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Main Authors: Chen, Lizhao, Zhong, Jiarui, Deng, Nanling, Lian, Taixin, Lin, Haoye, Zhang, Li
Format: Artículo científico
Language:en
Published: Ecotoxicology and environmental safety 2026
Subjects:
Online Access:https://pubmed.ncbi.nlm.nih.gov/41990539/
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author Chen, Lizhao
Zhong, Jiarui
Deng, Nanling
Lian, Taixin
Lin, Haoye
Zhang, Li
author_facet Chen, Lizhao
Zhong, Jiarui
Deng, Nanling
Lian, Taixin
Lin, Haoye
Zhang, Li
Chen, Lizhao
Zhong, Jiarui
Deng, Nanling
Lian, Taixin
Lin, Haoye
Zhang, Li
collection PubMed - marine biology
contents Arsenic bioaccumulation and biotransformation in macroalgae: Arsenosugar complexity and multifactor variability. Chen, Lizhao Zhong, Jiarui Deng, Nanling Lian, Taixin Lin, Haoye Zhang, Li Biotransformation Seaweed Arsenic Water Pollutants, Chemical Bioaccumulation Monosaccharides Arsenates Arsenic (As) is a toxic metalloid, and its accumulation in macroalgae has raised concerns for aquatic ecosystem health and human food safety given the increasing consumption of macroalgae. While previous studies have predominantly focused on quantifying total and inorganic As levels, the mechanisms underlying As bioaccumulation and biotransformation in macroalgae have remained fragmented. This review systematically synthesizes current knowledge on As accumulation levels, speciation, and biotransformation pathways in macroalgae. Macroalgae exhibit a high capacity to accumulate inorganic As from ambient water but mitigate its toxicity through extensive biotransformation into diverse organic As species, particularly arsenosugars. While key genes and enzymes involved in inorganic As conversion and methylation have been identified in microorganisms and microalgae, the enzymatic and genetic determinants of arsenosugar formation and degradation in macroalgae remain largely unexplored. These processes are influenced by a complex interplay of biological factors (e.g., algal taxonomy, growth stage, metabolic activity) and environmental conditions (e.g., temperature, pH, light intensity, salinity, nutrient availability). By integrating current knowledge on As speciation and biotransformation mechanisms, this review aims to advance mechanistic understanding of As environmental behavior and biological fate in macroalgae, and such knowledge is essential for informed risk assessment and the sustainable development of macroalgae aquaculture.
format Artículo científico
id pubmed_41990539
institution PubMed
language en
publishDate 2026
publisher Ecotoxicology and environmental safety
record_format pubmed
spellingShingle Arsenic bioaccumulation and biotransformation in macroalgae: Arsenosugar complexity and multifactor variability.
Chen, Lizhao
Zhong, Jiarui
Deng, Nanling
Lian, Taixin
Lin, Haoye
Zhang, Li
Biotransformation
Seaweed
Arsenic
Water Pollutants, Chemical
Bioaccumulation
Monosaccharides
Arsenates
Arsenic bioaccumulation and biotransformation in macroalgae: Arsenosugar complexity and multifactor variability. Chen, Lizhao Zhong, Jiarui Deng, Nanling Lian, Taixin Lin, Haoye Zhang, Li Biotransformation Seaweed Arsenic Water Pollutants, Chemical Bioaccumulation Monosaccharides Arsenates Arsenic (As) is a toxic metalloid, and its accumulation in macroalgae has raised concerns for aquatic ecosystem health and human food safety given the increasing consumption of macroalgae. While previous studies have predominantly focused on quantifying total and inorganic As levels, the mechanisms underlying As bioaccumulation and biotransformation in macroalgae have remained fragmented. This review systematically synthesizes current knowledge on As accumulation levels, speciation, and biotransformation pathways in macroalgae. Macroalgae exhibit a high capacity to accumulate inorganic As from ambient water but mitigate its toxicity through extensive biotransformation into diverse organic As species, particularly arsenosugars. While key genes and enzymes involved in inorganic As conversion and methylation have been identified in microorganisms and microalgae, the enzymatic and genetic determinants of arsenosugar formation and degradation in macroalgae remain largely unexplored. These processes are influenced by a complex interplay of biological factors (e.g., algal taxonomy, growth stage, metabolic activity) and environmental conditions (e.g., temperature, pH, light intensity, salinity, nutrient availability). By integrating current knowledge on As speciation and biotransformation mechanisms, this review aims to advance mechanistic understanding of As environmental behavior and biological fate in macroalgae, and such knowledge is essential for informed risk assessment and the sustainable development of macroalgae aquaculture.
title Arsenic bioaccumulation and biotransformation in macroalgae: Arsenosugar complexity and multifactor variability.
topic Biotransformation
Seaweed
Arsenic
Water Pollutants, Chemical
Bioaccumulation
Monosaccharides
Arsenates
url https://pubmed.ncbi.nlm.nih.gov/41990539/