Gene-editing technologies for developing climate resilient rice crops in sub-Saharan Africa: Political priorities and space for responsible innovation

Author:

Shilomboleni Helena1,Ismail Abdelbagi M.2

Affiliation:

1. 1School of Environment, Resources and Sustainability, University of Waterloo, Waterloo, Canada

2. 2CGIAR, International Rice Research Institute, Nairobi, Kenya

Abstract

Over the last 2 decades, rice has become one of the most important staple crops for sub-Saharan Africa. Estimates show that average consumption of rice has tripled over the last 3 decades, from 9.2 million metric tons (Mt) in the early 1990s to 31.5 million Mt in 2018, with West and Central Africa accounting for nearly two-thirds of this share. The demand for rice, however, has placed an enormous economic burden on African countries, whereby they spent over USD 5.5 billion per year on rice imports over the past few years. To address this challenge, over 32 countries have established National Rice Development Strategies to increase local production and to achieve rice self-sufficiency. Several of these countries have shown policy interest to use modern biotechnological advancements, including gene editing, to ensure increases in rice productivity and reduce food imports, in the context of extreme climate vulnerability and acceleration of the effects of biotic and abiotic stresses. This review article examines the role of biotechnology in African countries’ efforts to achieve rice self-sufficiency, particularly the potential for genome-editing technologies toward the genetic improvement of rice and to Africa’s nascent research programs. This article notes that while gene editing offers important advances in crop breeding, like genetic engineering, it faces some persistent sociopolitical challenges and low societal acceptability. As such, international partnerships advancing genome editing in Africa’s rice-subsectors development could benefit from adopting key principles from “responsible research and innovation” to help these projects achieve their potential, while bringing about more inclusive and reflexive processes that strive to anticipate the benefits and limits associated with new biotechnologies as they relate to local contexts. Such an approach could create the necessary political space to test and assess the benefits (and risks) related to adopting gene-editing technologies in Africa’s rice sectors.

Publisher

University of California Press

Subject

Atmospheric Science,Geology,Geotechnical Engineering and Engineering Geology,Ecology,Environmental Engineering,Oceanography

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