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Novel insights into pericarp, protein body globoids of aleurone layer, starchy granules of three cereals gained using atomic force microscopy and environmental scanning electronic microscopy

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In this study, we applied Environmental Scanning Electron Microscopy-Energy Dispersive Spectroscopy (ESEM-EDS) and Atomic Force Microscopy (AFM) analysis to three different cereal caryopses: barley, oat and einkorn wheat. The morphological structures, chemical elemental composition and surface characteristics of the three cereals were described. Regarding the morphology, barley showed the thickest pericarp, providing a strong barrier digestion and absorption of nutrients. The aleurone layer of each cereal type contained protein body globoids within its cells. Large type-A and small type-B starchy granules were revealed in the endosperm of barley and einkorn wheat, whereas irregular starchy granules were found in oats. The starchy granule elemental composition, detected by ESEM-EDS, was rather homogenous in the three cereals, whereas the pericarp and protein body globoids showed heterogeneity. In the protein body globoids, oats showed higher P and K concentrations than barley and einkorn wheat. Regarding the topographic profiles, detected by AFM, einkorn wheat starchy granules showed a surface profile that differed significantly from that of oats and barley, which were quite similar to one another. The present work provides insights into the morphological and chemical makeup of the three grains shedding light on the higher bio-accessibility of einkorn wheat nutrients compared to barley and oats, providing important suggestions for human nutrition and technological standpoints.

 

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Alaettin Keçeli, Asuman Kaplan Evlice, Aliye Pehlivan, Turgay Şanal, Nusret Zencirci (2021)
Bread-making properties of einkorn wheat (Triticum monococcum ssp. monococcoum) and its suitability for whole wheat bread production. Cereal Research Communications, 49(4), 625.
10.1007/s42976-021-00146-0
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Ash Transformation during Fixed-Bed Combustion of Agricultural Biomass with a Focus on Potassium and Phosphorus. Energy & Fuels, 36(7), 3640.
10.1021/acs.energyfuels.1c04355
Samarthkumar Pachchigar, Thomas Karl Hannl, Nils Skoglund, Marcus Öhman (2025)
Ash Transformation during Combustion of Agricultural Biomass in Entrained Flow Conditions with a Focus on Phosphorus. Energy & Fuels, 39(2), 1384.
10.1021/acs.energyfuels.4c05064
Xiaoyu Chen, Ling Zhu, Hui Zhang, Gangcheng Wu, Lilin Cheng, Yayuan Zhang (2025)
Multiscale structure barrier of whole grains and its transformation during heating as starch digestibility controllers in digestive tract: A review. Food Hydrocolloids, 159, 110606.
10.1016/j.foodhyd.2024.110606
Federica Gubitosa, Leila Benayada, Daniele Fraternale, Roberta De Bellis, Silvia Carloni, Lucia Potenza, Laura Chiarantini, Andrea Gorassini, Giancarlo Verardo, Carla Roselli, Laura Valentini, Pietro Gobbi, Walter Balduini, Natascia Ventura, Francesca Giannaccini, George E.N. Kass, Mariastella Colomba, Maria Cristina Albertini (2024)
Long-lasting bioactive compounds production from Malus x domestica Borkh var. Mela Rosa Marchigiana pulp callus culture with antioxidant activity: In vitro, ex vivo and in vivo validation. Journal of Functional Foods, 114, 106073.
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Ali Hedayati, Robert Lindgren, Nils Skoglund, Christoffer Boman, Norbert Kienzl, Marcus Öhman (2021)
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Green leaf proteins: a sustainable source of edible plant-based proteins. Critical Reviews in Food Science and Nutrition, 64(29), 10855.
10.1080/10408398.2023.2229436

How to Cite

Antonini, E., Zara, C., Valentini, L., Gobbi, P., Ninfali, P., & Menotta, M. (2018). Novel insights into pericarp, protein body globoids of aleurone layer, starchy granules of three cereals gained using atomic force microscopy and environmental scanning electronic microscopy. European Journal of Histochemistry, 62(1). https://doi.org/10.4081/ejh.2018.2869

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