It is increasingly becoming clear that climate change has an impact on crops. The climate variability effects on microbes and biological health assumes greater importance.
In this context the study by a collaborative team of researchers from Nagaland University and other research institutes across the country on how seasonal variations in climate affected soil microbial communities and enzyme activities across five representative tea estates in Jorhat, Assam is significant.
The study provides new insights into how climate variability, soil health, and microbial activities are interconnected, which has implications for sustainable and climate-resilient tea cultivation in North-East India.
The research study helps scientists in :
* Understand seasonal variations in soil bacterial and fungal populations
* Provide scientific evidence to support sustainable tea cultivation in the face of changing climatic scenarios.
* Develop strategies for climate-resilient tea production
Tea productivity and quality have become increasingly prone to climate variability. Soil microorganisms and enzymes play a crucial role in balancing soil fertility and nutrient cycling. However, there is limited information on how climate change is affecting the biological processes of tea plantations in Northeast India.
In order to address this gap, the researchers conducted a comprehensive multi-year assessment of seasonal bacteria in soil and fungal communities and other associated enzymes. The study offers one of the first comprehensive assessments (2016-19) of seasonal microbial dynamics across several tea estates in Assam.
The study has integrated microbiological, biochemical, climatic and advanced statistical analyses within a single research framework. The researchers used probability distribution fitting, correlation analysis, hierarchical cluster analysis and principal component analysis (PCA) to understand ecological variability and characterise soil biological responses under different climatic conditions.
The findings were published in the Journal “environments”.
Researchers have identified climatic conditions that support microbial activity and demonstrated strong positive relationships between microbial abundance and soil enzyme activities. It is also found that more than 80% of variability in the biological data was explained by the first three principal components, demonstrating the robustness of the statistical analyses.
Hierarchical cluster analysis successfully grouped tea estates based on microbial and enzymatic characteristics. The study establishes soil microbial communities and enzyme activities as sensitive indicators of environmental change and sustainable tea production.
The study will support climate-resilient tea production systems by improving soil health monitoring using biological indicators. The research also contributes to tea growers optimizing nutrient management and sustainable cultivation practices. The research may also provide scientific evidence for policymakers and agricultural extension agencies working to promote sustainable agriculture and strengthen the long-term resilience of India's tea sector.
According to Prof Tanmay Karak, Department of Soil Science, School of Agricultural Sciences, Nagaland University, “We attempted to determine seasonal thresholds that favour beneficial microbial communities and also understand how climatic variables regulate soil biological processes. The study establishes soil microbial communities and enzyme activities as sensitive indicators of environmental change and sustainable tea production”.