publicaciones seleccionadas artículo académico Functional Reproductive and Developmental Traits Differences Between Two Macrocystis Ecomorphs: Importance of Neutral Lipids. Ecology and Evolution. 15:e70899. 2025 Unveiling the 2017 Karenia Bloom in NW Chilean Patagonia by Integrating Remote Sensing and Field Data. Microorganisms. 13:2440. 2025 Diverse inorganic carbon uptake strategies in Antarctic seaweeds: Revealing species-specific responses and implications for Ocean Acidification. Science of The Total Environment. 945:174006. 2024 Effects of pH, Temperature, and Light on the Inorganic Carbon Uptake Strategies in Early Life Stages of Macrocystis pyrifera (Ochrophyta, Laminariales). Plants. 13:3267. 2024 Editorial: Sustainable seaweed aquaculture: Current advances and its environmental implications. Frontiers in Marine Science. 10:1160656. 2023 The influence of ammonium to nitrate ratio on the thermal responses of early life stages of the giant kelp Macrocystis pyrifera. Algal Research. 72:103114. 2023 Effect of environmental history on the habitat-forming kelp Macrocystis pyrifera responses to ocean acidification and warming: a physiological and molecular approach. Scientific Reports. 11:2510. 2021 Reproductive phenology and morphology of Macrocystis pyrifera (Laminariales, Ochrophyta) from southern New Zealand in relation to wave exposure 1. Journal of Phycology. 57:1619-1635. 2021 Growth performance of Alexandrium catenella from the Chilean fjords under different environmental drivers: plasticity as a response to a highly variable environment. Journal of Plankton Research. 42:119-134. 2020 Nitrogen sufficiency enhances thermal tolerance in habitat-forming kelp: implications for acclimation under thermal stress. Scientific Reports. 10:3186. 2020 Stress due to low nitrate availability reduces the biochemical acclimation potential of the giant kelp Macrocystis pyrifera to high temperature. Algal Research. 47:101895. 2020 Chemical microenvironments within macroalgal assemblages: Implications for the inhibition of kelp recruitment by turf algae. Limnology and Oceanography. 64:1600-1613. 2019 Co-culture in marine farms: macroalgae can act as chemical refuge for shell-forming molluscs under an ocean acidification scenario. Phycologia. 58:542-551. 2019 Carbonic anhydrase activity in seaweeds: overview and recommendations for measuring activity with an electrometric method, using Macrocystis pyrifera as a model species. Marine Biology. 165:88. 2018 Copper pollution exacerbates the effects of ocean acidification and warming on kelp microscopic early life stages. Scientific Reports. 8:14763. 2018 Copper pollution exacerbates the effects of ocean acidification and warming on kelp microscopic early life stages. 2018 Photosynthesis and nitrogen uptake of the giant kelp Macrocystis pyrifera (Ochrophyta) grown close to salmon farms. Marine Environmental Research. 135:93-102. 2018 Growth, ammonium metabolism, and photosynthetic properties of Ulva australis (Chlorophyta) under decreasing pH and ammonium enrichment. PLOS ONE. 12:e0188389. 2017 Meiospore development of the kelps Macrocystis pyrifera and Undaria pinnatifida under ocean acidification and ocean warming: independent effects are more important than their interaction. Marine Biology. 164:7. 2017 Ocean acidification and kelp development: Reduced pH has no negative effects on meiospore germination and gametophyte development of Macrocystis pyrifera and Undaria pinnatifida. Journal of Phycology. 53:557-566. 2017 Seawater pH, and not inorganic nitrogen source, affects pH at the blade surface ofMacrocystis pyrifera: implications for responses of the giant kelp to future oceanic conditions. Physiologia Plantarum. 159:107-119. 2017 Tissue nitrogen status does not alter the physiological responses of Macrocystis pyrifera to ocean acidification. Marine Biology. 164:177. 2017 Effects of ocean acidification on the photosynthetic performance, carbonic anhydrase activity and growth of the giant kelp Macrocystis pyrifera. Photosynthesis Research. 124:293-304. 2015 Saturating light and not increased carbon dioxide under ocean acidification drives photosynthesis and growth inUlva rigida(Chlorophyta). Ecology and Evolution. 5:874-888. 2015 Bicarbonate uptake via an anion exchange protein is the main mechanism of inorganic carbon acquisition by the giant kelpMacrocystis pyrifera(Laminariales, Phaeophyceae) under variable pH. Journal of Phycology. 50:998-1008. 2014 Seasonal variability of Dinophysis spp. and Protoceratium reticulatum associated to lipophilic shellfish toxins in a strongly stratified Chilean fjord. Deep Sea Research Part II: Topical Studies in Oceanography. 101:152-162. 2014 Distribution, abundance and diversity of modern dinoflagellate cyst assemblages from southern Chile (43–54° S). Botanica Marina. 51:399-410. 2008
Resumen de investigación FONDECYT INICIACION Año de concurso: 2020NUCLEOS MILENIO Año de concurso: 2021
investigador principal en Local adaptation across multiple life stages and populations: implications for kelps resilience to ongoing climate change. FONDECYT INICIACION 11200474 2020 - 2023
coinvestigador principal en Núcleo milenio de agronomía marina de holobiontes algales (MASH). NUCLEOS MILENIO NCN2021_033 2021 - 2025