SEX RATIO DISTORTER · Sex ratio distorter and evolution
6РП — Действия „Мария Кюри“
- Период
- 2006-11-01 → 2008-10-31
- Финансиране от ЕС
- 159 046 €
- Участници
- 1
- Схема
- EIF
Линиите свързват координатора с партньорите.
Накратко на български
Бактерията Arsenophonus и нейният способност да убива мъжките ембриони при някои членоподи се анализират в този проект. Това помага да се разбере как репродуктивните паразити се разпространяват между различните видове и влияят върху еволюцията на животните.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Final Activity Report Summary - SEX RATIO DISTORTER (Sex ratio distorter and Evolution)
Some of the most important evolutionary transitions of life, from as early as the advent of eukaryotes from prokaryotes, have involved symbiosis. Numerous infections have evolved towards mutualistic symbiosis, while some inherited microorganisms are reproductive parasites. Such organisms spread by manipulating the reproduction of arthropods, e.g. by forcing asexuality on its host, feminising hosts, inducing conditional sterility or killing males. The single inherited parasite wolbachia has received much attention in recent literature. It has been found to be widespread and is now regarded as a very important cryptic driver of host ecology and evolution. However, wolbachia is just one among bacteria known to act as reproductive parasites, and our knowledge on most other bacteria remains desperately weak. In this project, we filled this void for one male-killing bacterium, arsenophonus. Our project developed a global view on the range and nature of the arsenophonus symbiosis. At least a third of arthropod species were infected by a diverse assemblage of maternally inherited bacteria like arsenophonus that were likely to strongly influence their hosts biology. The question on how new infections were founded had increased in importance, as had happened in important infections. In past thinking, new infections of reproductive parasites were rarely acquired, mostly on evolutionary rather than on ecological timescales. In this project, we established an unusual high rate of transmission of a male-killing arsenophonus strain through a community of parasitoid wasps. Contrary to the other reproductive parasites, arsenophonus displayed high capacities to cross the barrier of host species. Importantly, arsenophonus underwent efficient maternal transmission in all the newly infected species following initial infection, and killed males in all cases. There were few studies on the evolution of other reproductive parasites than wolbachia, and none on a microorganism distorting sex ratio, that were both vertically and horizontally transmitted at high frequency. The reason of this omission was that the systems in question were rare, making arsenophonus an exceptional model.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Some vertically inherited symbionts spread within host populations by manipulating the reproduction of their host to enhance their own transmission. Our current knowledge of these reproductive parasites is very weak, save a single well-characterized bacterium Wolbachia. In this proposal, we seek to fill this void for one bacterium, Arsenophonus.In the wasp Nasonia vitripennis (a parasitoid of various fly species), Arsenophonus nasoniae distorts the sex ratio of wasp progeny, increasing the proportion of daughters up to 90% by killing sons. Whilst Arsenophonus is a maternally inherited bacterium, it can also be horizontally transmitted at high frequency among wasps developing within a fly host. Arsenophonus is inoculated into the fly host and then ingested by the developing wasp offspring.This peroral transmission of the bacterium to the next generation of wasp is unique, in contrast to the cytoplasmic mode of transmission typical of other micro-organisms distorting sex ratio, and makes this an important comparator. Our project will therefore focus on Arsenophonus-arthropod symbioses, and develop a global view of the range and nature of these interactions.We will score the incidence of Arsenophonus across a large panel of arthropod species, test for sex bias in prevalence that would indicate a sex ratio distorting phenotype, and use DNA sequence to identify the major Arsenophonus lineages. We will also test the hypothesis that genome plasticity is an important contributor to adaptability of inherited bacteria, transfer of DNA via phage increasing the ability to colonize new hosts and develop a variety of infective phenotypes.In addition, we will investigate the effect of natural selection acting on genes likely to be involved in host-parasite interactions. In the course of this project, we will use an integrative approach to identify the common and specific mechanisms in which natural selection acts in this symbiosis.
Оригинален текст от CORDIS (на английски).
Участници
- UNIVERSITY COLLEGE LONDON · LONDONКоординаторОбединеното кралство
Връзки
Данни: CORDIS, © Европейски съюз
