<p>Seasonal shifts in climatic conditions can significantly influence biotic and abiotic parameters in wetland ecosystems. This study evaluated the seasonal, spatial, and depth-wise variations in labile organic carbon (LOC) [permanganate oxidizable carbon (POXC), light fraction organic carbon (LFOC), and dissolved organic carbon (DOC)] and soil enzyme activities [β-glucosidase (BG), dehydrogenase (DHA), and amylase] in <i>Deepor Beel</i> sediments. Two-way ANOVA and t-tests revealed that seasonal changes had stronger influences than sediment depth on LOC and enzyme activities, with LOC peaking during the post-monsoon (POM) season. Amylase and DHA activities were higher during the pre-monsoon (PRM) period, while BG activity was higher during POM. During monsoon (MON), enzyme activity declined, likely due to heavy rainfall and reduced biomass cover. Bacterial screening revealed high mean CFU/ml for BG during POM (5.17), and for DHA and amylase during PRM (6.56 and 5.3, respectively). Some sites exhibited few or no enzyme-producing colonies, consistent with biochemical assays and suggesting a bacterial role in enzyme activity. Pearson’s correlation indicated positive associations of amylase and BG with POXC during PRM, and between amylase and POXC during POM, highlighting the potential of these enzymes as biological indicators of POXC content. Principal Component Analysis (PCA) further confirmed strong correlations between LOC and soil enzymes. As the first report on LOC and soil enzyme dynamics in <i>Deepor Beel</i>, this study provides a baseline for future research on the area’s carbon cycle dynamics and underscores the importance of these parameters in sustainable agriculture, given their role in soil fertility and soil health.</p>

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Unraveling labile carbon and soil enzyme dynamics across seasons and sediment layers in Deepor Beel: a degraded freshwater wetland in Assam, India

  • Anasuya Bharadwaj,
  • Pranami Bharadwaj,
  • Mitali Gupta,
  • Debajit Thakur,
  • Arundhuti Devi

摘要

Seasonal shifts in climatic conditions can significantly influence biotic and abiotic parameters in wetland ecosystems. This study evaluated the seasonal, spatial, and depth-wise variations in labile organic carbon (LOC) [permanganate oxidizable carbon (POXC), light fraction organic carbon (LFOC), and dissolved organic carbon (DOC)] and soil enzyme activities [β-glucosidase (BG), dehydrogenase (DHA), and amylase] in Deepor Beel sediments. Two-way ANOVA and t-tests revealed that seasonal changes had stronger influences than sediment depth on LOC and enzyme activities, with LOC peaking during the post-monsoon (POM) season. Amylase and DHA activities were higher during the pre-monsoon (PRM) period, while BG activity was higher during POM. During monsoon (MON), enzyme activity declined, likely due to heavy rainfall and reduced biomass cover. Bacterial screening revealed high mean CFU/ml for BG during POM (5.17), and for DHA and amylase during PRM (6.56 and 5.3, respectively). Some sites exhibited few or no enzyme-producing colonies, consistent with biochemical assays and suggesting a bacterial role in enzyme activity. Pearson’s correlation indicated positive associations of amylase and BG with POXC during PRM, and between amylase and POXC during POM, highlighting the potential of these enzymes as biological indicators of POXC content. Principal Component Analysis (PCA) further confirmed strong correlations between LOC and soil enzymes. As the first report on LOC and soil enzyme dynamics in Deepor Beel, this study provides a baseline for future research on the area’s carbon cycle dynamics and underscores the importance of these parameters in sustainable agriculture, given their role in soil fertility and soil health.