• Title/Summary/Keyword: Potato glycoalkaloid

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Genotype x Environment Interaction and Stability Analysis for Potato Performance and Glycoalkaloid Content in Korea (유전형과 재배환경의 상호작용에 따른 감자 수량성과 글리코알카로이드 함량 변화)

  • Kim, Su Jeong;Sohn, Hwang Bae;Lee, Yu Young;Park, Min Woo;Chang, Dong Chil;Kwon, Oh Keun;Park, Young Eun;Hong, Su Young;Suh, Jong Taek;Nam, Jung Hwan;Jeong, Jin Cheol;Koo, Bon Cheol;Kim, Yul Ho
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.62 no.4
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    • pp.333-345
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    • 2017
  • The potato tuber is known as a rich source of essential nutrients, used throughout the world. Although potato-breeding programs share some priorities, the major objective is to increase the genetic potential for yield through breeding or to eliminate hazards that reduce yield. Glycoalkaloids, which are considered a serious hazard to human health, accumulate naturally in potatoes during growth, harvesting, transportation, and storage. Here, we used the AMMI (additive main effects and multiplicative interaction) and GGE (Genotype main effect and genotype by environment interaction) biplot model, to evaluate tuber yield stability and glycoalkaloid content in six potato cultivars across three locations during 2012/2013. The environment on tuber yield had the greatest effect and accounted for 33.0% of the total sum squares; genotypes accounted for 3.8% and $G{\times}E$ interaction accounted for 11.1% which is the nest highest contribution. Conversely, the genotype on glycoalkaloid had the greatest effect and accounted for 82.4% of the total sum squares), whereas environment and $G{\times}E$ effects on this trait accounted for only 0.4% and 3.7%, respectively. Furthermore, potato genotype 'Superior', which covers most of the cultivated area, exhibited high yield performance with stability. 'Goun', which showed lower glycoalkaloid content, was the most suitable and desirable genotype. Results showed that, while tuber yield was more affected by the environment, glycoalkaloid content was more dependent on genotype. Further, the use of the AMMI and GGE biplot model generated more interactive visuals, facilitated the identification of superior genotypes, and suggested decisions on a variety of recommendations for specific environments.

Change in Glycoalkaloid of Potatoes during Storage (저장(貯藏)에 따른 감자의 Glycoalkaloid의 변화(變化))

  • Hwang, Chun-Sun;Lee, Sung-Woo
    • Korean Journal of Food Science and Technology
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    • v.16 no.4
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    • pp.388-391
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    • 1984
  • The purpose of this report was to investigate change in glycoalkaloid content (${\alpha}-chaconine$, ${\alpha}-solanine$) which contained in the cortex and medulla part during storage of two varieties of potato, Irish Cobbler and May Queen at $1^{\circ}C$ and $20^{\circ}C$. The tubers of both varities stored at $20^{\circ}C$ showed sprouting and ${\alpha}-chaconine$ and ${\alpha}-solanine$ contained in cortex part increased, particularly the extent of increase was more noticeable in May Queen than in Irish Cobbler. The content of glycoalkaloid in tubers stored at $1^{\circ}C$ also increased continuously. A small amount of ${\alpha}-chaconine$ was detected in the medulla part of both varieties, but ${\alpha}-solanine$ was not detected at all.

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Studies on Potato Glycoalkaloid Determination by Acid-hydrolysis Method (산 가수분해 방법에 의한 감자 glycoalkaloid성분의 정량성 검토)

  • Yoon, Kyung-Soon;Byun, Gwang-In
    • Journal of the Korean Society of Food Culture
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    • v.24 no.1
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    • pp.84-89
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    • 2009
  • This paper was conducted to evaluate aglycones and carbohydrates produced by acid hydrolysis of three potato glycoalkaloids [(PGA); ${\alpha}$-chaconine, ${\alpha}$-solanine, and demissine] in potatoes. Standard solanidine and demissidine were dissolved in 1N HCl and then heated at $100^{\circ}C$ for 10-120 min. Solanidine was rapidly decomposed during acid hydrolysis and one peak that was identified as solantherene ($M^+$=379) by GC-MS was detected. The transformation solanidine to solanthrene was approximately 50% complete after 10 min, approximately 90% complete after 60 min and 100% complete after 120 min. Demissidine was hydrolyzed using the same method that was used to hydrolyze the solanidine. However, demissidine produced only one peak upon GC-MS ($M^+$=399) analysis and was found to be very stable at increased temperatures. Acidy hydrolysis of ${\alpha}$-chaconine, ${\alpha}$-solanine and demissine resulted in the decomposition of ${\alpha}$-chaconine and ${\alpha}$-solanine to solanidine and solanthrene, respectively. Therefore, this hydrolysis method should not be utilized to produce PGA combining with solanidine as aglycone. The individual carbohydrates produced by the two PGAs by hydrolysis were very stable at increased temperatures; therefore, it was possible to quantify these PGAs based on calculation of the individual carbohydrate content. Conversely, because demissidine produced by the hydrolysis of demissine was extremely stable at increased temperatures, it was possible to quantify the PGA based on the aglycone produced by hydrolysis.

Simple and Sensitive Liquid Chromatography Electrospray Ionization Mass Spectrometry Method for Determination of Glycoalkaloids in Potato (Solanum tuberosum L.)

  • Kim, Jae-Kwang;Bae, Shin-Cheol;Baek, Hyung-Jin;Seo, Hyo-Won;Ryu, Tae-Hun;Kim, Jung-Bong;Won, So-Youn;Sohn, Soo-In;Kim, Dong-Hern;Kim, Sun-Ju;Cho, Myoung-Rae
    • Food Science and Biotechnology
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    • v.18 no.1
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    • pp.113-117
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    • 2009
  • A method was developed using enhanced liquid chromatography coupled with electrospray ionization mass spectrometry for the analysis and quantitation of 2 main potato glycoalkaloids, $\alpha$-chaconine, and $\alpha$-solanine, without any pre-concentration or derivatisation steps. Calibration curves generated by this technique exhibited a linear dynamic range from 0.025 to $50{\mu}g/mL$ and from 0.05 to $50{\mu}g/mL$ for $\alpha$-chaconine and $\alpha$-solanine, respectively. Matrix effects were evaluated by comparing calibration curves measured in matrix-matched and solvent-based systems. Ion suppression due to matrix effects was weak and extraction recoveries of 88 to 114% were obtained in different sample matrices spiked with analyte concentrations ranging from 15 to $35{\mu}g/mL$. Potatoes that had been genetically modified to tolerate glufosinate contained the same glycoalkaloid levels as their non-transgenic counterpart. We suggest complementing compositional comparison assessment strategy by validating quantitative analytical methods for the toxic glycoalkaloids in potato plants.

The Changes of Components by Maturity Stage of Tomato I (토마토의 생육과정에 따른 성분 변화 I -Tomatine 분석을 중심으로 -)

  • Kim, Dong-Seok;Kozukue, Nobuyuki;Han, Jae-Sook;Kim, Mi-Hyang
    • Journal of the Korean Society of Food Culture
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    • v.19 no.6
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    • pp.598-604
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    • 2004
  • This was aim to study the changes of components by different parts and maturity of tomato. We found that orally fed tomatine which induced a significant reduction in cholesterol in hamster in contrast to potato glycoalkaloids, the safety of tomatine was supported by our observation that pickled green tomatoes consumed widely in many countries has a high tomatine content. The tomatoes harvested during the first stage(10 days after flowering) contained tomatine $6333.49{\mu}g\;per\;100g$ and dohydrotomatine and ${\alpha}$-tomatine in a ratio of about 1:13.8. The tomatine content then decreased by about 85% during stage 2(20 days after flowering) an dehydrotomatine contene dropped to a value near zero during stage 3, 4 It on the tomatine content dropped to a value near zero during the final stage(50 days after flowering). With respect to health benefits at all stages of maturity, unripe tomato contain chlorophyll and ${\alpha}$-tomatine should consumed.

Thin Layer Chromatographic Determination of ${\alpha}-Solanine$ (Thin Layer Chromatography 법(法)에 의한 ${\alpha}-Solanine$의 정량(定量))

  • Choe, Eun-Ok;Ahn, Seung-Yo
    • Applied Biological Chemistry
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    • v.24 no.4
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    • pp.238-244
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    • 1981
  • The thin Layer chromatographic determination of ${\alpha}-solanine $ in potato tuber was investigated. The solanine was extracted with methanol-chloroform mixture (2 : 1, v/v) and precipitated as the crude glycoalkaloid by the addition of ammonium hydroxide. The solanine in the crude precipitate was separated by TLC using a solvent system of 1% $NH_4OH-absolute$ ethanol-chloroform (1:2:2, v/v). The purity of ${\alpha}-solanine $ was confirmed by infrared spectrophotometry. The ${\alpha}-solanine $ separated by TLC was determined at the wavelength of 310nm after coloration with concentrated sulfuric acid-1% paraformaldehyde, with the molar absorptivity of 2,090.

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