Application of Digital Image Analysis for Assessment of Starch Content and Distribution in Potatoes
Abstract
1. Introduction
2. Materials and Methods
3. Results and Discussion
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Camire, M.E.; Kubow, S.; Donnelly, D.J. Potatoes and Human Health. Crit. Rev. Food Sci. Nutr. 2009, 49, 823–840. [Google Scholar] [CrossRef]
- Hussain, M.; Qayum, A.; Xiuxiu, Z.; Liu, L.; Hussain, K.; Yue, P.; Yue, S.; Koko, Y.F.M.; Hussain, A.; Li, X. Potato protein: An emerging source of high quality and allergy free protein, and its possible future based products. Food Res. Int. 2021, 148, 110583. [Google Scholar] [CrossRef] [PubMed]
- Fan, Y.; Picchioni, F. Modification of starch: A review on the application of “green” solvents and controlled functionalization. Carbohydr. Polym. 2020, 241, 116350. [Google Scholar] [CrossRef] [PubMed]
- Yazid, N.S.M.; Abdullah, N.; Muhammad, N.; Matias-Peralta, H.M. Application of dtarch and starch-based products in food industry. J. Sci. Technol. 2018, 10, 144–174. [Google Scholar] [CrossRef]
- Egharevba, O.H. Chemical Properties of Starch and Its Application in the Food Industry. In Chemical Properties of Starch; Emeje, M., Ed.; IntechOpen: London, UK, 2019. [Google Scholar] [CrossRef]
- Nissen, M. The weight of potatoes in water. Am. Potato J. 1955, 32, 332–339. [Google Scholar] [CrossRef]
- Kempf, W.; Schnegg, H. Ober die Beziehung zwischen dem Unterwassergewicht der Kartoffel und ihrer analytischen Zusammensetzung (On the relation between under-water weight and analytical composition of potatoes). Stärke 1971, 23, 136–145. [Google Scholar] [CrossRef]
- Müller, K.; Cervenkova, I. Die Ermittlung des Stӓrke- und Trockensubstanzgehaltes in Kartoffelknollen nach Bestimmung des Unterwassergewichtes an Hand modifizierter Tabellenwerte (Modified determination of starch and dry matter content in potato tubers by underwater weight). Stärke 1978, 30, 12–20. [Google Scholar] [CrossRef]
- Haase, N.U. Estimation of dry matter and starch concentration in potatoes by determination of under-water weight and near infrared spectroscopy. Potato Res. 2003, 46, 117–127. [Google Scholar] [CrossRef]
- Ulmann, M.; Richter, M. Zur Kritik der Grundlagen der polarimetrischen Stärkebestimmung nach Ewers. Stärke 1961, 13, 67–75. [Google Scholar] [CrossRef]
- Leszczyński, W. Critical assessment of methods for determination of starch content in potato tubers. Przem. Ferment. 1975, 11, 22–24. [Google Scholar]
- Samotus, B.; Leja, M.; Scigalski, A.; Dulinski, J.; Siwanowicz, R. Analytical Remarks to Explain Some Discrepancies in the Determination of Dry Matter and Starch from Potato Tubers Density. Stärke 1986, 38, 14–19. [Google Scholar] [CrossRef]
- Mitchell, G.A. Methods of Starch Analysis. Stärke 1990, 42, 131–134. [Google Scholar] [CrossRef]
- Collins, T. ImageJ for microscopy. BioTechniques 2007, 43, 25–30. [Google Scholar] [CrossRef] [PubMed]
- Abramoff, M.D.; Magalhães, P.J.; Ram, S.J. Image Processing with ImageJ. Biophoton. Int. 2004, 11, 36–42. [Google Scholar]
- Skrzyński, W. ImageJ—Program do analizy obrazów i jego zastosowania. Inż. Fiz. Med. 2013, 2, 129–132. [Google Scholar]
- Schindelin, J.; Rueden, C.; Hiner, M.; Eliceiri, K. The ImageJ ecosystem: An open platform for biomedical image analysis. Mol. Reprod. Dev. 2015, 82, 518–529. [Google Scholar] [CrossRef]
- Rueden, C.T.; Schindelin, J.; Hiner, M.C.; DeZonia, B.E.; Walter, A.E.; Arena, E.T.; Eliceiri, K.W. ImageJ2: ImageJ for the next generation of scientific image data. BMC Bioinf. 2017, 18, 529. [Google Scholar] [CrossRef]
- Doughan, S.; Shahmuradyan, A. At-Home Real-Life Sample Preparation and Colorimetric-Based Analysis: A Practical Experience outside the Laboratory. J. Chem. Educ. 2021, 98, 1031–1036. [Google Scholar] [CrossRef]
- Association of Official Analytical Chemists, Official Methods of Analysis; AOAC International: Washington, DC, USA, 1984; p. 254.
- TIBCO Software Inc. Statistica (Data Analysis Software System), version 13. 2017. Available online: http://statistica.io (accessed on 10 December 2022).
- Zgórska, K.; Grudzińska, M. Changes in selected quality parameters of potato tubers during storage. Acta Agrophys. 2012, 19, 203–214. [Google Scholar]
- Biemelt, S.; Hajirezaei, M.; Hentschel, E.; Sonnewald, U. Comparative analysis of abscisic acid content and starch degradation during storage of tubers harvested from different potato varieties. Potato Res. 2000, 43, 371–382. [Google Scholar] [CrossRef]
- Leszczyński, W. Skrobia—Surowiec przemysłowy, budowa i właściwości. Zesz. Probl. Postęp. Nauk Rol. 2004, 500, 69–98. [Google Scholar]
- Wang, S.; Li, C.; Copeland, L.; Niu, Q.; Wang, S. Starch Retrogradation: A Comprehensive Review. Compr. Rev. Food Sci. Food Saf. 2015, 14, 568–585. [Google Scholar] [CrossRef]
- Jiang, J.; Zeng, J.; Gao, H.; Zhang, L.; Wang, F.; Su, T.; Xiang, F.; Li, G. Effect of low temperature on the aging characteristics of a potato starch gel. Int. J. Biol. Macromol. 2020, 150, 519–527. [Google Scholar] [CrossRef] [PubMed]
- Jakab, Z.; Platon, I.; Festila, A. Study on Starch Iodine Test For Determining Maturation Stage at Several Apple Cultivars in Correlation With Climatic Factors at SCDP Bistria Using a One Year Model by Means of Image Analysis in ImageJ. Sci. Papers 2014, 58, 43–50. [Google Scholar]
Variety | Culinary Type | Flesh Color | Origin |
---|---|---|---|
Allianz | A (boiling, very early) | white | Piaseczno, Poland |
Gala | B (all-purpose, early) | pale yellow | Błaszki, Poland |
Lilly | BC (all-purpose/baking, moderately early) | white | Piaseczno, Poland |
Lord | AB (boiling/all-purpose, very early) | pale yellow | Piaseczno, Poland |
Melody | BC (all-purpose/baking, moderately early) | pale yellow | Błaszki, Poland |
Satina | B (all-purpose, moderately early) | yellow | Germany |
Potato Cultivar | Starch Content [%] |
---|---|
Gala | 11.7 a |
Lord | 12.5 a |
Melody | 12.6 a |
Lilly | 14.2 b |
Satina | 17.7 c |
Allianz | 17.9 c |
LSD value | 1.09 |
Storage | Starch Content [%] |
---|---|
Cold store: 4 °C | 14.9 a |
Freezing: −15 °C | 14.0 b |
LSD value | 0.64 |
Potato Cultivar | Mean | Median | Range | Skewness | Coefficient of Variation |
---|---|---|---|---|---|
Gala | 68.2 a | 68.0 a | 53.7 a | 0.29 abc | 42.4 a |
Lord | 62.5 ab | 62.1 ac | 51.9 a | 0.36 c | 28.4 b |
Melody | 54.8 b | 54.4 c | 59.8 a | 0.18 d | 19.0 c |
Lilly | 58.1 b | 57.6 c | 63.2 a | 0.26 ab | 25.1 d |
Satina | 44.3 c | 43.6 b | 61.3 a | 0.32 bc | 26.4 e |
Allianz | 43.9 c | 43.0 b | 61.7 a | 0.21 ad | 26.9 e |
LSD value | 8.7 | 8.3 | 17.4 | 0.07 | 1.1 |
Storage | Mean | Median | Range | Skewness | Coefficient of Variation |
---|---|---|---|---|---|
Cold store: 4 °C | 57.9 a | 57.3 a | 58.5 a | 0.24 a | 17.4 a |
Freezing: −15 °C | 98.7 b | 92.3 b | 202.7 b | 0.29 b | 38.6 b |
LSD value | 5.0 | 5.2 | 10.0 | 0.04 | 0.6 |
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Boruczkowski, T.; Boruczkowska, H.; Drożdż, W.; Raszewski, B. Application of Digital Image Analysis for Assessment of Starch Content and Distribution in Potatoes. Appl. Sci. 2022, 12, 12988. https://doi.org/10.3390/app122412988
Boruczkowski T, Boruczkowska H, Drożdż W, Raszewski B. Application of Digital Image Analysis for Assessment of Starch Content and Distribution in Potatoes. Applied Sciences. 2022; 12(24):12988. https://doi.org/10.3390/app122412988
Chicago/Turabian StyleBoruczkowski, Tomasz, Hanna Boruczkowska, Wioletta Drożdż, and Bartosz Raszewski. 2022. "Application of Digital Image Analysis for Assessment of Starch Content and Distribution in Potatoes" Applied Sciences 12, no. 24: 12988. https://doi.org/10.3390/app122412988
APA StyleBoruczkowski, T., Boruczkowska, H., Drożdż, W., & Raszewski, B. (2022). Application of Digital Image Analysis for Assessment of Starch Content and Distribution in Potatoes. Applied Sciences, 12(24), 12988. https://doi.org/10.3390/app122412988