Controlled cultivation of different stages of Pyropia orbicularis (Rhodophyta; Bangiales) from the South Pacific coast
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C. Bulboa | L. Contreras-Porcia | J. Rivas | Florentina Piña | Alejandra Núñez | M. Araya | Constanza Hernández
[1] E. Stoica,et al. Neutral Spores—An Easier Way to Cultivate Pyropia leucosticta (Thuret) Neefus & J.Brodie, 2011 (Bangiales, Rhodophyta) along the Romanian Black Sea Shore , 2023, Phycology.
[2] C. Bulboa,et al. Seaweed restocking along the Chilean coast: History, present, and inspiring recommendations for sustainability , 2023, Frontiers in Marine Science.
[3] L. Contreras-Porcia,et al. Desiccation Stress Tolerance in Porphyra and Pyropia Species: A Latitudinal Analysis along the Chilean Coast , 2022, Plants.
[4] K. Mikami,et al. Life cycle and reproduction dynamics of Bangiales in response to environmental stresses. , 2022, Seminars in cell & developmental biology.
[5] L. Contreras-Porcia,et al. Enhancement of Xanthophyll Synthesis in Porphyra/Pyropia Species (Rhodophyta, Bangiales) by Controlled Abiotic Factors: A Systematic Review and Meta-Analysis , 2021, Marine drugs.
[6] D. Little,et al. A 20-year retrospective review of global aquaculture , 2021, Nature.
[7] Gregory N. Nishihara,et al. Chronic effects of three different stressors, irradiance, temperature, and desiccation, on the PSII photochemical efficiency in the heteromorphic life-history stages of cultivated Pyropia yezoensis f. narawaensis (Bangiales) from Japan , 2020, Journal of Applied Phycology.
[8] M. Rhee,et al. Health Functionality and Quality Control of Laver (Porphyra, Pyropia): Current Issues and Future Perspectives as an Edible Seaweed , 2019, Marine drugs.
[9] S. Barrento,et al. Cultivation of early life history stages of Porphyra dioica from the British Isles , 2019, Journal of Applied Phycology.
[10] G. Zengin,et al. Bioactive compounds in seaweeds: An overview of their biological properties and safety. , 2019, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[11] L. Contreras-Porcia,et al. First approach of characterization of bioactive compound in Pyropia orbicularis during the daily tidal cycle , 2019, Latin American Journal of Aquatic Research.
[12] M. Kumar,et al. Ecophysiological differentiation led distribution of Pyropia species inferred through environmental stress. , 2019, Journal of phycology.
[13] K. Mikami,et al. A unique life cycle transition in the red seaweed Pyropia yezoensis depends on apospory , 2019, Communications Biology.
[14] Ju-Hyoung Kim,et al. Effects of temperature and light on photosynthesis and growth of red alga Pyropia dentata (Bangiales, Rhodophyta) in a conchocelis phase , 2019, Aquaculture.
[15] H. Endo,et al. Combined effects of irradiance and temperature on the PSII photochemical efficiency in the heteromorphic life history stages of cultivated Pyropia (Bangiales): P. yezoensis f. narawaensis and P. tenera from Japan , 2018, Journal of Applied Phycology.
[16] M. Petroni,et al. The Effect of Lutein on Eye and Extra-Eye Health , 2018, Nutrients.
[17] M. E. Ramírez,et al. Variación espacio-temporal en la composición del ensamble de macroalgas del intermareal rocoso de Maitencillo, Valparaíso, costa central de Chile , 2018 .
[18] Eduardo Guajardo,et al. Expression profile of desiccation tolerance factors in intertidal seaweed species during the tidal cycle , 2017, Planta.
[19] Z. Liang,et al. Developmental and physiological properties of Pyropia dentata (Bangiales, Rhodophyta) conchocelis in culture , 2016, Journal of Applied Phycology.
[20] J. Correa,et al. Role of abscisic acid (ABA) in activating antioxidant tolerance responses to desiccation stress in intertidal seaweed species , 2016, Planta.
[21] Jin Cao,et al. Porphyra Species: A Mini-Review of Its Pharmacological and Nutritional Properties. , 2016, Journal of medicinal food.
[22] P. Potin,et al. Identification of proteins involved in desiccation tolerance in the red seaweed Pyropia orbicularis (Rhodophyta, Bangiales) , 2015, Proteomics.
[23] R. Ríosmena-Rodríguez,et al. Growth and reproductive responses of the conchocelis phase of Pyropia hollenbergii (Bangiales, Rhodophyta) to light and temperature , 2015, Journal of Applied Phycology.
[24] J. Brodie,et al. Pyropia orbicularis sp. nov. (Rhodophyta, Bangiaceae) based on a population previously known as Porphyra columbina from the central coast of Chile , 2014 .
[25] M. Kumar,et al. Desiccation stress in intertidal seaweeds: Effects on morphology, antioxidant responses and photosynthetic performance , 2014 .
[26] R. Fagen,et al. Effects of density and substrate type on recruitment and growth of Pyropia torta (Rhodophyta) gametophytes , 2013 .
[27] Rashida Ali,et al. Dietary Sources of Lutein and Zeaxanthin Carotenoids and Their Role in Eye Health , 2013, Nutrients.
[28] A. Anton,et al. Analysis of formulae for determination of seaweed growth rate , 2013, Journal of Applied Phycology.
[29] B. H. Buck,et al. Seaweed and Man , 2012 .
[30] Daniela Thomas,et al. Tolerance to oxidative stress induced by desiccation in Porphyra columbina (Bangiales, Rhodophyta) , 2010, Journal of experimental botany.
[31] H. Mizuta,et al. Artificial production of regenerable free cells in the gametophyte of Porphyra pseudolinearis (Bangiales, Rhodophyceae) , 2008 .
[32] Fan Xiaolei,et al. Study on early-stage development of conchospore in Porphyra yezoensis Ueda , 2008 .
[33] Pooja Baweja,et al. Developmental Studies in Porphyra Vietnamensis: a High-Temperature Resistant Species from the Indian Coast , 2006, Journal of Applied Phycology.
[34] C. Yarish,et al. The developmental regulation of mass cultures of free-living conchocelis for commercial net seeding of Porphyra leucosticta from Northeast America , 2006 .
[35] Z. Dubinsky,et al. Responses of Porphyra linearis (Rhodophyta) to environmental factors under controlled culture conditions , 2000, Journal of Applied Phycology.
[36] Kim Nam‐Gil. Culture studies of Porphyra dentata and P. pseudolinearis (Bangiales, Rhodophyta), two dioecious species from Korea , 1999, Hydrobiologia.
[37] A. Frazer,et al. Growth of the conchocelis phase of Porphyra columbina (Bangiales, Rhodophyta) at different temperatures and levels of light, nitrogen and phosphorus , 1995 .
[38] B. Santelices,et al. Photoperiod and temperature regulation of the life history of Porphyra columbina (Rhodophyta, Bangiales) from central Chile , 1986 .
[39] M. Kumar,et al. Tolerance pathways to desiccation stress in seaweeds , 2017 .
[40] J. Brodie,et al. The bladed Bangiales (Rhodophyta) of the South Eastern Pacific: Molecular species delimitation reveals extensive diversity. , 2016, Molecular phylogenetics and evolution.
[41] P. Bernstein,et al. Carotenoids and Age-Related Macular Degeneration , 2014 .
[42] C. Yarish,et al. New England Seaweed Culture Handbook , 2014 .
[43] C. Yarish,et al. The Role of Porphyra in Sustainable Culture Systems: Physiology and Applications , 2010 .
[44] M. Notoya,et al. Culture Studies of Four Species of Porphyra(Rhodophyta) from Japan. , 1993 .