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Reviving grain quality in wheat through non-destructive phenotyping techniques like hyperspectral imaging.
Safdar, Luqman B; Dugina, Kateryna; Saeidan, Ali; Yoshicawa, Guilherme V; Caporaso, Nicola; Gapare, Brighton; Umer, M Jawad; Bhosale, Rahul A; Searle, Iain R; Foulkes, M John; Boden, Scott A; Fisk, Ian D.
Afiliación
  • Safdar LB; International Flavour Research Centre, Division of Food, Nutrition and Dietetics University of Nottingham Loughborough UK.
  • Dugina K; International Flavour Research Centre (Adelaide), School of Agriculture, Food and Wine and Waite Research Institute University of Adelaide Glen Osmond South Australia Australia.
  • Saeidan A; Division of Plant and Crop Sciences, School of Biosciences University of Nottingham Loughborough UK.
  • Yoshicawa GV; Plant Research Centre, School of Agriculture, Food and Wine University of Adelaide Glen Osmond South Australia Australia.
  • Caporaso N; International Flavour Research Centre, Division of Food, Nutrition and Dietetics University of Nottingham Loughborough UK.
  • Gapare B; International Flavour Research Centre, Division of Food, Nutrition and Dietetics University of Nottingham Loughborough UK.
  • Umer MJ; Plant Research Centre, School of Agriculture, Food and Wine University of Adelaide Glen Osmond South Australia Australia.
  • Bhosale RA; Bühler UK Limited London UK.
  • Searle IR; Division of Plant and Crop Sciences, School of Biosciences University of Nottingham Loughborough UK.
  • Foulkes MJ; Cotton Research Institute Chinese Academy of Agricultural Sciences Anyang China.
  • Boden SA; Division of Plant and Crop Sciences, School of Biosciences University of Nottingham Loughborough UK.
  • Fisk ID; School of Biological Sciences University of Adelaide Adelaide South Australia Australia.
Food Energy Secur ; 12(5): e498, 2023 Sep.
Article en En | MEDLINE | ID: mdl-38440412
ABSTRACT
A long-term goal of breeders and researchers is to develop crop varieties that can resist environmental stressors and produce high yields. However, prioritising yield often compromises improvement of other key traits, including grain quality, which is tedious and time-consuming to measure because of the frequent involvement of destructive phenotyping methods. Recently, non-destructive methods such as hyperspectral imaging (HSI) have gained attention in the food industry for studying wheat grain quality. HSI can quantify variations in individual grains, helping to differentiate high-quality grains from those of low quality. In this review, we discuss the reduction of wheat genetic diversity underlying grain quality traits due to modern breeding, key traits for grain quality, traditional methods for studying grain quality and the application of HSI to study grain quality traits in wheat and its scope in breeding. Our critical review of literature on wheat domestication, grain quality traits and innovative technology introduces approaches that could help improve grain quality in wheat.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Food Energy Secur Año: 2023 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Food Energy Secur Año: 2023 Tipo del documento: Article