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In recent years, the detection of numerous negative correlations between silicon (Si) and carbon (C)-based compounds in plants has suggested trade-offs between different stress resistance and/or mechanical support strategies. However, nearly all studies have involved whole-leaf analysis, and it is unclear how the trade-off operates mechanistically, at the cellular level. Here we combined leaf trait measurements and microscopic analyses (electron microscopy with elemental X-ray mapping and X-ray microtomography) of 17 species from a high-Si family: Cyperaceae. Accumulation of Si was strongly negatively correlated with C-based compounds, particularly tannins. Our microscopical investigations showed that the accumulation of phenolics and deposition of silica were mutually exclusive in the outer epidermal cell walls. This trade-off was independent of that between the construction of tough, sclerenchyma-rich leaves and growth potential (the leaf economics spectrum). We also identified a strong negative correlation between Si and accumulation of epicuticular waxes. Previous whole leaf analyses were, in effect, hiding the locations of the trade-off between Si and C-based compounds in plants. The epidermal location of this trade-off and the specific involvement of tannins and waxes suggest the existence of different strategies to resist environmental stresses. Our study provides key insights into plant Si utilization and highlights the multidimensionality of plant stress resistance strategies.
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http://dx.doi.org/10.1111/pce.15307 | DOI Listing |
Sensors (Basel)
July 2025
Department of Electrical and Electronics Engineering, University of Cagliari, Piazza D'Armi, 09123 Cagliari, Italy.
This study presents a comprehensive evaluation and an equivalent circuit modeling of the skin-electrode impedance characteristics of three types of ultra-thin tattoo electrodes, all based on Parylene C nanofilms but with different active materials: Gold, Silver, and PEDOT:PSS. Their performance was compared to standard disposable Ag/AgCl electrodes. Impedance measurements were carried out on six human subjects under controlled conditions, assessing the frequency response in the range of 20 Hz to 1 kHz.
View Article and Find Full Text PDFFoods
July 2025
College of Food Science and Pharmacy, Xinjiang Agricultural University, Urumqi 830052, China.
Temperature is the most critical factor in fish preservation. Superchilled storage represents a novel technology that effectively retards quality deterioration in aquatic products. This study investigated the flavor variation patterns and deterioration mechanisms in 16 northern pike () samples during superchilled storage (-3 °C) based on analysis using gas chromatography-ion mobility spectrometry (GC-IMS) and ultra-performance liquid chromatography-quadrupole time-of-flight mass spectrometry (UPLC-Q-TOF/MS).
View Article and Find Full Text PDFAnal Bioanal Chem
September 2025
School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, 225009, People's Republic of China.
This study reports a viscosity-responsive fluorescent probe, BODIPY-C, designed to measure viscosity in a 3D live-cell hydrogel microenvironment using a fluorescence lifetime-based method. This method enables real-time monitoring of cell membrane viscosity changes through the fluorescent lifetime signals of the probe. Functionally, the BODIPY-C exhibits microviscosity sensitivity; the non-toxic probe enables long-term tracking with high sensitivity (R = 0.
View Article and Find Full Text PDFJ Sci Food Agric
July 2025
Cadi Ayyad University, Faculty of Science Semlalia, AgroBiotech Center, CNRST-Accredited Research Unit (URL05-CNRST), Laboratory of Excellence in Agrobiotechnology and Bioengineering, Abiotic Stress Physiology Team, Marrakech, Morocco.
Background: In arid Mediterranean regions frequent droughts threaten crops, demanding sustainable soil, water and plant management. This study aims to assess the influence of single and dual inoculation with arbuscular mycorrhizal fungi (AMF) and plant growth-promoting rhizobacteria (PGPR) on the growth, physiological performance and biochemical responses of lettuce cultivated in soils with or without compost amendment (C) under well-watered (WW; 100% crop evapotranspiration, ETc) and drought-stressed (DS; 50% ETc) regimes.
Results: Total fresh weight (TFW), total dry weight (TDW), and yield (Y) of lettuce were reduced under DS, while C alone, or in combination with AMF or PGPR, improved TFW by 84%, 71% and 66%, respectively, compared to the control plants under DS.
ACS Sens
July 2025
College of Food Science and Technology, Laboratory of Quality & Safety Risk Assessment for Aquatic Products on Storage and Preservation (Shanghai), Ministry of Agriculture and Shanghai Engineering Research Center of Aquatic Product Processing & Preservation, Shanghai Ocean University, Shanghai 20130
Gas sensors for rapid identification of formaldehyde (HCHO) exposure risks are of great significance, given the volatility, toxicity, and near-imperceptibility of HCHO. However, the precise design of highly reactive sensing materials remains a substantial challenge that limits the application of gas sensors. Here, PtRh-modified tin oxide (PtRh/SnO) hollow nanotubes with an open hollow nanostructure and bimetallic sensitization are proposed for regulating the reactivity to achieve ideal improvement in HCHO-sensing performance.
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