Showing 102,261 - 102,280 results of 113,108 for search '(( 5 ((((we decrease) OR (a decrease))) OR (mean decrease)) ) OR ( 12 m decrease ))', query time: 2.06s Refine Results
  1. 102261

    Table 3_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.xlsx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  2. 102262

    Formation of Zn(II) and Cd(II) Coordination Polymers Assembled by Triazine-Based Polycarboxylate and <i>in-Situ</i>-Generated Pyridine-4-thiolate or Dipyridylsulfide Ligands: Obser... by Qilong Zhu (2048197)

    Published 2011
    “…Three novel coordination polymers, [Cd<sub>5</sub>(HTTHA)<sub>2</sub>(Hpt)<sub>4</sub>(H<sub>2</sub>O)]·4H<sub>2</sub>O (<b>1</b>; H<sub>6</sub>TTHA = 1,3,5-triazine-2,4,6-triamine hexaacetic acid, Hpt = pyridinium-4-thiolate), {[Cd<sub>3</sub>(TTHA)(dps)(H<sub>2</sub>O)<sub>3</sub>]<sub>2</sub>}·H<sub>2</sub>O (<b>2</b>), and [Zn<sub>3</sub>(TTHA)(dps)(H<sub>2</sub>O)]·5H<sub>2</sub>O (<b>3</b>; dps =4,4′-dipyridylsulfide), have been synthesized by the flexible hexapodal acid H<sub>6</sub>TTHA and <i>in-situ</i>-generated Hpt and dps ligands from a 4,4′-dipyridyldisulfide (dpds) precursor through cleavage of both S–S and S–C(sp<sup>2</sup>) bonds and temperature-dependent chemical rearrangement under hydrothermal conditions. …”
  3. 102263

    Table 2_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.xlsx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  4. 102264

    Data Sheet 2_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.docx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  5. 102265

    Table 4_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.xlsx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  6. 102266

    Formation of Zn(II) and Cd(II) Coordination Polymers Assembled by Triazine-Based Polycarboxylate and <i>in-Situ</i>-Generated Pyridine-4-thiolate or Dipyridylsulfide Ligands: Obser... by Qilong Zhu (2048197)

    Published 2011
    “…Three novel coordination polymers, [Cd<sub>5</sub>(HTTHA)<sub>2</sub>(Hpt)<sub>4</sub>(H<sub>2</sub>O)]·4H<sub>2</sub>O (<b>1</b>; H<sub>6</sub>TTHA = 1,3,5-triazine-2,4,6-triamine hexaacetic acid, Hpt = pyridinium-4-thiolate), {[Cd<sub>3</sub>(TTHA)(dps)(H<sub>2</sub>O)<sub>3</sub>]<sub>2</sub>}·H<sub>2</sub>O (<b>2</b>), and [Zn<sub>3</sub>(TTHA)(dps)(H<sub>2</sub>O)]·5H<sub>2</sub>O (<b>3</b>; dps =4,4′-dipyridylsulfide), have been synthesized by the flexible hexapodal acid H<sub>6</sub>TTHA and <i>in-situ</i>-generated Hpt and dps ligands from a 4,4′-dipyridyldisulfide (dpds) precursor through cleavage of both S–S and S–C(sp<sup>2</sup>) bonds and temperature-dependent chemical rearrangement under hydrothermal conditions. …”
  7. 102267

    Data Sheet 4_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.docx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  8. 102268

    Table_1_Microbial community diversity of an integrated constructed wetland used for treatment of sewage.XLSX by Nidhi Seth (18173680)

    Published 2024
    “…Based on the abundance values of taxa, the taxa are grouped under four frequency distribution classes—abundant (>20), common (10–19), rare (5–9), and very rare (1–4). The unique structure of microbial communities of integrated CWS is that the number of abundant taxa decreases in descending order of taxonomic hierarchy, while the number of rare and very rare taxa increases. …”
  9. 102269

    Data_Sheet_1_Active aroma compounds assessment of processed and non-processed micro- and macroalgae by solid-phase microextraction and gas chromatography/mass spectrometry targetin... by Catarina Moreira (6167042)

    Published 2022
    “…The PCA analysis of GC-MS data showed odor similarities between the studied samples, which were divided into five main groups: (1) TC(c) and TC(w); (2) TC(r) and NO(c); (3) NO(r), NO(w), and SL(w); (4) SL(c), UR(r), UR(c), and UR(w); and (5) SL(r). …”
  10. 102270

    Table 14_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.xlsx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  11. 102271

    Table 9_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.docx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  12. 102272

    Formation of Zn(II) and Cd(II) Coordination Polymers Assembled by Triazine-Based Polycarboxylate and <i>in-Situ</i>-Generated Pyridine-4-thiolate or Dipyridylsulfide Ligands: Obser... by Qilong Zhu (2048197)

    Published 2011
    “…Three novel coordination polymers, [Cd<sub>5</sub>(HTTHA)<sub>2</sub>(Hpt)<sub>4</sub>(H<sub>2</sub>O)]·4H<sub>2</sub>O (<b>1</b>; H<sub>6</sub>TTHA = 1,3,5-triazine-2,4,6-triamine hexaacetic acid, Hpt = pyridinium-4-thiolate), {[Cd<sub>3</sub>(TTHA)(dps)(H<sub>2</sub>O)<sub>3</sub>]<sub>2</sub>}·H<sub>2</sub>O (<b>2</b>), and [Zn<sub>3</sub>(TTHA)(dps)(H<sub>2</sub>O)]·5H<sub>2</sub>O (<b>3</b>; dps =4,4′-dipyridylsulfide), have been synthesized by the flexible hexapodal acid H<sub>6</sub>TTHA and <i>in-situ</i>-generated Hpt and dps ligands from a 4,4′-dipyridyldisulfide (dpds) precursor through cleavage of both S–S and S–C(sp<sup>2</sup>) bonds and temperature-dependent chemical rearrangement under hydrothermal conditions. …”
  13. 102273

    Table_4_Microbial community diversity of an integrated constructed wetland used for treatment of sewage.XLSX by Nidhi Seth (18173680)

    Published 2024
    “…Based on the abundance values of taxa, the taxa are grouped under four frequency distribution classes—abundant (>20), common (10–19), rare (5–9), and very rare (1–4). The unique structure of microbial communities of integrated CWS is that the number of abundant taxa decreases in descending order of taxonomic hierarchy, while the number of rare and very rare taxa increases. …”
  14. 102274

    Western blotting results of Elk1 and Elk1-3R effects on both endogenous katanin-p60 and spastin proteins. by Dolunay Kelle (6388055)

    Published 2019
    “…<p>(A) Analysis of SH-SY5Y transfection efficacy with His-tag including pCMV6_Elk1 and pCMV6_Elk1-3R vectors. …”
  15. 102275

    Oral administration of hydroxylated-graphene quantum dots induces intestinal injury accompanying the loss of intestinal stem cells and proliferative progenitor cells by Lan Yu (346201)

    Published 2019
    “…Higher doses of the OH-GQDs caused significant intestinal injuries, such as enhanced intestinal permeability, shortened villi and crypt loss. The number of Lgr5<sup>+</sup> intestinal stem cells also decreased dramatically upon OH-GQDs exposure, which also inhibited the Ki67<sup>+</sup> proliferative progenitor cells. …”
  16. 102276

    Table 7_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.xlsx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  17. 102277

    Table 1_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.xlsx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  18. 102278

    Table 8_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.xlsx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”
  19. 102279

    Overview of VDR-mediated regulation of cytokine transcription, production and secretion in immune cells. by Emily K. Calton (821151)

    Published 2015
    “…<p>Interaction of VD3 and VDR leads to anti-inflammatory effects through negative regulation of NFκB and STAT1/5-mediated signalling. This results in decreased transcription of TNF-α, IL-6, MCP1 and IL-12β. …”
  20. 102280

    Table 6_Rapid reshaping of the soil microbiome and metabolome during short-term flooding and draining in rice.xlsx by Yanyao Lu (22163632)

    Published 2025
    “…Subsequently, correlation analysis was performed with physiological and biochemical data to logically explore the changes in soil microorganisms and metabolites during the drainage process (Day 1 after drainage, R1; Day 2, R2; Day 3, R3; Day 4, R4; and Day 5, R5). The results revealed that S-PPO, S-POD, and S-CAT decreased with prolonged drainage time, whereas the soil redox potential (Eh-mV) and POD increased. …”