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The interception of microplastics (MPs) by mangrove roots plays an indispensable role in reducing the environmental risks of MPs. However, there remains limited research on the fate of the intercepted MPs. Hereby, the uptake and subsequent translocation of 0.2 μm and 2 μm PS MPs with different coating charge by the typical salt-secreting mangrove plants (Aegiceras corniculatum) were investigated. Compared to amino-functionalized PS with positive charge (PS-NH), the visualized results indicated that the efficient uptake of carboxy-functionalized PS with negative charge (PS-COOH) was more dependent on taproots. But for the lateral roots, it only allowed the entry of PS-NH instead of PS-COOH. The specific uptake pathways of PS-NH on the lateral roots could attribute to the release of H and organic acids by root hairs, as well as the relative higher Zeta potential. After entering the Aegiceras corniculatum roots, the translocation of PS MPs was restricted by their particle sizes. Furthermore, the release of PS MPs from Aegiceras corniculatum leaf surfaces through the salt glands and stomata was observed. And the decline in the photochemical efficiency of leaves under PS MPs exposure also indirectly proved the foliar emission of PS MPs. Our study improved the understanding of the environmental behaviors and risks of the retained MPs in mangroves.
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http://dx.doi.org/10.1016/j.scitotenv.2024.174113 | DOI Listing |
Environ Monit Assess
September 2025
National Institute of Oceanography, Panaji, Goa, India.
The study investigated bioaccumulation of metals in edible bivalves and crustaceans in the Mandovi Estuary, assessing the potential toxicity to biota and human consumers. Additionally, it examined the phytoremediation potential of mangrove species in the Mandovi Estuary. The concentration of essential (Fe, Mn, Zn, Cu, Co and Ni) and toxic (Hg) metals exceeded the upper crustal average, indicating their anthropogenic contribution to estuarine environment.
View Article and Find Full Text PDFPlants (Basel)
June 2025
College of Life Sciences and Oceanography, Shenzhen University, Shenzhen 518060, China.
To understand the mechanisms underlying species assemblage along salt gradients in intertidal zones, we measured the xylem hydraulic vulnerability curves (s), leaf water potential (), stomatal conductance (), specific leaf area (), and wood density () for six mangrove species of , , , , , and . We found the following: (1) and had the most negative (water potential at which 50% of hydraulic conductivity was lost), while and had the least negative , indicating different resistance to embolism in xylem; (2) and (water potential at which 88% of hydraulic conductivity was lost) declined with increasing salinity from the onshore to offshore species, as their water regulation strategy meanwhile transitioned from isohydry to anisohydry; (3) had smaller but larger hydraulic safety margin (), implying potentially higher capacity of water retention in leaves and lower risk of hydraulic failure in xylem. These results suggest that hydraulic traits play an important role in shaping the salt-driven niche segregation of mangroves along intertidal zones.
View Article and Find Full Text PDFCurr Microbiol
May 2025
School of Basic Medical Sciences, Zunyi Medical University, Zunyi, 563006, People's Republic of China.
A Gram-stain-negative, aerobic, short rod-shaped and motile bacterium, designated strain CSK11QG-6 was isolated from root of Aegiceras corniculatum taken from Shankou Mangrove Ecological National Nature Reserve in Guangxi Zhuang Autonomous Region, China. Global alignment based on 16S rRNA gene sequences indicated that strain CSK11QG-6 shared the highest identity of 96.5% with Consotaella salsifontis USBA 369.
View Article and Find Full Text PDFYing Yong Sheng Tai Xue Bao
January 2025
Hainan Dongzhaigang National Observation and Research Station of Mangrove Wetland Ecosystem, Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China.
The mangrove forest constitutes an important part of blue carbon sink. A summary of carbon accumulation rates of vegetation and soil in mangrove forests and their influencing factors is lacking at the national scale of China. Based on literature collection and data mining, we analyzed the carbon accumulation rate and influencing factors of mangrove vegetation, soil, and the entire ecosystem in China.
View Article and Find Full Text PDFMicrobiol Spectr
March 2025
Guangdong Provincial Engineering Research Center for Aquatic Animal Health Assessment, and Shenzhen Public Service Platform for Evaluation of Marine Economic Animal Seedings, Shenzhen Institute of Guangdong Ocean University, Shenzhen, Guangdong, China.
A gram-negative, nitrogen-fixing, rod-shaped, and motile bacterium, designated as ZJS20, was isolated from the sediments of in Zhanjiang, Guangdong, China. The growth of strain ZJS20 occurred at 10°C-45°C, pH 5.5-8.
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