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Rice bean: a lesser known pulse with well-recognized potential. | LitMetric

Rice bean: a lesser known pulse with well-recognized potential.

Planta

ICAR-Vivekananda Parvatiya Krishi Anusandhan Sansthan, Mall Road, Almora, Uttarakhand, 263601, India.

Published: September 2019

AI Article Synopsis

  • * Rice bean serves as a food security crop primarily for small-scale farmers in Southeast Asia, offering potential resistance to various stresses like drought and soil acidity, but it faces challenges in agronomic performance and market presence.
  • * Improving rice bean’s yield, color consistency, taste, and reducing anti-nutrients through collaborative efforts could enhance its economic value and support marginal farmers while preserving valuable genomic resources.

Article Abstract

Required genetic resources for the improvement of agronomic, nutritional and economic value of rice bean are available in the world collection. International cooperative effort is required to utilize and conserve them. Rice bean [Vigna umbellata (Thunb.) Ohwi and Ohashi], a lesser known pulse among the Asiatic Vigna, has long been considered as a food security crop of small and marginal farmers of Southeast Asia. Considered as a nutritionally rich food and fodder, it is also a source of genes for biotic and abiotic stress tolerance including drought, soil acidity and storage pest. Although it spread from its centre of domestication in the Indo-China region to other parts around the world, it never became an important crop anywhere probably because of agronomic disadvantages. Crop improvement for determinate nature, good yield, less variable seed colour, pleasant organoleptic properties and lower antinutrients is required. Scanning of scientific literature indicates that genetic resources with desirable agronomic and nutritional traits exist within the current collection but are spread across countries. Genomic studies in the species indicate that except for insect resistance and aluminium toxicity tolerance, not much attention has been paid to decipher and utilize other stress tolerance and nutritional quality traits. Collaborative efforts towards improving farming, food, trade value and off-farm conservation of rice bean would not only help marginal farmers but will also help to preserve the yet to be explored genomic resources available in this sturdy pulse.

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Source
http://dx.doi.org/10.1007/s00425-019-03196-1DOI Listing

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