Non-aqueous fractionation revealed changing subcellular metabolite distribution during apple fruit development

被引:15
|
作者
Beshir, Wasiye F. [1 ]
Tohge, Takayuki [2 ]
Watanabe, Mutsumi [2 ]
Hertog, Maarten L. A. T. M. [1 ]
Hoefgen, Rainer [2 ]
Fernie, Alisdair R. [2 ]
Nicolai, Bart M. [1 ,3 ]
机构
[1] Katholieke Univ Leuven, Dept Biosyst BIOSYST, Div Mechatron Biostat & Sensors MeBioS, Leuven, Belgium
[2] Max Planck Inst Mol Plant Physiol MPI MP, Potsdam, Germany
[3] Flanders Ctr Postharvest Technol VCBT, Leuven, Belgium
关键词
POSTTRANSLATIONAL REDOX-MODIFICATION; ADP-GLUCOSE PYROPHOSPHORYLASE; AMINO-ACIDS; ORGANIC-ACIDS; PHENOLIC-COMPOUNDS; POTATO-TUBERS; ARABIDOPSIS; LEAVES; COMPARTMENTATION; METABOLOMICS;
D O I
10.1038/s41438-019-0178-7
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In developing apple fruit, metabolic compartmentation is poorly understood due to the lack of experimental data. Distinguishing subcellular compartments in fruit using non-aqueous fractionation has been technically difficult due to the excess amount of sugars present in the different subcellular compartments limiting the resolution of the technique. The work described in this study represents the first attempt to apply non-aqueous fractionation to developing apple fruit, covering the major events occurring during fruit development (cell division, cell expansion, and maturation). Here we describe the non-aqueous fractionation method to study the subcellular compartmentation of metabolites during apple fruit development considering three main cellular compartments (cytosol, plastids, and vacuole). Evidence is presented that most of the sugars and organic acids were predominantly located in the vacuole, whereas some of the amino acids were distributed between the cytosol and the vacuole. The results showed a shift in the plastid marker from the lightest fractions in the early growth stage to the dense fractions in the later fruit growth stages. This implies that the accumulation of starch content with progressing fruit development substantially influenced the distribution of plastidial fragments within the non-aqueous density gradient applied. Results from this study provide substantial baseline information on assessing the subcellular compartmentation of metabolites in apple fruit in general and during fruit growth in particular.
引用
收藏
页数:12
相关论文
共 25 条
  • [1] SUBCELLULAR METABOLITE DETERMINATION IN SPINACH LEAVES THROUGH NON-AQUEOUS FRACTIONATION
    GERHARDT, R
    STITT, M
    HELDT, HW
    HOPPE-SEYLERS ZEITSCHRIFT FUR PHYSIOLOGISCHE CHEMIE, 1983, 364 (09): : 1130 - 1130
  • [2] Non-aqueous Fractionation (NAF) for Metabolite Analysis in Subcellular Compartments of Arabidopsis Leaf Tissues
    Medeiros, David B.
    Arrivault, Stephanie
    Alpers, Jessica
    Fernie, Alisdair
    Arabi, Fayezeh
    BIO-PROTOCOL, 2019, 9 (20):
  • [3] Determination of metabolite concentrations in algae by non-aqueous fractionation
    Hill, Cameron
    Morgan, John A.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2011, 241
  • [4] Dissecting the Subcellular Compartmentation of Proteins and Metabolites in Arabidopsis Leaves Using Non-aqueous Fractionation
    Arrivault, Stephanie
    Guenther, Manuela
    Florian, Alexandra
    Encke, Beatrice
    Feil, Regina
    Vosloh, Daniel
    Lunn, John E.
    Sulpice, Ronan
    Fernie, Alisdair R.
    Stitt, Mark
    Schulze, Waltraud X.
    MOLECULAR & CELLULAR PROTEOMICS, 2014, 13 (09) : 2246 - 2259
  • [5] Subcellular analysis of starch metabolism in developing barley seeds using a non-aqueous fractionation method
    Tiessen, Axel
    Nerlich, Annika
    Faix, Benjamin
    Huemmer, Christine
    Fox, Simon
    Trafford, Kay
    Weber, Hans
    Weschke, Winfriede
    Geigenberger, Peter
    JOURNAL OF EXPERIMENTAL BOTANY, 2012, 63 (05) : 2071 - 2087
  • [6] Changes of abscisic acid and its metabolite during development of apple fruit
    Kondo, S
    Inoue, K
    Tamaki, M
    JOURNAL OF HORTICULTURAL SCIENCE & BIOTECHNOLOGY, 1999, 74 (06): : 762 - 767
  • [7] Activities, quantitative changes and subcellular localization of α-amylase during development of apple fruit
    Wang, YZ
    Zhang, DP
    ACTA BOTANICA SINICA, 2002, 44 (01): : 34 - 41
  • [9] Metabolite profiling and assessment of metabolome compartmentation of soybean leaves using non-aqueous fractionation and GGMS analysis
    Benkeblia, Noureddine
    Shinano, Takuro
    Osaki, Mitsuru
    METABOLOMICS, 2007, 3 (03) : 297 - 305
  • [10] Metabolite profiling and assessment of metabolome compartmentation of soybean leaves using non-aqueous fractionation and GC-MS analysis
    Noureddine Benkeblia
    Takuro Shinano
    Mitsuru Osaki
    Metabolomics, 2007, 3 : 297 - 305