REPROWEED · Reproductive isolation and competitive ability between native and non-native ranges of invasive weeds
7РП — „Хора“ (Действия „Мария Кюри“)
- Период
- 2012-09-01 → 2016-08-31
- Финансиране от ЕС
- 100 000 €
- Участници
- 1
- Схема
- MC-CIG
Линиите свързват координатора с партньорите.
Накратко на български
Инвазивните растения, като жълтата стомахобилка, се изследват, за да се разбере как се променят техните репродуктивни системи и растеж в различните региони. Това помага да се разбере как се формират нови видове и защо въвеждането на растения от родната им среда може да отслаби конкурентната им способност.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Reproductive isolation and competitive ability between native and non-native ranges of invasive weeds.
In a nutshell, project ReproWeed intended to understand the processes through which invasive species attain different success across very distinct native and non-native regions. We focused on local adaptation of traits, with a strong emphasis on changes on reproductive systems (thus the acronym). We were very successful on identifying key traits but, we also found that many of those key trait-shifts between native and non-native ranges (e.g. increased biomass of invasive Centaurea solstitialis populations) were also present for other non-invasive exotic species (e.g. the non-invasive co-generic species C. sulphurea and C. calcitrapa, published at PLOS ONE). We found that the many different local adaptations developing on each native and non-native region was paralleled by an incipient degree of reproductive isolation, which suggests that invasives’ allopatric distribution could in fact be subjected to the same processes believed to shape the early stages of allopatric speciation (published at The American Naturalist). When we studied the fitness of experimentally produced inter-regional hybrids between Spain and California, we found that such inter-regional hybrids presented intermediate competitive ability when compared from their parents from their native and non-native regions (published at Ecography). This suggests that potential reintroductions from the native range would likely diminish competitive ability of locally adapted individuals by introducing maladapted genomes from the native range. Additionally, we also participated on the description of the phylogeography of most of the world range of the species, a critical information which was lacking on the literature and that will surely become a necessarily citation for most studies about the species (published at PLOS ONE). Data indicates that the geographical origin of the species (where the species first appeared in evolutionary history) was Turkey and Georgia, from where it likely spread through southern Europe until Spain. It is precisely this country, Spain, the most likely origin for invasions into North and South America, although later reintroductions from other European regions likely also occurred after the initial arrival. Finally, we gathered our data to build models which allowed us to integrate different data sources to understand which traits would be more important for invasive success. Our models showed that C. solstitialis plants from California were better competitors but that, regardless of origin, significant levels of disturbance in the invaded habitat were necessary for the species to dominate the community (published at Ecological Modelling). This information will be critical for the development of management plans, and emphasizes the prevalence of dynamic environmental conditions over the importance of being locally adapted. As a researcher, the fellowship, and the career advising committee emerging from it, have significantly contributed to my progress towards stabilization into the European Research Area. I have been able to publish 15 scientific papers during the grant, and have several manuscripts more either under review or in preparation. I successfully obtained external funding from my host country’s science foundation (FCT-Portugal) adding up to nearly €270 000 in two research projects, one of them still ongoing. I also obtained a renewable (upon new competition) five-year contract as full time researcher at the host institution (University of Coimbra). I also supervised one M.Sc. student and one Ph.D. student (ongoing). The grant also allowed me to develop a continuous outreach program, with resulted in high-quality direct interactions with hundreds of people of all ages, plus many more via magazine articles and blogging.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Over the last three centuries many species have been dispersed beyond their natural geographic limits by humans, but to our knowledge no reproductive isolation has been demonstrated for such neo-allopatric species. Centaurea solstitialis and C. sulphurea have overlapping distributions in their native and non-native ranges. Our preliminary results show that seed production of Californian inflorescences of both species, treated with pollen from Spanish populations of the same species, was 52% and 44% lower, respectively, than inflorescences pollinated with Californian pollen, suggesting that rapid reproductive isolation may have occurred between native and non-native ranges. Reproductive isolation between Californian and Spanish populations of C. solstitialis was 68% of the reproductive isolation for interspecific hybridization among these three species. Considering the large numbers of neo-allopatric species our results are unlikely to be unique. We already have seeds from Turkey and Georgia, the geographical speciation origin of the species; Spain, the last native range before the colonization of the Americas; Chile, the first American country to be colonized; and California, where the species present the most agressive invasive behavior and higher densities. With these seeds, we plan to obtain an F1 free of maternal effects and to cross-pollinate them to detect levels of reproductive isolation either pre-existing or newly developed in the non-native ranges. We will study the type of incompatibility by means of the study of pollen growth. We also plan to conduct reciprocal transplant experiments in Spain and California to study plant behavior in natural conditions (biomass, pollinator attraction, flower and seed production, herbivory) and to calculate phenotypic plasticity indexes for plants from both regions on both regions. Finally we will study the genetic structure of the populations to try to correlate it with the detected reproductive barriers.
Оригинален текст от CORDIS (на английски).
Участници
- UNIVERSIDADE DE COIMBRA · CoimbraКоординаторПортугалия
Връзки
Данни: CORDIS, © Европейски съюз
