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Introduction: Academic Freedom and Tenure Symposium [PDF]
Leiser, Burton M.
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Expanding Monitoring Capacity for Potential Invasive Species in Arctic Canada With Environmental DNA Metabarcoding. [PDF]
Boyse E +10 more
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The Expression of <i>Shmt</i> Genes in Amphioxus Suggests a Role in Tissue Proliferation Rather than in Neurotransmission. [PDF]
Bozzo M +7 more
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SEA‐SQUIRT ASTHMA:Allergic Asthma Induced by Inhalation of Sea-squirt Substances
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Discovery of PD-L1 Peptide Inhibitors from Ascidian Enzymatic Hydrolysates by Affinity Ultrafiltration Coupled to NanoLC-MS/MS. [PDF]
Huang Q +7 more
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Opening the door to multi-year marine habitat forecasts. [PDF]
Payne MR.
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Science, 2021
Invasive Species Invasive marine species can be aggressive ecosystem engineers, dramatically altering new habitats by overgrowing preexisting species and threatening coastal ecology. Pyura praeputialis , an intertidal tunicate indigenous to the southeastern coast of Australia, invaded the coastline of Chile a few hundred years ago.
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Invasive Species Invasive marine species can be aggressive ecosystem engineers, dramatically altering new habitats by overgrowing preexisting species and threatening coastal ecology. Pyura praeputialis , an intertidal tunicate indigenous to the southeastern coast of Australia, invaded the coastline of Chile a few hundred years ago.
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Sea squirt-inspired bio-derived tissue sealants
2023AbstractSea squirts’ or tunicates’ bodies are composed of cellulose nanofibers and gallol- functionalized proteins. These sea creatures are known to heal their injuries under seawater by forming crosslinks between gallols and functional groups from other proteins in their bodies.
Aishwarya V. Menon +6 more
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Carotenoids of sea squirts—II. Comparative biochemical studies of carotenoids in sea squirts
Comparative Biochemistry and Physiology Part B: Comparative Biochemistry, 1985Abstract 1. 1. The carotenoids of ten species of Tunicata were investigated from the comparative biochemical point of view. 2. 2. Fucoxanthinol, halocynthiaxanthin, mytiloxanthin and mytiloxanthinone were found in most species. All these compounds are presumed to be metabolic products of fucoxanthin from marine phytoplankton on which Tunicata
Masahiro Ookubo, Takao Matsuno
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