌雄同株的聚果榕雌花期榕果内,榕小蜂先产卵、后传粉。本研究首次展示了传粉榕小蜂在聚果榕雌花期榕果内的产卵和传粉行为,并获得与行为相匹配的产卵量和传粉繁殖量,反映了具主动传粉行为的榕小蜂在传粉和产卵之间存在时间和数量上的权衡。  相似文献   

16.
The relationship between body size (hind tibia length), <12 h egg load, wing wear and parasitoid age was used to estimate realised lifetime parasitism of recently dead Gonatocerus ashmeadi collected in a citrus orchard. Under prevailing field conditions and methodology assumptions, it was estimated that female G. ashmeadi lived on average for 183 ± 17 degree-days, parasitised a total of 87 ± 9 Homalodisca vitripennis eggs, and died with 34 ± 5 eggs remaining in the ovaries. Only 17% of dead G. ashmeadi died with no mature eggs suggesting that 83% of G. ashmeadi were not egg limited at time of death. Estimates of realised lifetime parasitism for female G. ashmeadi under prevailing field conditions in July and August in a southern California citrus orchard indicated that time of year had a significant effect on reproductive output. Additionally, live G. ashmeadi captured daily during June through August 2006 had body size, egg load and wing wear recorded to detect possible monthly changes in parasitoid age and egg load. Foraging G. ashmeadi captured alive in June were older and oviposited more eggs in the field compared with August. Only 0.5% of live G. ashmeadi were captured with no mature eggs in their ovaries indicating that the vast majority of live G. ashmeadi were not egg limited.  相似文献   

17.
Adult size, longevity, egg load dynamics and oviposition ofMicroplitis rufiventris Kok. which began their development in the first, second, third (preferred hosts) or fourth (non-preferred hosts) instar larvae of Spodoptera littoralis (Boisd.) were studied. The parasitoid size was largely determined by the initial host size at parasitism. Non-ovipositing females derived from older hosts lived for longer periods than those derived from younger ones. However, the ovipositing females, irrespective of their size, lived for almost the same periods. At emergence, the oviducts of adult females contain a significant amount of mature eggs available for oviposition for a few hours on eclosion day. Egg load increases during the early phase of adult life. The amount of additional mature eggs and rate of egg maturation per hour was greater for wasps derived from preferred hosts compared with those in females derived from non-preferred hosts. The pattern of egg production in M. rufiventris females depended on the availability of hosts for parasitization. Host-deprived females depleted the egg complement with aging; the longer the host deprivation, the lower the oviduct egg load. Marked reduction in both realized or potential fecundity of host-deprived females was observed following host availability. Host privation for more than 3 days induced a marked deficit fecundity pattern through the female' s life. The realized fecundity was determined by the interaction among host availability, the number of eggs that are matured over the female' s life span, oviposition rate and host size from which the female was derived. These results suggest that: (i) M. rufiventris wasp is a weak synovigenic species; (ii) the maturation of additional eggs is inhibited once the maximum oviduct egg load is reached; (iii) the egg load of the newly emerged female is significantly less than the realized fecundity; and (iv) because M. rufiventris females oviposit fewer eggs when they begin depleting their egg supply at 3 days, augmentative releases will require release immediately following emergence to ensure the highest parasitization rate in the field.  相似文献   

18.
Abstract.  The main effects and interactions of adult age, access to food and host deprivation, on the egg load of Venturia canescens (Gravenhorst) (Hymenoptera: Ichneumonidae), a larval parasitoid of Ephestia kuehniella (Lepidoptera: Pyralidae) and other pyralids, were studied in the laboratory. Intraspecific variation in the number of ovarioles was also studied. There was a positive and significant correlation between wasp size and both egg load and ovariole number, with the reproductive system of large wasps containing significantly more ovarioles and mature eggs than small wasps. Newly emerged adult wasps contained 27 ± 2.4 ovulated (mature) eggs in their lateral oviducts. Access to food and host deprivation were the only conditions under which egg load increased with parasitoid age. Wasps that had access to hosts immediately after emergence showed a significant decline in their egg complement, irrespective of food presence. Under conditions of both host and food deprivation, there was practically no alteration of egg load with parasitoid age. A three-way analysis of variance revealed that egg load varies significantly with food or host access but not with parasitoid age. All interactions among the three factors were significant. It is confirmed that there is no egg resorption in V. canescens and that egg production stops in the absence of food.  相似文献   

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