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significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
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significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant rise » significant risk (Expand Search), significant risks (Expand Search), significant gap (Expand Search)
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1701
Kenya: Enrolment, time to IVA, mortality, admissions and readmissions at sites in Kenya.
Published 2025Subjects: -
1702
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1703
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1704
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1705
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1706
Cis-acting elements in the promoter of PtWRKYs.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
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1707
The Ka/Ks values of PtWRKY paralogous gene pairs.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
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1708
RNA-seq data of WRKY genes.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
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1709
Analysis of PtWRKY genes.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
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1710
The primer sequences for RT-qPCR.
Published 2025“…Based on RNA-Seq, we identified 83 <i>WRKYs</i> significantly respond to cadmium (Cd) stress. Subsequently, we conducted a study on <i>WRKY95</i>, which was significantly up-regulated in the roots, stems, and leaves under Cd stress. …”
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1711
Representative experimental samples.
Published 2025“…Reducing humidity can significantly mitigate strength loss caused by moisture absorption, while increasing temperature plays a supplementary role. …”
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1712
Mechanical testing apparatus and samples.
Published 2025“…Reducing humidity can significantly mitigate strength loss caused by moisture absorption, while increasing temperature plays a supplementary role. …”
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1713
Relationship between UCS, E, and water content.
Published 2025“…Reducing humidity can significantly mitigate strength loss caused by moisture absorption, while increasing temperature plays a supplementary role. …”
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1714
Hygroscopic experimental device.
Published 2025“…Reducing humidity can significantly mitigate strength loss caused by moisture absorption, while increasing temperature plays a supplementary role. …”
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1715
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1716
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1717
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1718
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1719
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1720