Research Article

Abstract
References
1

Abe K, Hori Y, Myoda T (2020) Volatile compounds of fresh and processed garlic. Exp Ther Med 19:1585-1593. https://doi.org/10.3892/etm.2019.8394

10.3892/etm.2019.839432010343PMC6966211
2

Ahn SJ, Lee A, Min S, In S, Kim E, Kim HJ (2019) Comparison of physicochemical characteristics of garlic produced from South Korea and China. J Food Sci 84:1806-1811. https://doi.org/10.1111/1750-3841.14684

10.1111/1750-3841.14684
3

Alkhateeb OA, Bardisi AA, Ismail H, Ibrahem SK, Osman A, El-Yazied AA, Abdelaal K, Alshammari A, Rashed AA, et al. (2024) Response of onion fresh weight, nutrients uptake, nitrogen use efficiency, yield, and bulb quality to different nitrogen fertilization levels and plant density. Pol J Environ Stud 33:3045-3054. https://doi.org/10.15244/pjoes/176559

10.15244/pjoes/176559
4

Bloem E, Haneklaus S, Schnug E (2010) Influence of fertilizer practices on S-containing metabolites in garlic (Allium sativum L.) under field conditions. J Agric Food Chem 58:10690-10696. https://doi.org/10.1021/jf102009j

10.1021/jf102009j
5

Bloem E, Haneklaus S, Schnug E (2011) Storage life of field-grown garlic bulbs (Allium sativum L.) as influenced by nitrogen and sulfur fertilization. J Agric Food Chem 59:4442-4447. https://doi.org/10.1021/jf104815f

10.1021/jf104815f
6

Bonasia A, Conversa G, Lazzizera C, Elia A (2013) Pre-harvest nitrogen and Azoxystrobin application enhances postharvest shelf-life in Butterhead lettuce. Postharvest Biol Technol 85:67-76. http://dx.doi.org/10.1016/j.postharvbio.2013.04.012

10.1016/j.postharvbio.2013.04.012
7

Bonasia A, Conversa G, Lazzizera C, Elia A (2023) Harvest and post-harvest performance of autumn-winter butterhead lettuce as affected by nitrogen and azoxystrobin application. Agronomy 13:222. https://doi.org/10.3390/agronomy13010222

10.3390/agronomy13010222
8

Borlinghaus J, Albrecht F, Gruhlke MCH, Nwachukwu ID, Slusarenko AJ (2014) Allicin: chemistry and biological properties. Molecules 19:12591-12618. https://doi.org/10.3390/molecules190812591

10.3390/molecules19081259125153873PMC6271412
9

Borlinghaus J, Foerster J, Kappler U, Antelmann H, Noll U, Gruhlke MCH, Slusarenko AJ (2021) Allicin, the odor of freshly crushed garlic: A review of recent progress in understanding allicin’s effects on cells. Molecules 26:1506. https://doi.org/10.3390/molecules26061505

10.3390/molecules2606150533801955PMC8001868
10

Choudhary R, Choudhary MR, Choudhary A, Sharma YK, Choudhary A, Doodhawal K, Yadav DK, Jat SK, Mandal NK (2024) Impact of nitrogen management and nano-urea on yield, quality and storage attributes of garlic (Allium sativum). Indian J Agric Sci 94:595-599. https://doi.org/10.56093/ijas.v94i6.145412

10.56093/ijas.v94i6.145412
11

El-Mesery HS, Husein M, Hu Z, Elabd MA (2025) Postharvest stability of peeled garlic cloves (Allium sativum L.): A study on packaging materials and shelf-life environmental interactions. Food Sci Nutr 13:e71170. https://doi.org/10.1002/fsn3.71170

10.1002/fsn3.7117041221084PMC12598304
12

El-Saadony MT, Saad AM, Korma SA, Salem HM, Abd El-Mageed TA, Alkafaas SS, Elsalahaty MI, Elkafas SS, Mosa WFA, et al. (2024) Garlic bioactive substances and their therapeutic applications for improving human health: a comprehensive review. Front Immunol 15:1277074. https://doi.org/10.3389/fimmu.2024.1277074

10.3389/fimmu.2024.127707438915405PMC11194342
13

Fante L, Noreña CPZ (2012) Enzyme inactivation kinetics and colour changes in Garlic (Allium sativum L.) blanched under different conditions. J Food Eng 108:436-443. https://doi.org/10.1016/j.jfoodeng.2011.08.024

10.1016/j.jfoodeng.2011.08.024
14

Gebretsadik K, Dechassa N (2018) Response of onion (Allium cepa L.) to nitrogen fertilizer rates and spacing under rain fed condition at Tahtay Koraro, Ethiopia. Sci Rep 8:9495. https://doi.org/10.1038/s41598-018-27762-x

10.1038/s41598-018-27762-x29934563PMC6015013
15

Hamdan N, Lee CH, Wong SL, Ahmad Fauzi CENC, Zamri NMA, Lee TH (2022). Prevention of enzymatic browning by natural extracts and genome-editing: A review on recent progress. Molecules 27:1101. https://doi.org/10.3390/molecules27031101

10.3390/molecules2703110135164369PMC8839884
16

Jiang M, Hong K, Mao Y, Ma H, Chen T, Wang Z (2022) Natural 5-aminolevulinic acid: Sources, biosynthesis, detection and applications. Front Bioeng Biotechnol 10:841443. https://doi.org/10.3389/fbioe.2022.841443

10.3389/fbioe.2022.84144335284403PMC8913508
17

Kim DS, Lee JG, Park DG, Lee J, Yun YE, Jang YJ, Lim S, Cho JH, Lee J, et al. (2025) Comparative analysis of storage quality and metabolite profiles in onion bulbs according to cultivar and cultivation region. Food Sci Preserv 32:776-789. https://doi.org/10.11002/fsp.2025.32.5.776

10.11002/fsp.2025.32.5.776
18

Kim JS, Ra JH (2019) Comparison of phytochemical composition and physiological activity of ‘Hongsan’ and ‘Hansan’, a new variety of garlic. Korean J Food Sci Technol 51:147-151. https://doi.org/10.9721/KJFST.2019.51.2.147

10.9721/KJFST.2019.51.2.147
19

Lee J, Min B (2022) Evaluation of controlled release fertilizer on bulb yield, nutrient content, and storage quality of overwintering intermediate-day onions. Korean J Soil Sci Fert 55:324-342. https://doi.org/10.7745/KJSSF.2022.55.4.324

10.7745/KJSSF.2022.55.4.324
20

Lee J, Park GH, Na MH, Cho K, Na H (2022) Effects of the application times and strength of additional fertilizers on onion bulb quality parameters at harvest and during storage. Hort Sci Technol 40:134-146. https://doi.org/10.7235/HORT.20220013

10.7235/HORT.20220013
21

Liu H, Xu L, Yu F, Tan J, Cao L, Xing Y, Xu Q, Yang S, Liu X, et al. (2021) Effects of different ozone treatments on the storage quality and stability of fresh peeled garlic. RSC Adv 11:22530. https://doi.org/10.1039/D1RA00433F

10.1039/D1RA00433F
22

Luitel BP, Lee HJ, Choi MS, Lim TJ (2024) Effects of planting depth and sunshine drying on expression of greenness at the tip of peeled ‘Hongsan’ garlic cloves. Korean J Environ Agric 43:128-136. https://doi.org/10.5338/KJEA.2024.43.13

10.5338/KJEA.2024.43.13
23

National Institute of Agricultural Science and Technology (NIAST) (2000) Analytical methods of soil and plant. NIAST, Rural Development Administration (RDA), Suwon, Korea

24

Nguyen BT, Harper SM, O’Hare TJ, Menzies NW, Wehr B (2022) Sulfur nutrition affects garlic bulb yield and allicin concentration. Plants 11:2571. https://doi.org/10.3390/plants11192571

10.3390/plants1119257136235435PMC9572700
25

Nguyen BT, Hong HT, O’Hare TJ, Wehr JB, Menzies NW, Harper SM (2021) A rapid and simplified methodology for the extraction and quantification of allicin in garlic. J Food Compos Anal 104:104114. https://doi.org/10.1016/j.jfca.2021.104114

10.1016/j.jfca.2021.104114
26

Park JM, Kim AJ (2023) Evaluation of the biological activities of Hongsan garlic bulbil. J Korean Soc Food Sci Nutr 52:773-779. https://doi.org/10.3746/jkfn.2023.52.8.773

10.3746/jkfn.2023.52.8.773
27

Park YH, Park SJ, Han GJ, Choe JS, Lee JY, Kang MS (2012) Quality characteristics of pre-processed garlic during storage according to storage temperature. J Korean Soc Food Sci Nutr 41:994-1001. http://dx.doi.org/10.3746/jkfn.2012.41.7.994

10.3746/jkfn.2012.41.7.994
28

Parreño R, Rodríguez-Alcocer E, Martínez-Guardiola C, Carrasco L, Castillo P, Arbona V, Jover-Gil S, Candela H (2023) Turning garlic into a modern crop: State of the art and perspectives. Plants 12:1212. https://doi.org/10.3390/plants12061212

10.3390/plants1206121236986902PMC10057115
29

Prati P, Henrique CM, Souza AS, Silva VSN, Pacheco MTB (2014) Evaluation of allicin stability in processed garlic of different cultivars. Food Sci Technol 34:623-628. https://doi.org/10.1590/1678-457x.6397

10.1590/1678-457x.6397
30

Rababah T, Al-U’datt M, Angor M, Alsaad A, Akkam Y, Cammoh S, Magableh G, Smadi T, Almajwal A, et al. (2025) Fresh crushed garlic exhibits superior allicin and pyruvic acid stability, while fresh sliced garlic leads in phenolic and antioxidant content. Appl Food Res 5:100850. https://doi.org/10.1016/j.afres.2025.100850

10.1016/j.afres.2025.100850
31

Seki T, Hosono T (2025) Functionality of garlic sulfur compounds. Biomed Rep 23:124. https://doi.org/10.3892/br.2025.2002

10.3892/br.2025.200240502354PMC12150274
32

Sharma P, Sharma SR, Dhall RK, Mittal TC, Kumar S (2021) Variation in quality and acceptability of minimally processed garlic in response to γ-irradiation and packaging during refrigerated storage. Radiat Phys Chem 180:109193. https://doi.org/10.1016/j.radphyschem.2020.109193

10.1016/j.radphyschem.2020.109193
33

Sinha N, Eirich J, Finkemeier I, Grimm B (2022) Glutamate 1-semialdehyde aminotransferase is connected to GluTR by GluTR-binding protein and contributes to the rate-limiting step of 5-aminolevulinic acid synthesis. Plant Cell 34:4623-4640. https://doi.org/10.1093/plcell/koac237

10.1093/plcell/koac23735972388PMC9614494
34

Taha NM, Bukhari NA, Hatamleh AA, Górnik K, Sabah SS, Hashem FA, El-Gabry YA, Shahin MGE, Lamlom SF, et al. (2024) An attempt to reduce nitrogen fertilization levels and their impact on the growth and productivity of garlic (Allium sativum L.) under different planting dates. Horticulturae 10:1377. https://doi.org/10.3390/horticulturae10121377

10.3390/horticulturae10121377
35

Tesfaye E, Bayih T (2024) Impact of NPS rates on growth and yield of garlic (Allium sativum L.) varieties in greenhouse. Heliyon 10:e39963. https://doi.org/10.1016/j.heliyon.2024.e39963

10.1016/j.heliyon.2024.e3996339553650PMC11564017
36

Yoo SH, Cha GS, Kim DG, Kang MJ (2023) Physicochemical characteristics of domestic garlic by varieties and their quality changes during aging of black garlic. Korean J Food Preserv 30:446-458. https://doi.org/10.11002/kjfp.2023.30.3.446

10.11002/kjfp.2023.30.3.446
37

Zayed O, Hewedy OA, Abdelmoteleb A, Ali M, Youssef MS, Roumia AF, Seymour D, Yuan ZC (2023) Nitrogen journey in plants: From uptake to metabolism, stress response, and microbe interaction. Biomolecules 13:1443. https://doi.org/10.3390/biom13101443

10.3390/biom1310144337892125PMC10605003
38

Zhang J, Wang D, Zhao G (2013) Mechanism of discoloration in processed garlic and onion. Trends Food Sci Technol 30:162-173. http://dx.doi.org/10.1016/j.tifs.2013.01.008

10.1016/j.tifs.2013.01.008
Information
  • Publisher :KOREAN SOCIETY FOR HORTICULTURAL SCIENCE
  • Publisher(Ko) :한국원예학회
  • Journal Title :Horticultural Science and Technology
  • Journal Title(Ko) :원예과학기술지
  • Received Date : 2026-06-23
  • Revised Date : 2026-07-28
  • Accepted Date : 2026-07-30