Showing 2,281 - 2,300 results of 18,406 for search 'significantly ((less decrease) OR (((((mean decrease) OR (nn decrease))) OR (a decrease))))', query time: 0.70s Refine Results
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    Supplementary file 1_Water stress reduces cellulose deposition in the cell wall and increases wax content, resulting in decreased fiber quality.docx by Yongchao Han (10797698)

    Published 2025
    “…Compared with WW irrigation, the rate decreased by 23.62% and 30.82% respectively. WD treatment significantly inhibited the expression of the genes encoding sucrose synthase GhSusy and cellulose synthase GhCesA in cotton fibers. …”
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    Supplementary file 2_Water stress reduces cellulose deposition in the cell wall and increases wax content, resulting in decreased fiber quality.xlsx by Yongchao Han (10797698)

    Published 2025
    “…Compared with WW irrigation, the rate decreased by 23.62% and 30.82% respectively. WD treatment significantly inhibited the expression of the genes encoding sucrose synthase GhSusy and cellulose synthase GhCesA in cotton fibers. …”
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    Data Sheet 1_Age-related white matter alterations in children with neurofibromatosis type 1: a diffusion MRI tractography study.pdf by Lisa Bruckert (6680384)

    Published 2025
    “…Compared to controls, children with NF1 had significantly increased MD and significantly decreased FA in multiple white matter pathways including the anterior thalamic radiation, cingulate, uncinate fasciculus, inferior fronto-occipital fasciculus, arcuate fasciculus, and corticospinal tract. …”
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    6:2 Chlorinated Polyfluoroalkyl Ether Sulfonate (F-53B) Induces Aging and Parkinson’s Disease-like Disorders in <i>C. elegans</i> at Low Concentrations by Hui Li (32376)

    Published 2025
    “…After exposure to F-53B at 2, 10, and 50 ng/L, C. elegans showed an aging phenomenon as lipofuscin was significantly increased by 48.7–57.5% and locomotion, such as center point speed, was significantly decreased in all exposure groups. …”
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    6:2 Chlorinated Polyfluoroalkyl Ether Sulfonate (F-53B) Induces Aging and Parkinson’s Disease-like Disorders in <i>C. elegans</i> at Low Concentrations by Hui Li (32376)

    Published 2025
    “…After exposure to F-53B at 2, 10, and 50 ng/L, C. elegans showed an aging phenomenon as lipofuscin was significantly increased by 48.7–57.5% and locomotion, such as center point speed, was significantly decreased in all exposure groups. …”
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    6:2 Chlorinated Polyfluoroalkyl Ether Sulfonate (F-53B) Induces Aging and Parkinson’s Disease-like Disorders in <i>C. elegans</i> at Low Concentrations by Hui Li (32376)

    Published 2025
    “…After exposure to F-53B at 2, 10, and 50 ng/L, C. elegans showed an aging phenomenon as lipofuscin was significantly increased by 48.7–57.5% and locomotion, such as center point speed, was significantly decreased in all exposure groups. …”
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    6:2 Chlorinated Polyfluoroalkyl Ether Sulfonate (F-53B) Induces Aging and Parkinson’s Disease-like Disorders in <i>C. elegans</i> at Low Concentrations by Hui Li (32376)

    Published 2025
    “…After exposure to F-53B at 2, 10, and 50 ng/L, C. elegans showed an aging phenomenon as lipofuscin was significantly increased by 48.7–57.5% and locomotion, such as center point speed, was significantly decreased in all exposure groups. …”
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    Supplementary file 1_Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting density.docx by Jianhong Ren (2186293)

    Published 2025
    “…Lodging rate of sole XY under normal and high density was 4.3% and 22.0% in 2021, but lodging was absent for ZD and intercropped XY, which demonstrated that the lodging resistance of intercropped XY was significantly enhanced. This study presents a strategy to enhance maize lodging resistance without yield penalty or requiring additional inputs.…”
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    <b>Manure improves temperature sensitivity of soil organic carbon by increasing soil alphaproteobacteria, phenols, and pH and decreasing soil esters</b> by Andong Cai (5237024)

    Published 2024
    “…<p dir="ltr"><a href="" target="_blank">The temperature sensitivity (Q<sub>10</sub>) of soil organic carbon (SOC) is a critical parameter in SOC response models concerning climate warming, which governs both the direction and magnitude of soil carbon-climate feedback. …”