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Plant nutrition

Starch degradation by alpha-amylase in tobacco leaves during the curing process

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Pages 904-911 | Received 20 Feb 2013, Accepted 06 Sep 2013, Published online: 03 Dec 2013

REFERENCES

  • Asatsuma S, Sawada C, Itoh K, Okito M, Kitajima A, Mitsui T 2005: Involvement of α-amylase I-1 in starch degradation in rice chloroplasts. Plant Cell Physiol., 46, 858–869.
  • Bacon C, Wenger R, Bullock J 1952: Chemical changes in tobacco during flue-curing. Ind. Eng. Chem., 44, 292–296.
  • Beck E, Ziegler P 1989: Biosynthesis and degradation of starch in higher plants. Ann. Rev. Plant Physiol. Plant Mol. Biol., 40, 95–117.
  • Black M, Corbineau F, Gee H, Come D 1999: Water content, raffinose, and dehydrins in the induction of desiccation tolerance in immature wheat embryos. Plant Physiol., 120, 463–472.
  • Bradford M 1976: Rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem., 72, 248–254.
  • Caspar T, Lin T, Kakefuda G, Benbow L, Preiss J, Somerville C 1991: Mutants of arabidopsis with altered regulation of starch degradation. Plant Physiol., 95, 1181–1188.
  • Chen M, Huang L, Li H, Chen Y, Yu S 2004: Signal peptide-dependent targeting of a rice a-amylase and cargo proteins to plastids and extracellular compartments of plant cells. Plant Physiol., 135, 1367–1377.
  • Edner C, Li J, Albrecht T, et al. 2007: Glucan, water dikinase activity stimulates breakdown of starch granules by plastidial b-amylases1. Plant Physiol., 145, 17–28.
  • Frankenburg W 1946: Chemical changes in the harvested tobacco leaf. Part I. Chemical and enzymic conversions during the curing process. Advan. Enzymol., 6, 309–387.
  • Fulton C, Stettler M, Mettler T, et al. 2008: b-AMYLASE4, a noncatalytic protein required for starch breakdown, acts upstream of three active b-amylases in Arabidopsis chloroplasts. Plant Cell., 20, 1040–1058.
  • Hoover R 2001: Composition, molecular structure, and physicochemical properties of tuber and root starches, review. Carbohydr. Polym., 45, 2053–2267.
  • Kakefuda G, Preiss J 1997: Partial purification and characterization of a diurnally fluctuating novel endoamylase from Arabidopsis thaliana leaves. Plant Physiol. Biochem., 35, 907–913.
  • Kakie T 1973: Degradation of starch granules of tobacco leaves during flue-curing. Nippon Nogeikagaku Kaishi (in Japanese with English summary), 11, 667–672.
  • Karim A 2007: Effects of phosphorus contents on the gelatinization and retrogradation of potato starch. J. Food Sci., 72, 132–138.
  • Li B, Servaites J, Geiger D 1992: Characterization and subcellular localization of debranching enzyme and endoamylase from leaves of sugar beet. Plant Physiol., 98, 1277–1284.
  • Lin T, Spilatro S, Preiss J 1988: Subcellular localization and characterization of amylases in Arabidopsis leaf. Plant Physiol., 86, 251–259.
  • Livak K, Schmittgen T 2001: Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)). Methods, 25, 402–408.
  • Lloyd J, Kossmann J, Ritte G 2005: Leaf starch degradation comes out of the shadows. Trends Plant Sci., 10, 130–137.
  • Lund D 1984: Influence of time, temperature, moisture, ingredients, and processing conditions on starch gelatinization. Crit. Rev. Food Sci. Nutr., 20, 249–273.
  • Maeda I, Kiribuchi S, Nakamura M 1978: Digestion of barley starch granules by the combined action of. ALPHA.-and. BETA.-amylases purified from barley and barley malt. Agric. Biol. Chem., 42, 259–267.
  • Orzechowski S 2008: Starch metabolism in leaves. Acta Biochim. Polpnica, 55, 435–445 (Review).
  • Reimann R, Hippler M, Machelett B, Appenroth K 2004: Light induces phosphorylation of glucan water dikinase, which precedes starch degradation in turions of the duckweed Spirodela polyrhiza. Plant Physiol., 135, 121–128.
  • Ritte G, Lloyd J, Eckermann N, Rottmann A, Kossmann J, Steup M 2002: The starch-related R1 protein is an alpha -glucan, water dikinase. Proc. Natl. Acad. Sci. USA, 99, 7166–7171.
  • Rooke H, Lampitt L, Jackson E 1949: The phosphorus compounds of wheat starch. Biochem. J., 45, 231–236.
  • Saeed M, Duke S 1990: Amylases in pea tissues with reduced chloroplast density and/or function. Plant Physiol., 94, 1813–1819.
  • Samojedny D, Orzechowski S 2007: New look at starch degradation in Arabidopsis thaliana L. chloroplasts. Postepy Biochem., 53, 74–83.
  • Scheidig A, Fröhlich A, Schulze S, Lloyd, Kossmann J 2002: Downregulation of a chloroplast-targeted β-amylase leads to a starch-excess phenotype in leaves. Plant J., 30, 581–591.
  • Silva J, Arcrabaça M 2004: Contributions of soluble carbohydrates to the osmotic adjustment in the C4 grass Setaria sphacelata: a comparison between rapidly and slowly imposed water stress. J. Plant Physiol., 161, 551–555.
  • Sparla F, Costa A, Lo Schiavo F, Pupillo P, Trost P 2006: Redox regulation of a novel plastid-targeted beta-amylase of Arabidopsis. Plant Physiol., 141, 840–850.
  • Stanley D, Farnden K, MacRae A 2005: Plant α-amylases: functions and roles in carbohydrate metabolism. Rev. Biol. Bratislava, 60, 65–71.
  • Weise S, Kim K, Stewart R, Sharkey T 2005: beta-Maltose is the metabolically active anomer of maltose during transitory starch degradation. Plant Physiol., 137, 756–761.
  • Yang J, Zhang J, Wang Z, Zhu Q, Liu L 2002: Abscisic acid and cytokinins in the root exudates and leaves and their relationship to senescence and remobilization of carbon reserves in rice subjected to water stress during grain filling. Planta, 215, 645–652.
  • Yu T, Kofler H, Häusler R, et al. 2001: The Arabidopsis sex1 mutant is defective in the r1 protein, a general regulator of starch degradation in plants, and not in the chloroplast hexose transporter. Plant Cell, 13, 1907–1918.
  • Yu T, Zeeman S, Thomeycroft D, et al. 2005: alpha-Amylase is not required for breakdown of transitory starch in Arabidopsis leaves. J. Biol. Chem., 280, 9773–9979.

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