Affiliation:
1. Texas A&M AgriLife Research Center, 1509 Aggie Drive, Beaumont, TX 77713, USA
Abstract
Basmati rice is a premium aromatic rice that consumers choose primarily because of its distinct aroma and excellent grain quality. The grain quality of Basmati rice (GQBR) reflects the perspectives of producers, processors, sellers, and consumers related to the production, processing, marketing, and consumption of Basmati rice. Consumers, an invaluable part of the production demand and value chain of the Basmati rice industry, have the freedom to choose from different types of aromatic rice. Consumers expect their preferred Basmati rice to possess all superior rice grain qualities, including the physical, biochemical, and physiological properties. Gene functional analysis explained that a 10-base pair deletion in the promoter region of the OsSPL16 gene causes the slender grains in Basmati rice, whereas an 8-base-pair deletion in exon 7 of the OsBadh2 gene (located in the fgr region on rice chromosome 8) results in the distinct aroma. Furthermore, a combination of the genetic characteristics of the gw8 and gs3 genes has led to the creation of a long-grain Basmati-type rice cultivar. It has also been demonstrated that agricultural, genetic, and environmental conditions significantly influence GQBR. Hence, research on improving GQBR requires a multidimensional approach and sophisticated elements due to the complexity of its nature and preference diversity. This review covers the basic definitions of grain quality traits, consumer preference criteria, influencing factors, and strategies for producing superior-quality Basmati rice in the United States. This knowledge will be useful in improving the grain quality of Basmati and Basmati-type rice, as well as developing appropriate breeding programs that will meet the preferences of different countries and cultures.
Funder
Texas A&M AgriLife Research and the Texas Rice Research Foundation
Reference215 articles.
1. Rice grain size and quality;Hori;Rice,2022
2. Rice grain quality: Where we are and where to go?;Cheng;Adv. Agron.,2022
3. Recent progress on molecular breeding of rice in China;Rao;Plant Cell Rep.,2014
4. Gong, D., Zhang, X., He, F., Chen, Y., Li, R., Yao, J., Zhang, M., Zheng, W., and Yu, G. (2023). Genetic improvements in rice grain quality: A review of elite genes and their applications in molecular breeding. Agronomy, 13.
5. Developing a framework of gastronomic systems research to unravel drivers of food choice;Cuevas;Int. J. Gastron. Food Sci.,2017