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1.
    
Wolbachia is an endosymbiont prevalent in arthropods. To maximize its transmission thorough the female germline, Wolbachia induces in infected hosts male‐to‐female transformation, male killing, parthenogenesis, and cytoplasmic incompatibility, depending on the host species and Wolbachia strain involved. However, the molecular mechanisms underlying these host manipulations by Wolbachia remain largely unknown. The Wolbachia strain wMel, an inhabitant of Drosophila melanogaster, impairs host oogenesis only when transplanted into a heterologous host, for example, Drosophila simulans. We found that egg polarity defects induced by wMel infection in D. simulans can be recapitulated in the natural host D. melanogaster by transgenic overexpression of a variant of the Wolbachia protein Toxic manipulator of oogenesis (TomO), TomOwMel?HS, in the female germline. RNA immunoprecipitation assays demonstrated that TomO physically associates with orb mRNA, which, as a result, fails to interact with the translation repressor Cup. This leads to precocious translation of Orb, a posterior determinant, and thereby to the misspecification of oocytes and accompanying polarity defects. We propose that the ability of TomO to bind to orb mRNA might provide a means for Wolbachia to enter the oocyte located at the posterior end of the egg chamber, thereby accomplishing secure maternal transmission thorough the female germline.  相似文献   

2.
共生菌Wolbachia能够诱导许多节肢动物发生产雌孤雌生殖现象。由于该菌无法在宿主细胞外离体培养,人们常采用抗生素处理获得Wolbachia去除或滴度降低的宿主种群,用以研究Wolbachia对宿主的调控作用,但抗生素可能会对宿主产生附加效应。前人研究主要集中在抗生素处理是否可以恢复感染寄生蜂的两性生殖,较少关注抗生素对宿主适合度的影响。本研究利用不同浓度四环素(0、5 mg/mL、15 mg/mL和25 mg/mL)连续饲喂5代来明确四环素对产雌孤雌生殖的松毛虫赤眼蜂Trichogramma dendrolimi适合度的影响。研究结果如下:(1)随各浓度四环素处理世代的增加,雌蜂的繁殖力先降低后升高。在F_1代、F_2代和F_5代中,雌蜂繁殖力随四环素浓度的增加而显著下降,但在F_3代和F_4代中,抗生素浓度对雌蜂繁殖力无显著差异;(2)在四环素不同浓度处理下,F_1代和F_3代的羽化率与对照无显著差异,在F_2代、F_4代和F_5代中,四环素对羽化率存在负面影响;(3)经四环素处理的松毛虫赤眼蜂子代雄性比显著高于对照组。在5 mg/mL的四环素处理条件下,松毛虫赤眼蜂子代雄性比随处理世代的增加而升高,但在25 mg/mL的四环素处理条件下随世代的增加先升高后下降。结果表明:四环素能够使孤雌产雌松毛虫赤眼蜂恢复两性生殖,但对松毛虫赤眼蜂的适合度存在不利影响。此外,随着四环素处理世代的增加,松毛虫赤眼蜂对抗生素产生了一定的适应能力。  相似文献   

3.
    
Wolbachia are maternally-transmitted endocellular bacteria infecting several arthropod species. In order to study the possibility of Wolbachia segregation in a naturally bi-infected host, isofemale lines from a bi-infected Drosophila simulans (Sturtevant) strain from Nouméa (New Caledonia) were backcrossed using uninfected males carrying the same nuclear background. Uninfected males were used to avoid the cytoplasmic incompatibility syndrome (CI) associated with the presence of Wolbachia in males. Each line was established using a female infected simultaneously by the two different Wolbachia variants wHa and wNo. The backcross led to some individuals carrying only one type of infection being recovered among the progeny of the bi-infected foundress females. Rarely, uninfected individuals were also recovered. Isolated for the first time in its natural host, wNo exhibited a significantly weaker CI phenotype than the isolated wHa variant. Infection fate when backcross conditions were relaxed varied depending on rearing conditions of the host. Under favourable conditions, the infection was generally maintained, while it was frequently lost under unfavourable conditions. This result probably reflects the direct fitness dependence of the symbiont on its host.  相似文献   

4.
Evidence is growing that homologous recombination is a powerful source of genetic variability among closely related free-living bacteria. Here we investigate the extent of recombination among housekeeping genes of the endosymbiotic bacteria Wolbachia. Four housekeeping genes, gltA, dnaA, ftsZ, and groEL, were sequenced from a sample of 22 strains belonging to supergroups A and B. Sequence alignments were searched for recombination within and between genes using phylogenetic inference, analysis of genetic variation, and four recombination detection programs (MaxChi, Chimera, RDP, and Geneconv). Independent analyses indicate no or weak intragenic recombination in ftsZ, dnaA, and groEL. Intragenic recombination affects gltA, with a clear evidence of horizontal DNA transfers within and between divergent Wolbachia supergroups. Intergenic recombination was detected between all pairs of genes, suggesting either a horizontal exchange of a genome portion encompassing several genes or multiple recombination events involving smaller tracts along the genome. Overall, the observed pattern is compatible with pervasive recombination. Such results, combined with previous evidence of recombination in a surface protein, phage, and IS elements, support an unexpected chimeric origin of Wolbachia strains, with important implications for Wolbachia phylogeny and adaptation of these obligate intracellular bacteria in arthropods.  相似文献   

5.
High incidence of the maternally inherited bacterium Cardinium in spiders   总被引:2,自引:0,他引:2  
Inherited bacteria are now recognized as important players in arthropod evolution and ecology. Here, we test spiders, a group recently identified as possessing inherited bacteria commonly, for the presence of two reproductive parasites, Cardinium hertigii (Bacteroidetes group) and Wolbachia (α-proteobacteria), estimating incidence, prevalence, any sex bias in infection, and infection diversity, for a panel of field-collected specimens. We identify spiders as a hotspot for Cardinium . Present in 22% of the sampled species, incidence was significantly higher than that previously recorded in insects. Where present, Cardinium infection occurred at medium prevalence without evidence of sex bias in prevalence that would indicate sex-ratio distortion activity. Wolbachia was present in 37% of species, but revealed a gradation from being rare to very common. In one case, Wolbachia was found significantly more commonly in females than males, indicating it may act as a sex-ratio distorter in some species. Breeding work conducted on two species confirmed that Wolbachia and Cardinium were transmitted maternally, which represents the first proof of inheritance of these symbionts in spiders. Overall, this study demonstrates that the majority of spider species are infected with inherited bacteria, and their role in host biology clearly requires determination.  相似文献   

6.
7.
    
Speciation depends on the establishment of reproductive isolation between populations of the same species. Whether assortative mating evolves as a by-product of adaptation is a major question relevant to the origin of species by reproductive isolation. The long-term selection populations used here were originally established 30 years ago from a single cage population (originating from a maternal one) and subsequently subjected to divergent selection for tolerance of toxins in food (heavy metals versus ethanol) to investigate this question. Those populations now differ in sexual isolation and Wolbachia infection status. Wolbachia are common and widespread bacteria infecting arthropods and nematodes. Attention has recently focused on their potential role in insect speciation, due to post-mating sperm-egg incompatibilities induced by the bacteria. In this paper we examine the potential effect of Wolbachia on the level of sexual isolation. By antibiotic curing, we show that removal of Wolbachia decreases levels of mate discrimination (sexual isolation index) between populations by about 50%. Backcrossing experiments confirm that this effect is due to infection status rather than to genetic changes in the populations resulting from antibiotic treatment. Antibiotic treatment has no effect on mate discrimination level between uninfected populations. Our findings suggest that the presence of Wolbachia (or another undetected bacterial associate) act as an additive factor contributing to the level of pre-mating isolation between these Drosophila melanogaster populations. Given the ubiquity of bacterial associates of insects, such effects could be relevant to some speciation events.  相似文献   

8.
    
Asexual lineages can derive from sexual ancestors via different mechanisms and at variable rates, which affects the diversity of the asexual population and thereby its ecological success. We investigated the variation and evolution of reproductive systems in Aptinothrips, a genus of grass thrips comprising four species. Extensive population surveys and breeding experiments indicated sexual reproduction in A. elegans, asexuality in A. stylifer and A. karnyi, and both sexual and asexual lineages in A. rufus. Asexuality in A. stylifer and A. rufus coincides with a worldwide distribution, with sexual A. rufus lineages confined to a limited area. Inference of molecular phylogenies and antibiotic treatment revealed different causes of asexuality in different species. Asexuality in A. stylifer and A. karnyi has most likely genetic causes, while it is induced by endosymbionts in A. rufus. Endosymbiont‐community characterization revealed presence of Wolbachia, and lack of other bacteria known to manipulate host reproduction. However, only 69% asexual A. rufus females are Wolbachia‐infected, indicating that either an undescribed endosymbiont causes asexuality in this species or that Wolbachia was lost in several lineages that remained asexual. These results open new perspectives for studies on the maintenance of mixed sexual and asexual reproduction in natural populations.  相似文献   

9.
    
This study reports on two parthenogenetic strains of the migratory locust Locusta migratoria. The offspring of thelytokou females had a single fragment per microsatellite loci. All offspring of the parthenogenetic F1 females were genetically identical. These results further confirmed that restitution of the sister products of early cleavage mitoses and cell fusion might be the most likely diploidization mechanisms in the thelytokous locusts. Polymerase chain reaction amplification results demonstrated that thelytoky in the locust was not induced by Wolbachia bacteria. Apart from the low fitness gained in thelytokous females, large populations with migration and losing heterozygosity may be other reasons why regular parthenogenesis has not evolved in the locust.  相似文献   

10.
周淑香  李玉  张帆 《生态学报》2009,29(9):4732-4737
研究了持续高温(31℃恒温)和高适温交替(白天31℃/夜间25℃变温)条件对感染沃尔巴克氏体(Wolbachia)的丽蚜小蜂生殖和发育的影响.结果发现在持续高温条件下,丽蚜小蜂的生殖力和羽化率降低、寿命缩短、后代雄性比例增加,丽蚜小蜂从F1代开始产生雄性后代,且雄性比例在45%以上,F2代雄性比例达到最高值,表明高温冲击会对丽蚜小蜂的控害潜能产生不利的影响,因此在丽蚜小蜂的商业生产和田间应用中要注意环境温度,避免因高温带来的损失.在31℃恒温条件下连续培养3代或6代再转入25℃培养,丽蚜小蜂雄性后代比例和沃尔巴克氏体在丽蚜小蜂雌性群体中的感染率都能够很快恢复到高温处理前的水平.说明沃尔巴克氏体对环境变化有一个自动调节和适应的过程.变温条件下丽蚜小蜂从F2代开始产生雄性后代,但雄性后代比例较低(13%),表明短期高温冲击对丽蚜小蜂的生殖方式影响不大,但是短期高温冲击如果持续作用就会产生积累效应,影响丽蚜小蜂的后代性别.  相似文献   

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