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significant decrease » significantly increased (Expand Search)
significant main » significant gap (Expand Search), significant amount (Expand Search), significant cause (Expand Search)
main decrease » gain decreased (Expand Search), mean decrease (Expand Search), point decrease (Expand Search)
significant decrease » significantly increased (Expand Search)
significant main » significant gap (Expand Search), significant amount (Expand Search), significant cause (Expand Search)
main decrease » gain decreased (Expand Search), mean decrease (Expand Search), point decrease (Expand Search)
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2481
Cis-acting elements in the promoter of PtWRKYs.
Published 2025“…Under cadmium toxicity, <i><i>the plant</i></i> height of <i><i>PsnWRKY95</i></i>-overexpressing plants increased by 16%−26% compared with the wild type (WT), the root length increased by 12%−27% compared with WT, the peroxidase (POD) activity was 28%−51% higher than that of WT, the chlorophyll content increased by 15%−29% compared with WT, the malondialdehyde (MDA) content decreased by 13%−32% compared with WT, and the electrical conductivity decreased by 9%−20% compared with WT, with the expression levels of <i>POD</i> and <i>HMA1</i> in the overexpressing plants also being higher than those in WT. …”
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2482
The Ka/Ks values of PtWRKY paralogous gene pairs.
Published 2025“…Under cadmium toxicity, <i><i>the plant</i></i> height of <i><i>PsnWRKY95</i></i>-overexpressing plants increased by 16%−26% compared with the wild type (WT), the root length increased by 12%−27% compared with WT, the peroxidase (POD) activity was 28%−51% higher than that of WT, the chlorophyll content increased by 15%−29% compared with WT, the malondialdehyde (MDA) content decreased by 13%−32% compared with WT, and the electrical conductivity decreased by 9%−20% compared with WT, with the expression levels of <i>POD</i> and <i>HMA1</i> in the overexpressing plants also being higher than those in WT. …”
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2483
RNA-seq data of WRKY genes.
Published 2025“…Under cadmium toxicity, <i><i>the plant</i></i> height of <i><i>PsnWRKY95</i></i>-overexpressing plants increased by 16%−26% compared with the wild type (WT), the root length increased by 12%−27% compared with WT, the peroxidase (POD) activity was 28%−51% higher than that of WT, the chlorophyll content increased by 15%−29% compared with WT, the malondialdehyde (MDA) content decreased by 13%−32% compared with WT, and the electrical conductivity decreased by 9%−20% compared with WT, with the expression levels of <i>POD</i> and <i>HMA1</i> in the overexpressing plants also being higher than those in WT. …”
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2484
Analysis of PtWRKY genes.
Published 2025“…Under cadmium toxicity, <i><i>the plant</i></i> height of <i><i>PsnWRKY95</i></i>-overexpressing plants increased by 16%−26% compared with the wild type (WT), the root length increased by 12%−27% compared with WT, the peroxidase (POD) activity was 28%−51% higher than that of WT, the chlorophyll content increased by 15%−29% compared with WT, the malondialdehyde (MDA) content decreased by 13%−32% compared with WT, and the electrical conductivity decreased by 9%−20% compared with WT, with the expression levels of <i>POD</i> and <i>HMA1</i> in the overexpressing plants also being higher than those in WT. …”
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2485
The primer sequences for RT-qPCR.
Published 2025“…Under cadmium toxicity, <i><i>the plant</i></i> height of <i><i>PsnWRKY95</i></i>-overexpressing plants increased by 16%−26% compared with the wild type (WT), the root length increased by 12%−27% compared with WT, the peroxidase (POD) activity was 28%−51% higher than that of WT, the chlorophyll content increased by 15%−29% compared with WT, the malondialdehyde (MDA) content decreased by 13%−32% compared with WT, and the electrical conductivity decreased by 9%−20% compared with WT, with the expression levels of <i>POD</i> and <i>HMA1</i> in the overexpressing plants also being higher than those in WT. …”
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2486
<i>Kif15</i> deficiency affects the expression of Gephyrin and GABRB1 in PFC and hippocampus.
Published 2025Subjects: -
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FBLN1 regulates ferroptosis by reducing free ferrous iron by inhibiting TGF-β/Smad pathway.
Published 2024Subjects: -
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