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三种独居蚜虫寄生蜂(膜翅目:茧蜂科,蚜茧蜂亚科)田间种群的窝卵数和性比变异

Brood-size and sex-ratio variation in field populations of three species of solitary aphid parasitoids (Hymenoptera: Braconidae, Aphidiinae).

作者信息

Mackauer Manfred, Völkl Wolfgang

机构信息

Department of Biological Sciences, Simon Fraser University, 8888 University Drive, Burnaby, B.C., Canada, V5A 1S6.

Lehrstuhl Tierökologie I, Universität Bayreuth, 95440, Bayreuth, Germany.

出版信息

Oecologia. 2002 Apr;131(2):296-305. doi: 10.1007/s00442-002-0878-8. Epub 2002 Apr 1.

Abstract

Solitary parasitoids of colony-forming hosts may produce quasi-gregarious broods, which favours sibmating on the natal patch and local mate competition (LMC). We examined seasonal variations in brood size and sex ratio in three species of solitary parasitoids of aphids associated with trophobiotic ants. Adialytus arvicola, a parasitoid of Sipha agropyrella on grasses, had the smallest broods (mean=4.2, maximum 19), while Lysiphlebus hirticornis, a parasitoid of Metopeurum fuscoviride on tansy, had the largest broods (mean=32.0, maximum 265). In Pauesia pini, a parasitoid of Cinara piceicola on Norway spruce, broods comprised an average of 5.8 (maximum 41) individuals; brood size increased during early summer when hosts became more available but remained the same later in the season. In all three species the sex ratio at eclosion was female-biased, with broods containing approximately two daughters for each son in both A. arvicola and L. hirticornis; the degree of female-bias was least in P. pini. The sex ratio did not vary with brood size. In A. arvicola, the variance of the number of sons declined with an increase in brood size, consistent with "precise" sex allocation. In contrast, in L. hirticornis, the overall sex-ratio variance was greater than its binomial expectation, while it did not differ from binomial in P. pini. A large proportion of broods contained only sons or only daughters, especially in A. arvicola. An excess of male-only broods is expected if constrained females (which can produce only sons) contribute offspring prior to mating. The number of male-only broods, however, did not differ from the number expected if all females are mated and allocate offspring sexes binomially, except in P. pini. In the latter species, broods with two daughters (as opposed to two sons) exceeded binomial expectations. We propose that P. pini is largely outbreeding, while the strongly female-biased sex ratio in A. arvicola and L. hirticornis is consistent with partial sibmating and LMC. Ant-parasitoid interactions could account for a different population mating structure in the three parasitoid species. Both A. arvicola and L. hirticornis mimic the epicuticular hydrocarbon pattern of their aphid hosts. Eclosing wasps are ignored by honeydew-collecting ants and hence can mate and forage on the natal patch. In contrast, P. pini generally depart the mummy area to avoid attacks by trophobiotic ants and mate off patch.

摘要

寄生于群居性宿主的独居寄生蜂可能会产生近似群居的幼虫群体,这有利于在出生地进行同胞交配和本地配偶竞争(LMC)。我们研究了三种与食蚜蚁相关的蚜虫独居寄生蜂的幼虫大小和性别比例的季节性变化。Adialytus arvicola是一种寄生于禾本科植物上的Sipha agropyrella的寄生蜂,其幼虫群体最小(平均 = 4.2,最大为19),而Lysiphlebus hirticornis是一种寄生于艾菊上的Metopeurum fuscoviride的寄生蜂,其幼虫群体最大(平均 = 32.0,最大为265)。在Pauesia pini中,它是挪威云杉上的Cinara piceicola的寄生蜂,幼虫群体平均有5.8个个体(最大为41);幼虫大小在初夏时随着宿主数量增多而增加,但在季节后期保持不变。在这三种寄生蜂中,羽化时的性别比例都偏向雌性,在Adialytus arvicola和Lysiphlebus hirticornis中,每个幼虫群体中女儿大约是儿子的两倍;Pauesia pini的雌性偏向程度最小。性别比例不随幼虫大小而变化。在Adialytus arvicola中,儿子数量的方差随着幼虫大小的增加而下降,这与“精确”的性别分配一致。相比之下,在Lysiphlebus hirticornis中,总体性别比例方差大于二项分布预期,而在Pauesia pini中与二项分布没有差异。很大一部分幼虫群体只包含儿子或只包含女儿,尤其是在Adialytus arvicola中。如果受限制的雌性(只能产儿子)在交配前产仔,预计会有过多只含雄性的幼虫群体。然而,除了Pauesia pini外,只含雄性的幼虫群体数量与所有雌性都交配并按二项分布分配后代性别的预期数量没有差异。在后者中,有两个女儿(与两个儿子相对)的幼虫群体超过了二项分布预期。我们认为Pauesia pini主要是异交繁殖,而Adialytus arvicola和Lysiphlebus hirticornis中强烈的雌性偏向性别比例与部分同胞交配和本地配偶竞争一致。蚂蚁 - 寄生蜂的相互作用可能解释了这三种寄生蜂不同的种群交配结构。Adialytus arvicola和Lysiphlebus hirticornis都模仿其蚜虫宿主的表皮碳氢化合物模式。羽化后的黄蜂会被采集蜜露的蚂蚁忽略,因此可以在出生地交配和觅食。相比之下,Pauesia pini通常会离开木乃伊区域以避免食蚜蚁的攻击,并在区域外交配。

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