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1.
PLoS One ; 11(6): e0156714, 2016.
Article in English | MEDLINE | ID: mdl-27258536

ABSTRACT

Interest in the medicinal properties of secondary metabolites of Boesenbergia rotunda (fingerroot ginger) has led to investigations into tissue culture of this plant. In this study, we profiled its primary and secondary metabolites, as well as hormones of embryogenic and non-embryogenic (dry and watery) callus and shoot base, Ultra Performance Liquid Chromatography-Mass Spectrometry together with histological characterization. Metabolite profiling showed relatively higher levels of glutamine, arginine and lysine in embryogenic callus than in dry and watery calli, while shoot base tissue showed an intermediate level of primary metabolites. For the five secondary metabolites analyzed (ie. panduratin, pinocembrin, pinostrobin, cardamonin and alpinetin), shoot base had the highest concentrations, followed by watery, dry and embryogenic calli. Furthermore, intracellular auxin levels were found to decrease from dry to watery calli, followed by shoot base and finally embryogenic calli. Our morphological observations showed the presence of fibrils on the cell surface of embryogenic callus while diphenylboric acid 2-aminoethylester staining indicated the presence of flavonoids in both dry and embryogenic calli. Periodic acid-Schiff staining showed that shoot base and dry and embryogenic calli contained starch reserves while none were found in watery callus. This study identified several primary metabolites that could be used as markers of embryogenic cells in B. rotunda, while secondary metabolite analysis indicated that biosynthesis pathways of these important metabolites may not be active in callus and embryogenic tissue.


Subject(s)
Amino Acids/chemistry , Zingiber officinale/embryology , Zingiber officinale/metabolism , Boron Compounds/chemistry , Chromatography, High Pressure Liquid , Culture Media , Esters/chemistry , Indoleacetic Acids/chemistry , Mass Spectrometry , Metabolome , Plant Shoots/metabolism , Principal Component Analysis , Tissue Culture Techniques
2.
J Agric Food Chem ; 62(32): 8143-52, 2014 Aug 13.
Article in English | MEDLINE | ID: mdl-25032485

ABSTRACT

Oil palm is one of the most productive oil-producing crops and can store up to 90% oil in its fruit mesocarp. Oil palm fruit is a sessile drupe consisting of a fleshy mesocarp from which palm oil is extracted. Biochemical changes in the mesocarp cell walls, polyamines, and hormones at different ripening stages of oil palm fruits were studied, and the relationship between the structural and the biochemical metabolism of oil palm fruits during ripening is discussed. Time-course analysis of the changes in expression of polyamines, hormones, and cell-wall-related genes and metabolites provided insights into the complex processes and interactions involved in fruit development. Overall, a strong reduction in auxin-responsive gene expression was observed from 18 to 22 weeks after pollination. High polyamine concentrations coincided with fruit enlargement during lipid accumulation and latter stages of maturation. The trend of abscisic acid (ABA) concentration was concordant with GA4 but opposite to the GA3 profile such that as ABA levels increase the resulting elevated ABA/GA3 ratio clearly coincides with maturation. Polygalacturonase, expansin, and actin gene expressions were also observed to increase during fruit maturation. The identification of the master regulators of these coordinated processes may allow screening for oil palm variants with altered ripening profiles.


Subject(s)
Arecaceae/metabolism , Cell Wall/metabolism , Crops, Agricultural/metabolism , Fruit/metabolism , Gene Expression Regulation, Plant , Plant Growth Regulators/biosynthesis , Polyamines/metabolism , Abscisic Acid/metabolism , Actins/genetics , Actins/metabolism , Arecaceae/growth & development , Cell Wall/enzymology , Crops, Agricultural/enzymology , Crops, Agricultural/growth & development , Crosses, Genetic , Fruit/growth & development , Gibberellins/genetics , Gibberellins/metabolism , Indoleacetic Acids/metabolism , Lipid Metabolism , Malaysia , Plant Proteins/genetics , Plant Proteins/metabolism , Pollination , Polygalacturonase/genetics , Polygalacturonase/metabolism , RNA, Messenger/metabolism , RNA, Plant/metabolism , Up-Regulation
3.
Chem Cent J ; 5: 32, 2011 Jun 20.
Article in English | MEDLINE | ID: mdl-21682931

ABSTRACT

BACKGROUND: Twenty-seven extracts from 26 plants were identified as photo-cytotoxic in the course of our bioassay guided screening program for photosensitisers from 128 extracts prepared from 64 terrestrial plants in two different collection sites in Malaysia - Royal Belum Forest Reserve in the State of Perak and Gunung Nuang in the State of Selangor. One of the photo-cytotoxic extracts from the leaves of Phaeanthus ophtalmicus was further investigated. RESULTS: The ethanolic extract of the leaves from Phaeanthus ophtalmicus was able to reduce the in vitro viability of leukaemic HL60 cells to < 50% when exposed to 9.6 J/cm2 of a broad spectrum light at a concentration of 20 µg/mL. Dereplication of the photo-cytotoxic fractions from P. ophthalmicus extracts based on TLC Rf values and HPLC co-injection of reference tetrapyrrolic compounds enabled quick identification of known photosensitisers, pheophorbide-a, pheophorbide-a methyl ester, 132-hydroxypheophorbide-a methyl ester, pheophytin-a and 151-hydroxypurpurin 7-lactone dimethyl ester. In addition, compound 1 which was not previously isolated as a natural product was also identified as 7-formyl-151-hydroxypurpurin-7-lactone methyl ester using standard spectroscopic techniques. CONCLUSIONS: Our results suggest that the main photosensitisers in plants are based on the cyclic tetrapyrrole structure and photosensitisers with other structures, if present, are present in very minor amounts or are not as active as those with the cyclic tetrapyrrole structure.

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