Optimal farm management with soil, manure, compost, water, crop and forage testing to boost yields and sustainable profitability.
Accurate data on soil, crops, and feed, to enable better sourcing, traceability, and sustainability decisions across the entire supply chain.
High-quality data on soil health, nutrient levels, and crop performance -to enable smarter product development, targeted application, and sustainable innovation.
Detailed insights into soil quality and nutrient balance, helping landscaping professionals and golf courses maintain healthy turf, optimise inputs, and support sustainable green space management.
For reliable soil, crop, and feed analyses, clear data interpretation, and practical advice to optimise yields, sustainability, and farm profitability.
Supporting of seed producers with science-driven solutions that enhance breeding, production, and quality assurance.
Verified data on soil health, crop performance, and nutrient flows - supporting finance, carbon, and sustainability platforms with traceable insights for ESG reporting, carbon credits, and green investments.
Insights into soil and forage quality, helping horse keepers ensure optimal pasture management, balanced nutrition, and a healthy environment for horses’ wellbeing and performance.
Support with precise analyses and clear insights to help optimise crop production, improve sustainability, and strengthen advisory services to members of the cooperatives.
Data-driven insights into soil, crop, and nutrient conditions, enabling agricultural machinery manufacturers to develop smarter, more precise equipment that enhances efficiency, supports sustainability, and boosts performance.
Reliable data on soil, crops, and nutrients - supporting policy development, sustainable land use, infrastructure planning, and scientific research with actionable, traceable insights.
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Total bacteria refers to the combined amount of all phospholipid fatty acids (PLFAs) that form the membranes of bacterial cells present in a soil or organic sample. PLFA analysis is a widely used method to estimate microbial biomass and community composition because these fatty acids are essential components of living cell membranes.
Bacteria play a crucial role in soil health and nutrient cycling. They contribute to several key processes, including:
The abundance of bacteria in soil is strongly influenced by the availability of easily degradable organic materials. These materials typically have a low carbon-to-nitrogen (C/N) ratio, such as slurry or fresh manure. When such substrates are present, bacterial populations tend to increase rapidly due to the readily available energy source.
Bacteria are fundamental to maintaining soil fertility and plant health. Their activities ensure continuous nutrient cycling, improve soil structure, and help plants resist diseases. A balanced bacterial community is therefore essential for sustainable agricultural practices.