Unravelling the invasion success: How do climate and pollination mode shape seed germination of a non-native plant in native and invaded ranges?

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This study found that Nicotiana glauca's germination success in invaded ranges is driven by rapid evolution to local climate and pollination conditions, rather than broad environmental tolerance.

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The preprint examined how climate variables and pollination mode shape seed germination of the invasive shrub Nicotiana glauca by comparing seeds from its native South American range to seeds from invaded ranges in South Africa and Spain, which differ in climate and pollination environments. The study measured germination proportion and timing across temperature treatments, water potentials simulating hydric stress, and pollination treatments to parse the roles of pollinators versus autonomous selfing. Seeds showed broad temperature tolerance with a trend toward more specificity in non-native ranges, and germination declined under water stress in all regions but via different regional strategies; pollination-treatment responses were specific and matched the reproductive modes seen in each region, with autonomous self-pollination producing germinable seeds in non-native areas. The paper’s key limitation is that it is a preprint and, as described, uses experimental germination treatments rather than directly tracking evolutionary genetic change, and it concludes that rapid post-introduction local evolution could have increased success. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

Abstract Understanding how invasive plants germinate in response to shifting climatic conditions and biotic interactions is crucial for predicting and preventing their spread. Species may possess a broad germination capacity that allows them to germinate under a wide range of environmental conditions, or they may exhibit specific germination responses tailored to local environments. We investigated the germination responses of the invasive shrub Nicotiana glauca, using seeds from its native range (South America) and from two invaded areas (South Africa and Spain) with different climates and pollination environments. We evaluated the proportion and timing of germination at different temperatures, water potentials simulating hydric stress, and pollination treatments to assess the importance of pollinators and autonomous selfing. The germination response to temperature reflected broad tolerance, with a trend towards specificity, especially in the non-native ranges. In all regions, seeds reduced their germination under water stress, but how this reduction occurred showed different strategies in each region. Germination responses to pollination treatments were specific and consistent with the reproductive modes of N. glauca in each region. Although autonomous self-pollination effectively produced germinable seeds in non-native areas, the acquisition of pollinators may facilitate adaptation to climatic conditions. Our results suggest that rapid post-introduction evolution tailored to the local environment, rather than broad tolerance, would have allowed N. glauca to maximise germination under the specific conditions of the novel habitats. This finding indicates the potential for this species to invade diverse locations worldwide, as climatic and pollination environments do not appear to limit its expansion.
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Unravelling the invasion success: How do climate and pollination mode shape seed germination of a non-native plant in native and invaded ranges? | Research Square window.SnipcartSettings = { analytics: { enabled: false } }; (function() { var accessVector = localStorage.getItem('access_vector') || ''; window.dataLayer = window.dataLayer || []; if (accessVector) { window.dataLayer.push({ user: { profile: { profileInfo: { snid: accessVector } } } }); } })(); (function(w,d,s,l,i){w[l]=w[l]||[];w[l].push({'gtm.start':new Date().getTime(),event:'gtm.js'});var f=d.getElementsByTagName(s)[0],j=d.createElement(s),dl=l!='dataLayer'?'&l='+l:'';j.async=true;j.src='https://www.googletagmanager.com/gtm.js?id='+i+dl;f.parentNode.insertBefore(j,f);})(window,document,'script','dataLayer','GTM-K279D39R'); Browse Preprints In Review Journals COVID-19 Preprints AJE Video Bytes Research Tools Research Promotion AJE Professional Editing AJE Rubriq About Preprint Platform In Review Editorial Policies Our Team Advisory Board Help Center Sign In Submit a Preprint Cite Share Download PDF Research Article Unravelling the invasion success: How do climate and pollination mode shape seed germination of a non-native plant in native and invaded ranges? Ana E. Ferreras, Paula I. Marcora, Andres E. Issaly, Valeria Paiaro This is a preprint; it has not been peer reviewed by a journal. https://doi.org/ 10.21203/rs.3.rs-6115824/v1 This work is licensed under a CC BY 4.0 License Status: Posted Version 1 posted You are reading this latest preprint version Abstract Understanding how invasive plants germinate in response to shifting climatic conditions and biotic interactions is crucial for predicting and preventing their spread. Species may possess a broad germination capacity that allows them to germinate under a wide range of environmental conditions, or they may exhibit specific germination responses tailored to local environments. We investigated the germination responses of the invasive shrub Nicotiana glauca, using seeds from its native range (South America) and from two invaded areas (South Africa and Spain) with different climates and pollination environments. We evaluated the proportion and timing of germination at different temperatures, water potentials simulating hydric stress, and pollination treatments to assess the importance of pollinators and autonomous selfing. The germination response to temperature reflected broad tolerance, with a trend towards specificity, especially in the non-native ranges. In all regions, seeds reduced their germination under water stress, but how this reduction occurred showed different strategies in each region. Germination responses to pollination treatments were specific and consistent with the reproductive modes of N. glauca in each region. Although autonomous self-pollination effectively produced germinable seeds in non-native areas, the acquisition of pollinators may facilitate adaptation to climatic conditions. Our results suggest that rapid post-introduction evolution tailored to the local environment, rather than broad tolerance, would have allowed N. glauca to maximise germination under the specific conditions of the novel habitats. This finding indicates the potential for this species to invade diverse locations worldwide, as climatic and pollination environments do not appear to limit its expansion. broad vs specific germination response mean germination time Nicotiana glauca pollination treatments temperature water stress Full Text Cite Share Download PDF Status: Posted Version 1 posted You are reading this latest preprint version Research Square lets you share your work early, gain feedback from the community, and start making changes to your manuscript prior to peer review in a journal. As a division of Research Square Company, we’re committed to making research communication faster, fairer, and more useful. We do this by developing innovative software and high quality services for the global research community. Our growing team is made up of researchers and industry professionals working together to solve the most critical problems facing scientific publishing. Also discoverable on Platform About Our Team In Review Editorial Policies Advisory Board Help Center Resources Author Services Accessibility API Access RSS feed Manage Cookie Preferences © Research Square 2026 | ISSN 2693-5015 (online) Privacy Policy Terms of Service Do Not Sell My Personal Information {"props":{"pageProps":{"initialData":{"identity":"rs-6115824","acceptedTermsAndConditions":true,"allowDirectSubmit":true,"archivedVersions":[],"articleType":"Research Article","associatedPublications":[],"authors":[{"id":431597917,"identity":"cd42a986-6de8-46c6-856d-85c1c4662204","order_by":0,"name":"Ana E. 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