Breeding and Domesticating Crops Adapted to Drought and Salinity: A New Paradigm for Increasing Food Production

Селекция и одомашнивание сельскохозяйственных культур, адаптированных к засухе и засолению: новая парадигма повышения производства продовольствия
Jaime Prohens, Ana Fita, Adrián Rodríguez‐Burruezo, Monica Boşcaiu, Óscar Vicente
2015-11-12

crop breedingdrought-tolerant cropsgenetic engineeringhalophilic crop domesticationsalt stress tolerance
World population is expected to reach 9.2 × 10(9) people by 2050. Feeding them will require a boost in crop productivity using innovative approaches. Current agricultural production is very dependent on large amounts of inputs and water availability is a major limiting factor. In addition, the loss of genetic diversity and the threat of climate change make a change of paradigm in plant breeding and agricultural practices necessary. Average yields in all major crops are only a small fraction of record yields, and drought and soil salinity are the main factors responsible for yield reduction. Therefore there is the need to enhance crop productivity by improving crop adaptation. Here we review the present situation and propose the development of crops tolerant to drought and salt stress for addressing the challenge of dramatically increasing food production in the near future. The success in the development of crops adapted to drought and salt depends on the efficient and combined use of genetic engineering and traditional breeding tools. Moreover, we propose the domestication of new halophilic crops to create a 'saline agriculture' which will not compete in terms of resources with conventional agriculture.
1
Combining genetic engineering with traditional breeding is considered essential for efficiently developing drought- and salt-tolerant crops.
2
Developing crops adapted to drought and salinity is proposed as a new breeding paradigm for improving productivity under environmental stress.
3
Domestication of new halophilic crops could enable saline agriculture that increases food production without competing for resources with conventional agriculture.
4
Drought and soil salinity are identified as major causes of crop yield reductions, while water scarcity, climate change, and declining genetic diversity intensify production challenges.
5
Feeding a projected 9.2 × 10^9 people by 2050 requires innovative strategies to substantially increase crop productivity.

crops adapted to drought and salinity, including newly domesticated halophilic crops

crop adaptation and productivity improvement through drought and salt-stress tolerance breeding, genetic engineering, and domestication for saline agriculture

Publication Details
Publication Date
2015-11-12
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Jaime Prohens
Ana Fita
Adrián Rodríguez‐Burruezo
Monica Boşcaiu
Óscar Vicente
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%