茧蜂
- 名braconid
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新疆棉田茧蜂常见种类记述
Descriptions of Frequent Species of Braconid in Cotton Field in Xinjiang , China
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在已鉴定的51个种中,中国新记录属2个&三盾茧蜂属Triaspis,矛茧蜂属Doryctes;
51 species were described , of which 2 genera are new to China ( Triaspis and Doryctes ) .
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通过透射电镜观察,在黄腹潜蝇茧蜂毒腺分泌细胞和卵巢表皮细胞中新发现存在一种类病毒颗粒,这些球状颗粒直径大约为50nm。
TEM examination revealed for the first time the existence of a kind of virus-like particles in secretory cells of the gland filaments and ovarial ectodermal cells of the parasitoid . These spherical-shaped particles were approximately 50 nm in diameter .
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斑痣悬茧蜂在各斑块的驻留时间随寄主密度的增加而增加。
The residence time on the patches increased with host density .
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菜粉蝶黄绒茧蜂在长白山区的发生
The yellow paint notes on Apanteles glomeratus in Changbai Mountain Area
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中国三种茧蜂学名订正(膜翅目:茧蜂科)
REVISION OF THREE BRACONIDS WASPS FROM CHINA ( Hymenoptera : Braconidae )
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六种农药对菜粉蝶绒茧蜂的毒性测定
Determinations of the toxicities of 6 Insecticides towards Apanteles glomeratus
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茧蜂是农林害虫重要天敌,开展生物防治的有益资源。
Parastic Hymenoptera are important enemies of pest and benefit resources for biocontrol .
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稻纵卷叶螟绒茧蜂生物学特性初步研究
Preliminary study on the biological character of Apanteles cypris
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温度和寄主虫龄对单白绵绒茧蜂生长发育的影响
Shopping list influence of temperature and host age on the development of Apanteles
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膜翅目茧蜂科茧蜂亚科新属新种中国。
Hymenoptera Braconidae Braoninae new genus new species China .
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绒茧蜂研究进展
A review on research progress of Apanteles Foerster
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蜡螟绒茧蜂对大蜡螟幼虫的寄生作用白蜡虫天敌寄生蜂种类及其对白蜡生产的影响
Species of Parasite Wasps on Ericerus pela and Affection on Production of White Wax
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绒茧蜂生物学和生态学特性
Biology and ecological characteristics of Apanteles
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小茧蜂科下有许多拟寄马蜂(拟寄马蜂是指在其他动物中产卵的一类马蜂)。
Braconidae is large family of parasitoid wasps ( wasps that lay eggs inside other animals ) .
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研究了中红侧沟茧蜂在一定的人工繁殖条件下,雌蜂的逐日产卵规律及子代逐日性分配规律。
The pattern of laying egg and progeny sex allocation of Microplitis mediator were studied in laboratory .
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以嗅觉仪测定了中红侧沟茧蜂对烟草粗提物、烟草中4种挥发物的行为反应。
Their behavioral responses to tobacco extract and 4 tobacco volatile compounds were tested in a four-armed olfactometer .
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文本报道了人工繁殖玉米螟长距茧蜂的几个重要问题。
This paper report , on some important problems about the artificial breeding of Macrocentrus linearis ( Nees ) .
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小窄径茧蜂林间套笼接蜂试验结果表明,影响小窄径茧蜂寿命和林间寄生活动的主要因素是接蜂时间和套笼内温度。
The main factors that effect the longevity and oviposition of Agathis pumila are the releasing time and cage temperature .
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蜡螟绒茧蜂生物学及其对两种蜡螟的控制作用
The Biology of Apanteles Galleriae Wilkinson ( Hymenoptera : Braconidae ) and Its Control Effects on the Two Wax Moths
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在实验室条件下,对麦蛾茧蜂各虫态的发育起点温度与有效积温进行研究。
In the present paper the development zero and effective accumulated temperature of Habrobracon hebetor ( Say ) were studied .
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此外,对小菜蛾和菜蛾绒茧蜂杀虫剂敏感性差异的毒理学原因进行了讨论。
In addition , the causes of the intrinsic differences In insecticide selectivity in the two species were also discussed .
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外源茉莉酸处理白菜和甘蓝后,处理植株的挥发物对菜蛾绒茧蜂的引诱力增强;
For both Chinese cabbage and common cabbage JA-treated plants produced volatiles more attractive to adult females than untreated plants .
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降雨与食叶量对柞蚕绒茧蜂病药剂防治效果的影响试验
The Influence of Rainfall and Amount of Ingested Leaves to the Effect of Chemical 9901 on the Control of Apanteles sp
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温度和营养对丝角姬小蜂寿命的影响未表现出交互作用,而对茶细蛾绒茧蜂寿命的影响存在交互作用。
There was interaction effect between temperature and nutrition condition on the longevity of A.theivorae , but none was found on S.soriceicornis .
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以大蜡螟的低龄幼虫为寄主,在实验室条件下对蜡螟绒茧蜂的寄生作用进行了研究。
The parasitism of Apanteles galleriae was studied in the laboratory condition with the young larvae of Galleria mellonela as its host .
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这些结果表明,菜蛾盘绒茧蜂与半闭弯尾姬蜂在同一寄主中发育时,前者具有明显的竞争优势。
These results suggest that C.plutellae have an obvious advantage over D.semiclausum in competition when both parasitoids develop in the same host .
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淡足侧沟茧蜂在不同龄期的粘虫幼虫体内的发育历期并无显著的差异,但寄主幼虫越大,育出的蜂茧越重。
In the experiment , the developing period of M. pallidipes showed no significant difference among the different stages of the host larvae .
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结果表明,中红侧沟茧蜂成蜂产卵行为对寄主大小有显著的选择性。成功寄生率随寄主体重的增加而降低。
Host size had significant influence on oviposition of the female parasitoid , and the parasitization rate decreased as the host size increased .
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蜡螟绒茧蜂在35℃条件下不能完成发育,全世代发育的最适温度为25~30℃。
It can not reach a complete development at 35 ℃, but the best temperature for whole generation development is 25 ~ 30 ℃ .