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Characterization of spring and durum wheat using non-destructive synchrotron phase contrast X-ray microtomography during storage

Food Science and Technology

Characterization of spring and durum wheat using non-destructive synchrotron phase contrast X-ray microtomography during storage

N. S. Indore, C. Karunakaran, et al.

This groundbreaking study by Navanth S. Indore and colleagues delves into the post-harvest losses of cereal grain storage, revealing that spring wheat varieties outshine durum varieties in resilience during storage. Using advanced synchrotron imaging techniques, the research offers critical insights to optimize storage practices and enhance breeding strategies for stronger crops.

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~3 min • Beginner • English
Abstract
Post-harvest losses during cereal grain storage are a big concern in both developing and developed countries, where spring and durum wheat are staple food grains. Varieties under these classes behave differently under storage, which affects their end storage life. High resolution imaging data of dry as well as spoiled seed are not available for any class of wheat; therefore, an attempt was made to generate 3D data for better understanding of seed structure and changes due to spoilage. Six wheat varieties (3 varieties for each class of wheat) were stored for 5 week at 17% moisture content (wb) before scanning. Seeds were also stored in a freezer (-18 °C) for further scanning to determine if any changes occur in the structure of seeds due to freezing. Spring varieties of wheat performed better than durum varieties and freezing did not affect seed structure. Data could also help plant breeders to develop varieties that do not easily spoil, adjust grain processing techniques, and develop post-harvest recommendations for other wheat varieties.
Publisher
npj Science of Food
Published On
Mar 01, 2024
Authors
Navanth S. Indore, Chithra Karunakaran, Digvir S. Jayas, Jarvis Stobbs, Miranda Vu, Kaiyang Tu, Omar Marinos
Tags
post-harvest losses
cereal grain storage
spring wheat
durum wheat
X-ray microtomography
seed structure
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