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New alternatives from sustainable sources to wheat in bakery foods: Science, technology, and challenges.

Abstract
Ongoing research in the food industry is striving to replace wheat flour with new alternatives from sustainable sources to overcome the disease burden in the existing population. Celiac disease, wheat allergy, gluten sensitivity, or non-celiac gluten sensitivity are some common disorders associated with gluten present in wheat. These scientific findings are crucial to finding appropriate alternatives in introducing new ingredients supporting the consumer's requirements. Among the alternatives, amaranth, barley, coconut, chestnut, maize, millet, teff, oat, rye, sorghum, soy, rice flour, and legumes could be considered appropriate due to their chemical composition, bioactive profile, and alternatives utilization in the baking industry. Furthermore, the enrichment of these alternatives with proper ingredients is considered effective. Literature demonstrated that the flours from these alternative sources significantly enhanced the physicochemical, pasting, and rheological properties of the doughs. These flours boost a significant reduction in gluten proteins associated with food intolerance, in comparison with wheat highlighting a visible market opportunity with nutritional and organoleptic benefits for food producers. PRACTICAL APPLICATIONS: New alternatives from sustainable sources to wheat in bakery foods as an approach that affects human health. Alternatives from sustainable sources are important source of nutrients and bioactive compounds. Alternatives from sustainable sources are rising due to nutritional and consumer demand in bakery industry. New alternatives from sustainable sources improve physicochemical, pasting, and rheological properties of dough. Non-wheat-based foods from non-traditional grains have a potential to increase consumer market acceptance.
AuthorsShahida Anusha Siddiqui, M M Chayan Mahmud, Gholamreza Abdi, Uracha Wanich, Muhammad Qudrat Ullah Farooqi, Natwalinkhol Settapramote, Sipper Khan, Sajad Ahmad Wani
JournalJournal of food biochemistry (J Food Biochem) Vol. 46 Issue 9 Pg. e14185 (09 2022) ISSN: 1745-4514 [Electronic] United States
PMID35441405 (Publication Type: Journal Article, Review)
Copyright© 2022 Wiley Periodicals LLC.
Chemical References
  • Glutens
Topics
  • Bread (analysis)
  • Edible Grain
  • Flour (analysis)
  • Glutens (chemistry)
  • Technology
  • Triticum

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