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Research

Research

A multi-million pound programme of strategic research delivered over five years providing science and evidence to support policymakers and its partners. Informed by strong partnerships and the needs of a broad range of stakeholders. Science at the heart of society contributing to the health, wealth and wellbeing of Scotland and beyond.

Plant and Animal Health

Protecting Plant and Animal Health to underpin our globally competitive economy and ambition to be a Good Food Nation

Sustainable Food Supply System

Leading the way to a Sustainable Food System and Supply contributing to the economy, livelihoods and the health of Scotland

Human Impacts on the Environment

Supporting the large-scale and coordinated transition to net zero and reduction of Human Impacts on the Environment

Natural Resources

Protecting, valuing and optimising the multiple benefits we recieve from our vital Natural Resources

Rural Futures

Committed to empowered, inclusive and resilient Rural Futures for Scotland’s rural and island communities

Ongoing research (2022-2027)

Displaying 21 - 29 of 29
Genetic Diversity of Crops

The major aim is to develop suitably characterised germplasm resources leading to the generation of crops better equipped and adapted to future climatic conditions, taking into account key areas of stakeholder concern that impact on profitability and the sustainability of Scottish crop production. The specific goals are based on identifying relevant genetic diversity in germplasm and developing new phenotyping methods.

  • Plant Disease
  • Crop Improvement
  • 2016-2022
Getting further value from the GHG research platform project

The aim of this work is to develop novel approaches to improve the understating of environmental and management controls of nitrous oxide emissions from the soils, and to improve the estimation of methane emissions from grazing cattle and sheep. The work also aims to provide policy and practical guidelines to greenhouse gas mitigation in Scottish farming, through a wide process of engagement with key stakeholders.

The research builds on previous work within the RESAS Strategic Programme and on collaborations with UK and International partners.

  • Agricultural Greenhouse Gases
  • 2016-2022
GHG reductions from livestock

Animal-based strategies to reduce greenhouse gas emissions from ruminant livestock: The aim of this work is to address major knowledge gaps in greenhouse gas (GHG) emissions from livestock by investigating the effects of different grassland management systems, the rumen microbiome (the microbes that normally inhabit the gut), endemic diseases and host genetics on methane production and emissions intensity.

  • Large Scale Models
  • 2016-2022
Improving existing green house gas reduction measures

The aim of this research is to address some key farm-level and policy-level issues to help develop policies in Scotland and more widely in the UK and in Europe, as part of a wider national and international research programme. The research includes a combination of environmental economic modelling, survey work and development of monitoring and evaluation tools and approaches. Specifically, focus is placed on providing improved understanding and estimates of agricultural greenhouse gas mitigation at national and farm level and developing tools for policy makers, farmers and researchers.

  • Agricultural Greenhouse Gases
  • 2016-2022
In-field detection

The overall aim is to improve detection of economically important pests/pathogens/diseases affecting key Scottish crops. This will improve decision making for growers and control recommendations and inform policy and statutory recommendations, leading to improved disease control. Much of the research capitalises on outputs from the previous RESAS programme and externally funded research. The initial focus is primarily on developing/improving the necessary assays, tools and techniques.

  • Plant Disease
  • 2016-2022
Integrated pest management

The aim of this research is to understand the importance of factors that modify reliance on pesticides and integrate these into Integrated Pest Management (IPM) toolboxes tailored to key Scottish horticultural and arable crops. Novel control options, which reduce reliance on pesticides, are required because of reduced availability of plant protection products. IPM tools are being developed and evaluated in optimised combinations to suppress key pest and disease threats for each cropping system. This work integrates contributions from other areas of research e.g.

  • Plant Disease
  • 2016-2022
Novel greenhouse gas reduction measures

The aim of this work is to develop novel approaches to greenhouse gas mitigation in the crop and livestock sectors though improved understanding of underlying processes, and to assess the mitigation potential of new measures using field experiments and modelling in order to extrapolate the findings.  The work also aims to provide policy and practical guidelines to greenhouse gas mitigation in Scottish farming, through a wide process of engagement with key stakeholders.

  • Agricultural Greenhouse Gases
  • 2016-2022
Plant-Pest Epidemiology

Improved risk management and control of plant diseases: to be achieved through an understanding of key epidemiological parameters and optimal ways of manipulating them. These parameters underpin the development of epidemiological models that can be used to predict the effect of management strategies, including crop protection and host resistance. This work aims to define the parameters for problematic and economically important diseases of crops of particular importance to Scotland in order to deliver practical disease control solutions.

  • Plant Disease
  • Crop Improvement
  • 2016-2022
Plant-Pest Interactions

A major constraint on achieving food security is crop loss due to pests and diseases. The main aim of this work is to develop a better understanding of the plant-pest interactions that threaten arable crop production in Scotland and elsewhere. Understanding the mechanisms that pathogens use to invade and colonise host plants, in parallel with the processes by which plants resist infection, will provide key insights to drive long term plant protection strategies.

  • Plant Disease
  • Crop Improvement
  • 2016-2022

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