Literature DB >> 11161021

Biosynthesis of L-ascorbic acid and conversion of carbons 1 and 2 of L-ascorbic acid to oxalic acid occurs within individual calcium oxalate crystal idioblasts.

T A Kostman1, N M Tarlyn, F A Loewus, V R Franceschi.   

Abstract

L-Ascorbic acid (AsA) and its metabolic precursors give rise to oxalic acid (OxA) found in calcium oxalate crystals in specialized crystal idioblast cells in plants; however, it is not known if AsA and OxA are synthesized within the crystal idioblast cell or transported in from surrounding mesophyll cells. Isolated developing crystal idioblasts from Pistia stratiotes were used to study the pathway of OxA biosynthesis and to determine if idioblasts contain the entire path and are essentially independent in OxA synthesis. Idioblasts were supplied with various (14)C-labeled compounds and examined by micro-autoradiography for incorporation of (14)C into calcium oxalate crystals. [(14)C]OxA gave heavy labeling of crystals, indicating the isolated idioblasts are functional in crystal formation. Incubation with [1-(14)C]AsA also gave heavy labeling of crystals, whereas [6-(14)C]AsA gave no labeling. Labeled precursors of AsA (L-[1-(14)C]galactose; D-[1-(14)C]mannose) also resulted in crystal labeling, as did the ascorbic acid analog, D-[1-(14)C]erythorbic acid. Intensity of labeling of isolated idioblasts followed the pattern OxA > AsA (erythorbic acid) > L-galactose > D-mannose. Our results demonstrate that P. stratiotes crystal idioblasts synthesize the OxA used for crystal formation, the OxA is derived from the number 1 and 2 carbons of AsA, and the proposed pathway of ascorbic acid synthesis via D-mannose and L-galactose is operational in individual P. stratiotes crystal idioblasts. These results are discussed with respect to fine control of calcium oxalate precipitation and the concept of crystal idioblasts as independent physiological compartments.

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Year:  2001        PMID: 11161021      PMCID: PMC64865          DOI: 10.1104/pp.125.2.634

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  7 in total

1.  Calcium-induced patterns of calcium-oxalate crystals in isolated leaflets of Gleditsia triacanthos L. and Albizia julibrissin Durazz.

Authors:  R Borchert
Journal:  Planta       Date:  1985-08       Impact factor: 4.116

2.  L-Ascorbic acid and L-galactose are sources for oxalic acid and calcium oxalate in Pistia stratiotes.

Authors:  S E Keates; N M Tarlyn; F A Loewus; V R Franceschi
Journal:  Phytochemistry       Date:  2000-02       Impact factor: 4.072

3.  Vacuolar Deposition of Ascorbate-derived Oxalic Acid in Barley.

Authors:  G J Wagner
Journal:  Plant Physiol       Date:  1981-03       Impact factor: 8.340

4.  Distribution of peroxisomes and glycolate metabolism in relation to calcium oxalate formation in Lemna minor L.

Authors:  X X Li; V R Franceschi
Journal:  Eur J Cell Biol       Date:  1990-02       Impact factor: 4.492

5.  The Biosynthesis of (+)-Tartaric Acid in Pelargonium crispum.

Authors:  G Wagner; F Loewus
Journal:  Plant Physiol       Date:  1973-12       Impact factor: 8.340

6.  The biosynthetic pathway of vitamin C in higher plants.

Authors:  G L Wheeler; M A Jones; N Smirnoff
Journal:  Nature       Date:  1998-05-28       Impact factor: 49.962

7.  Calcium acetate induces calcium uptake and formation of calcium-oxalate crystals in isolated leaflets of Gleditsia triacanthos L.

Authors:  R Borchert
Journal:  Planta       Date:  1986-09       Impact factor: 4.116

  7 in total
  15 in total

Review 1.  New approaches for studying and exploiting an old protuberance, the plant trichome.

Authors:  G J Wagner; E Wang; R W Shepherd
Journal:  Ann Bot       Date:  2004-01       Impact factor: 4.357

2.  Untangling metabolic and spatial interactions of stress tolerance in plants. 1. Patterns of carbon metabolism within leaves.

Authors:  Karl Y Biel; Irina R Fomina; Galina N Nazarova; Vladislav G Soukhovolsky; Rem G Khlebopros; John N Nishio
Journal:  Protoplasma       Date:  2010-05-07       Impact factor: 3.356

3.  Characterization of calcium oxalates generated as biominerals in cacti.

Authors:  Paula V Monje; Enrique J Baran
Journal:  Plant Physiol       Date:  2002-02       Impact factor: 8.340

4.  A study on calcium oxalate crystals in Tinantia anomala (Commelinaceae) with special reference to ultrastructural changes during anther development.

Authors:  Joanna Gębura; Krystyna Winiarczyk
Journal:  J Plant Res       Date:  2016-03-09       Impact factor: 2.629

5.  Oxalate production by Sclerotinia sclerotiorum deregulates guard cells during infection.

Authors:  Rejane L Guimarães; Henrik U Stotz
Journal:  Plant Physiol       Date:  2004-10-22       Impact factor: 8.340

6.  Quality of Opuntia robusta and its use in development of mayonnaise-like product.

Authors:  Aurea Bernardino-Nicanor; Emma Noemí Hinojosa-Hernández; José Mayolo Simitrio Juárez-Goiz; José Luis Montañez-Soto; María Eugenia Ramírez-Ortiz; Leopoldo González-Cruz
Journal:  J Food Sci Technol       Date:  2013-04-12       Impact factor: 2.701

7.  Glyoxylate rather than ascorbate is an efficient precursor for oxalate biosynthesis in rice.

Authors:  Le Yu; Jingzhe Jiang; Chan Zhang; Linrong Jiang; Nenghui Ye; Yusheng Lu; Guozheng Yang; Ee Liu; Changlian Peng; Zhenghui He; Xinxiang Peng
Journal:  J Exp Bot       Date:  2010-03-01       Impact factor: 6.992

Review 8.  Ascorbate as a biosynthetic precursor in plants.

Authors:  Seth Debolt; Vanessa Melino; Christopher M Ford
Journal:  Ann Bot       Date:  2006-11-10       Impact factor: 4.357

9.  Calcium channels are involved in calcium oxalate crystal formation in specialized cells of Pistia stratiotes L.

Authors:  Gayle M Volk; Lenora J Goss; Vincent R Franceschi
Journal:  Ann Bot       Date:  2004-04-15       Impact factor: 4.357

10.  Isolation of a crystal matrix protein associated with calcium oxalate precipitation in vacuoles of specialized cells.

Authors:  Xingxiang Li; Dianzhong Zhang; Valerie J Lynch-Holm; Thomas W Okita; Vincent R Franceschi
Journal:  Plant Physiol       Date:  2003-10       Impact factor: 8.340

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