1-Aminocyclopropane-1-carboxylic Acid Enhances Phytoestrogen Accumulation in Soy Plants (Glycine max L.) by Its Acceleration of the Isoflavone Biosynthetic Pathway

  • Kim, Jeong Ho
  • Jeong, Yu Jeong
  • Lee, Yong Hyun
  • Shah, Abdul Bari
  • Kim, Cha Young
  • 외 1명
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초록

The low levels of bioactive metabolitesin target plants presenta bottleneck for the functional food industry. The major disadvantageof soy leaves is their low phytoestrogen content despite the factthat these leaves are an enriched source of flavonols. Our study demonstratedthat simple foliar spraying with 1-aminocyclopropane-1-carboxylicacid (ACC) significantly enhanced the phytoestrogen contents of thewhole soy plant, including its leaves (27-fold), stalks (3-fold),and roots (4-fold). In particular, ACC continued to accelerate thebiosynthesis pathway of isoflavones in the leaves for up to 3 daysafter treatment, from 580 to 15,439 & mu;g/g. The detailed changesin the levels of this metabolite in soy leaves are disclosed by quantitativeand metabolomic analyses based on HPLC and UPLC-ESI-TOF/MS. The PLS-DAscore plot, S-plot, and heatmap provide comprehensive evidence toclearly distinguish the effect of ACC treatment. ACC was also provedto activate a series of structural genes (CHS, CHR, CHI, IFS, HID, IF7GT, and IF7MaT) along the isoflavone biosynthesis pathway time-dependently. Inparticular, ACC oxidase genes were turned on 12 h after ACC treatment,which was rationalized to start activating the synthetic pathway ofisoflavones.

키워드

soy plantsACCphytoestrogensmetabolomicanalysisisoflavone biosynthetic genesSOYBEAN LEAVESIDENTIFICATIONOVARIECTOMYELICITATIONETHYLENE
제목
1-Aminocyclopropane-1-carboxylic Acid Enhances Phytoestrogen Accumulation in Soy Plants (Glycine max L.) by Its Acceleration of the Isoflavone Biosynthetic Pathway
저자
Kim, Jeong HoJeong, Yu JeongLee, Yong HyunShah, Abdul BariKim, Cha YoungPark, Ki Hun
DOI
10.1021/acs.jafc.3c01810
발행일
2023-06
유형
Article
저널명
Journal of Agricultural and Food Chemistry
71
27
페이지
10393 ~ 10402