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"Iron"

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밀 영양성 강화를 위한 철과 아연 함량 및 이용 증진 연구 동향
Research Advances in Biofortification and Bioavailability of Fe and Zn for Improving the Nutritional Value of Wheat
Jinhee Park, Sumin Hong, Kyung-Hoon Kim, Kyung-Min Kim, Go-Eun Lee, Myoung-Goo Choi, Chon-Sik Kang, Youngjun Mo, Chul Soo Park, Changhyun Choi
Korean. J. Breed. Sci. 2023;55(4):325-349.
Published online December 1, 2023
DOI: https://doi.org/10.9787/KJBS.2023.55.4.325

Since iron (Fe) and zinc (Zn) are essential micronutrients for human immunity and metabolic activities, it is important to biofortify major food crops such as wheat and improve the bioavailability of Fe and Zn. In this review, we focused on analyzing studies conducted to identify and evaluate QTLs, genes, and associated molecular markers related to Fe and Zn content in wheat, their absorption mechanisms, and bioavailability in terms of genetics and breeding. Because bread wheat has a limited Fe and Zn content in its grains, many studies have used wild, synthetic, or mutant wheat resources with high Fe and Zn contents. Many studies have been conducted to characterize related genes, of which Gpc-B1 is the major gene that increases the final content of Fe, Zn, and protein in association with an Gpc-B1 increase in Fe uptake and regulate Zip and YSL expression. Research determining the appropriate phytic acid content and increasing phytase activity to improve bioavailability was also highlighted.

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철과 아연 함량이 높고 향기가 있는 벼 ‘향철아’
‘Hyangcheola’, A New Fragrant Rice Variety with High Iron and Zinc Content
Eung-Gi Jeong, Eok-Keun Ahn, Yong-Jae Won, Jeong-Heui Lee, Sang-Bok Lee, Jong-Min Jeong, Sea-Kwan Oh, Yong-Hwan Choi, Jeom-Ho Lee, Jung-Pil Suh, Ung-Jo Hyun, O-Young Jung, Bo-Kyeong Kim, Ji-Young Son
Korean. J. Breed. Sci. 2018;50(4):472-477.   Published online December 1, 2018
DOI: https://doi.org/10.9787/KJBS.2018.50.4.472

“Hyangcheola” is a new japonica rice variety developed as a cross between “Joryeong” and “Seolhyangchal” by the rice breeding team at NICS in 2014. The heading date of “Hyangcheola” is July 28 in the middle plain area, which is 8 days earlier than that of “Hwaseong.” “Hyangcheola” has a 76 cm long culm, which is 8 cm shorter than “Hwaseong” and has 86 spikelets per panicle. The viviparous germination rate of “Hyangcheola” was 27.9%. It showed resistance to stripe virus but susceptibility to bacterial blight (K1, K2, and K3 races), dwarf and black streak dwarf viruses and planthoppers. The milled rice of this variety exhibits translucent and medium short grain shape. The protein content of “Hyangcheola” was 8.2%, which was 1.5% higher than that of “Hwaseong.” “Hyangcheola” is a rice with a fragrant aroma. The content of iron in 100 g of brown “Hyangcheola” rice was 15.12 mg, which is 3.69 mg higher than that of “Hwaseong,” and the zinc content was 32.24 mg, which is 8.75 mg more than that of the comparative variety “Hwaseong.” The average milled rice yield of “Hyangcheola” was 4.8 MT/ha at our sites under ordinary cultivation (Registration No. 6807).

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This study was conducted to obtain general information for rice breeding materials high in taxifolin content. The taxifolin was isolated from the rice variety, ‘Superhongmi’, and was identified by means of spectral methods and quantitative analysis using a high performance liquid chromatography (HPLC). The taxifolin content of the ‘Superhongmi’ variety was ranged between 32mg and 68mg per 100g seed that differs depending on cultivated regions. The taxifolin content was lower grown at mid north than those at south region. A large amount of taxifolin was found in the aleurone layer of seed as well as in the node of spike of the ‘Superhongmi’. The weight of 1,000 grains was ranged between 23.5g and 27.8g that varied depending on cultivated regions. This variety showed heading in the 6th of September, and its fertility ratio was about 83% in sejong region. These results suggest that the taxifolin-rich rice variety, ‘Superhongmi’, is a good source of functional and stable food.

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