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we decrease » _ decrease (Expand Search), nn decrease (Expand Search), teer decrease (Expand Search)
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17701
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17702
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17703
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17704
Concentration-response analysis of native <i>Eg</i>KU-1 on ASIC currents from DRG neurons.
Published 2017“…The black line shows the best fit to the dose-response equation, from which the IC<sub>50</sub> was calculated (7.8 ± 0.7 nM). The data correspond to the mean ± standard error (n ≥ 6 in all cases, except for 1 nM in which n = 4). …”
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17705
Highly Flexible and Conductive Cellulose-Mediated PEDOT:PSS/MWCNT Composite Films for Supercapacitor Electrodes
Published 2017“…Another kind of MCPP-based solid-state supercapacitor without the Ni foam showed excellent flexibility and a high volumetric capacitance of 50.4 F cm<sup>–3</sup> at 0.05 A cm<sup>–3</sup>. …”
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17706
Serum from HFD-induced obese rats and an artificial FA mixture suppress osteoblast differentiation.
Published 2013“…Luciferase activity in C2C12 cells transfected with a PPRE-luc reporter construct and treated with 2% serum from LFD, MFD or HFD-fed rats, 50 ng/ml Wnt3a, 400 µM FAs and their combination for 24 h. …”
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17707
Data_Sheet_1_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.DOCX...
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17708
Table_13_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17709
Table_12_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xls
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17710
Table_6_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17711
Table_3_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17712
Table_5_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17713
Table_2_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17714
Table_9_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17715
Table_11_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17716
Table_7_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xls
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17717
Table_4_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17718
Table_1_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.docx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17719
Table_10_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xls
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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17720
Table_8_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”