Every year, thousands of researchers, students, and policymakers ask the same question: where can I find reliable agricultural research without paying steep journal fees? For half a century, one global system has answered that question by gathering the world’s farming knowledge into a single, freely searchable place. That system is AGRIS, run by the Food and Agriculture Organization of the United Nations. It quietly connects a scientist studying rice yields in Cuttack with a paper written in Spanish, Mandarin, or Hindi, removing the language and access barriers that once kept research locked away. This post explains how AGRIS works, the tools that make it powerful, and why it matters for anyone studying or working in agriculture.

Table of Contents

What is AGRIS?

AGRIS stands for the International System for Agricultural Science and Technology. It is a global public-domain database of structured bibliographic records covering agricultural science and technology. By early 2025, AGRIS held more than 15 million records in over 118 languages, making it one of the largest open repositories of farming knowledge anywhere.

The system began in 1974 under the FAO and became fully operational in 1975 with its first published index, called AGRINDEX. Since 1975, the FAO has maintained AGRIS to serve users in both developed and developing countries, helping them reach available knowledge in agriculture, science, and technology. In 2025, marking its 50th anniversary, the platform was renamed “FAO AGRIS” to underline its place within the organisation’s wider knowledge ecosystem.

A cooperative, participatory system

AGRIS is not a single library that buys and stores documents. It is a cooperative network. Member countries contribute references to research produced within their own borders, regardless of the language, and in return gain access to everything other members share. National AGRIS input centres in participating countries collect, format, and submit these records to the central system. Organisations that contribute to FAO AGRIS join an international network that increases the global visibility of their research, boosts the use of their institutional outputs, and improves discoverability on the web.

This collaborative model is one of the reasons AGRIS has grown so large. The platform is now trusted by more than 52 million users and offers free access to over 16 million records, with contributions from more than 2,000 data providers across 168 countries.

What kind of content does it index?

One feature sets AGRIS apart from many academic databases: it treats grey literature with the same importance as peer-reviewed articles. Grey literature means material that is not formally published through commercial channels, such as theses, dissertations, conference papers, government reports, working papers, and technical reports. The database indexes journal articles, monographs, books, book chapters, conference proceedings, grey literature, and datasets across the FAO’s thematic areas.

The subject coverage is broad. It spans forestry, animal husbandry, aquatic sciences and fisheries, human nutrition, plant cultivation, and agricultural extension. For a student or researcher, this means a single search can surface a peer-reviewed study alongside a hard-to-find national report that might never appear in a commercial index.

WEBAGRIS and digital accessibility

In its early decades, AGRIS records were submitted and distributed in print and on physical media. As the internet matured, the system moved online, and a key tool in that shift was WEBAGRIS, a web-based application that lets input centres create, manage, and submit bibliographic records over the internet.

WEBAGRIS allowed national centres to prepare records in standard formats and transmit them directly to the FAO, replacing slower, paper-heavy workflows. In India, for example, the Central Rice Research Institute in Cuttack documented using WebAGRIS version 2.0 to process and submit scanned journal articles to the ICAR for inclusion in the FAO’s AGRIS database. This shows how the tool worked on the ground: a local library digitised national research and fed it into the global pool.

The move to AGRIS 2.0

The platform has continued to modernise. In June 2023, the FAO launched AGRIS 2.0, which introduced a more user-friendly search interface designed to resemble popular search engines and is available in all six official FAO languages. Users can run a quick search without applying filters, while advanced filters remain available for more precise queries. This matters because many users are students or extension workers who are not trained librarians; a simple, familiar search box lowers the barrier to entry.

Why multilingual access is central

Most agricultural research worldwide is not written in English. A study on drought-resistant crops might be published in Portuguese, a fisheries report in Thai, or a soil survey in Arabic. If a database only indexed English material, it would ignore the majority of global research. AGRIS treats multilingualism as a core principle, indexing records in more than a hundred languages so that knowledge is not lost simply because of the language it was written in.

AGROVOC and metadata standards

A database with millions of records in dozens of languages faces an obvious problem: how do you make sure a search for one concept finds every relevant document, even those written in other languages or using different words for the same idea? The answer is a controlled vocabulary called AGROVOC.

What AGROVOC does

AGROVOC is a multilingual, structured, controlled vocabulary that covers the terminology of agriculture, forestry, fisheries, food, and related domains such as the environment. The FAO first published AGROVOC in the early 1980s in English, Spanish, and French to serve as a controlled vocabulary for indexing publications, especially for AGRIS. A controlled vocabulary works by assigning one agreed term to each concept, so that indexers and searchers use the same standardised label rather than a tangle of synonyms.

The scale of AGROVOC today is striking. By March 2024 it consisted of over 42,000 concepts and up to one million terms in more than 42 languages, maintained collaboratively by a community of experts coordinated by the FAO. Importantly for the Indian context, Hindi is among the languages it covers, and other languages such as Telugu have been part of its development.

From thesaurus to linked open data

AGROVOC has evolved well beyond a simple word list. It has moved from print catalogues to semantic web technologies and is now published as linked open data, building bridges between separate datasets. Each concept, such as maize, aquaculture, or value chains, is given a unique identifier and connected to its equivalents in other languages. This lets computers, not just people, understand that the English “maize” and another language’s term refer to the same thing.

This structure delivers a practical benefit known as interoperability. As a controlled vocabulary, AGROVOC lets data be classified homogeneously, which facilitates interoperability and reuse, and its greatest impact is in improving the access and visibility of data across domains and languages. In plain terms, when a record is tagged with an AGROVOC concept, a researcher searching in Hindi can still discover a paper indexed in French, because both point to the same underlying concept.

Structured metadata for the web

Alongside its vocabulary, AGRIS relies on agreed metadata standards. Metadata is simply data about data: the title, author, publication year, subject terms, and other details that describe a document. The AGRIS Application Profile was developed to define a set of high-quality metadata for scientific and technical papers, aimed at improving the accessibility of materials on the web. Consistent metadata is what allows millions of records from thousands of providers to be searched together as one coherent system rather than as scattered, incompatible files.

AGORA for developing nations

AGRIS tells you that a piece of research exists and where to find it, but the full text of many journal articles sits behind expensive paywalls. For institutions in low-income countries, those subscription costs can be impossible to meet. This is the gap that AGORA was designed to close.

What AGORA provides

AGORA stands for Access to Global Online Research in Agriculture. It was launched in 2003 by the FAO in partnership with Cornell University and up to 70 of the world’s leading science publishers, to provide free or low-cost online access to peer-reviewed publications in agriculture and related biological, environmental, and social sciences to more than 100 lower-income countries. Where AGRIS is largely a finding tool, AGORA delivers the actual full-text content.

The collection is substantial. AGORA provides access to a digital library of up to 15,500 key journals and up to 48,000 books across more than 115 countries, in fields including food, agriculture, fisheries, nutrition, veterinary science, and environmental science. The goal is to lift the quality and effectiveness of agricultural research, education, and training in low-income countries, and in doing so to strengthen food security.

How access works

Access is organised around eligible institutions rather than individuals. Access is password-controlled, and once an institution completes registration with the FAO, its library receives a password that students, faculty, and staff can all use. Publishers offer free access to institutions in the lowest-income group of countries and low-cost access to a second group, an arrangement that amounts to a very steep discount on normal subscription prices. Even users at non-eligible institutions can freely read the abstracts of listed journals.

AGORA does not operate alone. It is one of five programmes that make up Research4Life, alongside Hinari, OARE, GOALI, and ARDI, which together cover health, environment, law, development, and innovation. The shared aim of Research4Life is to narrow the knowledge gap between high-income and lower-income countries by making critical scientific research affordable.

How these pieces fit together for Indian researchers

For a postgraduate student or a scientist at an agricultural university, these tools form a connected workflow. The Indian Council of Agricultural Research, the country’s apex body for coordinating agricultural research and education, acts as a national channel into this system. The ICAR is listed among the data providers feeding into FAO AGRIS, meaning research produced across Indian institutes can gain global visibility through the platform.

In practice, a researcher might begin by searching AGRIS to identify relevant studies, rely on AGROVOC behind the scenes to surface matching records across languages, and then use AGORA to read the full text of articles that would otherwise be locked behind paywalls. National centres, meanwhile, use tools like WEBAGRIS to push local research outward into the shared global database. Each component handles one part of the larger task of making agricultural knowledge findable, readable, and reusable.

What do you think? If your institution had to choose between contributing its own research to a global system like AGRIS and simply consuming research from it, which would create more long-term value for Indian agriculture? And as controlled vocabularies like AGROVOC increasingly power machine-driven search, how might that change the way you discover research in the next few years?

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References
  1. https://en.wikipedia.org/wiki/AGRIS
  2. https://www.fao.org/agris/webinars/agris-agricultural-information-data-providers
  3. https://www.fao.org/agris/fao-agris-and-network
  4. https://www.fao.org/agris/news/international-system-agricultural-science-and-technology-agris-now-%E2%80%9Cfao-agris%E2%80%9D-reinforcing-its
  5. https://agris.fao.org/
  6. https://crri.icar.gov.in/lib.php
  7. https://en.wikipedia.org/wiki/AGROVOC
  8. https://interoperable-europe.ec.europa.eu/collection/eu-semantic-interoperability-catalogue/solution/agrovoc-thesaurus
  9. https://agroportal.lirmm.fr/ontologies/AGROVOC
  10. https://www.fao.org/agris/publications/agris-application-profile-international-information-system-agricultural-sciences-and
  11. https://en.wikipedia.org/wiki/AGORA
  12. https://agora.research4life.org/
  13. https://aims.fao.org/news/register-agora-access-global-online-research-agriculture-and-start-using-its-content
  14. https://aims.fao.org/agora_r4l
  15. https://www.fao.org/agris/data-provider/indian-council-agricultural-research

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Library, Information and Society

1 Libraries, Information and Knowledge-based Society

  1. Modern Society: Some Characteristics
  2. Role of Libraries in Society
  3. Information and its Impact on Society
  4. Information Society
  5. Knowledge Society

2 Types of Libraries

  1. National Libraries
  2. Academic Libraries
  3. Public Libraries
  4. Special Libraries
  5. Digital Libraries
  6. Virtual Libraries
  7. Hybrid Libraries

3 Information Institutions

  1. Evolution of Information Institutions
  2. Types of Information Institutions
  3. Indian Situation
  4. Role of Information Institutions in Knowledge-Based Economy (KBE)

4 Laws of Library Science

  1. The Five Laws of Library Science
  2. First Law: Books are for Use
  3. Second Law: Every Reader His/Her Book
  4. Third Law: Every Book Its Reader
  5. Fourth Law: Save the Time of the Reader
  6. Fifth Law: Library is a Growing Organism
  7. New Insights and Wider Interpretation of Five Laws

5 Library Legislation and Model Public Library Acts/Bills

  1. State Policy for Library and Information Services
  2. Need for Library Legislation
  3. Components of Library Legislation
  4. Model Acts/Bills
  5. Indian Public Library Legislation: A Model for the 21st Century

6 Library Legislation in Indian States โ€“ Their Salient Features

  1. Madras Public Libraries Act, 1948
  2. Andhra Pradesh Public Libraries Act, 1960
  3. Karnataka Public Libraries Act, 1965
  4. Maharashtra Public Libraries Act, 1967
  5. West Bengal Public Libraries Act, 1979
  6. Comparison of the Sixteen Acts

7 Other Information Related Legislations

  1. Right to Information Act
  2. Salient Features
  3. Utility in Libraries
  4. Importance as a Reference Source
  5. Intellectual Property Rights
  6. The Copyright Act, 1957
  7. The Patents Act, 1970
  8. Information Technology Act, 2000

8 Resource Sharing

  1. Resource Sharing
  2. Resource Sharing and Library Networks
  3. Library Networks: Need
  4. Resource Sharing: Issues Involved in Implementation
  5. Library Consortia
  6. Library Cooperation to Library Consortia

9 Library and Information Networks and Consortia

  1. Library and Information Networks – Definition
  2. History and Evolution of Library Networks
  3. Objectives of Library and Information Networks
  4. Characteristics of Library and Information Networks
  5. Components of Library and Information Networks
  6. Types of Library and Information Networks
  7. Activities and Services of Library Networks

10 Library and Information Networks and Consortia- National and International

  1. Development of Library and Information Networks in India
  2. INFLIBNET (Information and Library Network)
  3. DELNET (Developing Library Network)
  4. Library Consortia in India
  5. OCLC (Online Computer Library Center)

11 Librarianship as a Profession

  1. Definition
  2. Profession vs. Occupation vs. Vocation
  3. Characteristics of a Profession
  4. Library and Information Science (LIS) as a Profession
  5. Evolution of the LIS Profession
  6. Transformation of the LIS Profession
  7. Categories of LIS Professionals
  8. LIS Profession in India

12 Ethical Issues in Librarianship

  1. Ethics
  2. Professional Ethics
  3. Code of Ethics for LIS Professionals
  4. Code of Ethics for LIS Profession in India
  5. Facets of LIS Code of Ethics
  6. Code of Ethics in Digital Era
  7. Issues and Problems

13 Role of Professional Associations

  1. Role and Functions of Library Associations
  2. Programmes and Activities of Library Associations
  3. Library Associations in India
  4. Library Associations in USA and UK
  5. International Associations

14 Organisations and Institutions Involved in the Development of Library and Information Services

  1. United Nations Educational, Scientific and Cultural Organization (UNESCO)
  2. University Grants Commission (UGC)
  3. Raja Rammohun Roy Library Foundation (RRRLF)
  4. UNISIST
  5. International Nuclear Information System (INIS)
  6. Agricultural Information System (AGRIS)
  7. National Information System for Science and Technology (NISSAT)
  8. National Institute of Science Communication and Information Resources (NISCAIR)