References
Akihiro T, Mizuno K, Fujimura T (2005
)
Gene expression of ADP-glucose pyrophosphorylase and starch contents in rice cultured cells are cooperatively regulated by sucrose and ABA.
Plant & Cell Physiology
46, 937–946.
|
CrossRef |
CAS |
Andriotis VM, Pike MJ, Kular B, Rawsthorne S, Smith AM (2010
)
Starch turnover in developing oilseed embryos.
New Phytologist
187, 791–804.
|
CrossRef |
CAS |
Ballicora MA, Laughlin MJ, Fu Y, Okita TW, Barry GF, Preiss J (1995
)
Adenosine 5′-diphosphate-glucose pyrophosphorylase from potato tuber (significance of the
N terminus of the small subunit for catalytic properties and heat stability).
Plant Physiology
109, 245–251.
|
CrossRef |
CAS |
Blum A (1998
)
Improving wheat grain filling under stress by stem reserve mobilisation.
Euphytica
100, 77–83.
|
CrossRef |
Burton RA, Jenner H, Carrangis L, Fahy B, Fincher GB, Hylton C, Laurie DA, Parker M, Waite D, van Wegen S, Verhoeven T, Denyer K (2002
a)
Starch granule initiation and growth are altered in barley mutants that lack isoamylase activity.
The Plant Journal
31, 97–112.
|
CrossRef |
CAS |
Burton RA, Johnson PE, Beckles DM, Fincher GB, Jenner HL, Naldrett MJ, Denyer K (2002
b)
Characterization of the genes encoding the cytosolic and plastidial forms of ADP-glucose pyrophosphorylase in wheat endosperm.
Plant Physiology
130, 1464–1475.
|
CrossRef |
CAS |
Chen C, Gao M, Liu J, Zhu H (2007
)
Fungal symbiosis in rice requires an ortholog of a legume common symbiosis gene encoding a Ca2+/calmodulin-dependent protein kinase.
Plant Physiology
145, 1619–1628.
|
CrossRef |
CAS |
Comparot-Moss S, Denyer K (2009
)
The evolution of the starch biosynthetic pathway in cereals and other grasses.
Journal of Experimental Botany
60, 2481–2492.
|
CrossRef |
CAS |
Coxon DT, Wright DJ (1985
)
Analysis of pea lipid content by gas chromatographic and microgravimetric methods. Genotype variation in lipid content and fatty acid composition.
Journal of Agricultural and Food Chemistry
36, 847–856.
|
CrossRef |
CAS |
Denyer K, Dunlap F, Thorbjornsen T, Keeling P, Smith AM (1996
)
The major form of ADP-glucose pyrophosphorylase in maize endosperm is extra-plastidial.
Plant Physiology
112, 779–785.
|
CrossRef |
CAS |
Dickinson DB, Preiss J (1969
)
ADP glucose pyrophosphorylase from maize endosperm.
Archives of Biochemistry and Biophysics
130, 119–128.
|
CrossRef |
CAS |
Doan DNP, Rudi H, Olsen O-A (1999
)
The allosterically unregulated isoform of ADP-glucose pyrophosphorylase from barley endosperm is the most likely source of ADP-glucose incorporated into endosperm starch.
Plant Physiology
121, 965–975.
|
CrossRef |
CAS |
Giroux MJ, Hannah LC (1994
)
ADP-glucose pyrophosphorylase in
shrunken-2 and
brittle-2 mutants of maize.
Molecular & General Genetics
243, 400–408.
Giroux MJ, Boyer C, Feix G, Hannah LC (1994
)
Coordinated transcriptional regulation of storage product genes in the maize endosperm.
Plant Physiology
106, 713–722.
Hirochika H (1997
)
Retrotransposons of rice: their regulation and use for genome analysis.
Plant Molecular Biology
35, 231–240.
|
CrossRef |
CAS |
Hirose T, Ohdan T, Nakamura Y, Terao T (2006
)
Expression profiling of genes related to starch synthesis in rice leaf sheaths during the heading period.
Physiologia Plantarum
128, 425–435.
|
CrossRef |
CAS |
Ishimaru K, Togawa E, Ookawa T, Kashiwagi T, Madoka Y, Hirotsu N (2008
)
New target for rice lodging resistance and its effect in a typhoon.
Planta
227, 601–609.
|
CrossRef |
CAS |
Johnson PE, Patron NJ, Bottrill AR, Dinges JR, Fahy BF, Parker ML, Waite DN, Denyer K (2003
)
A low-starch barley mutant,
Risø16, lacking the cytosolic small subunit of ADP-glucose pyrophosphorylase, reveals the importance of the cytosolic isoform and the identity of the plastidial small subunit.
Plant Physiology
131, 684–696.
|
CrossRef |
CAS |
Kashiwagi T, Madoka Y, Hirotsu N, Ishimaru K (2006
)
Locus
prl5 improves lodging resistance of rice by delaying senescence and increasing carbohydrate reaccumulation.
Plant Physiology and Biochemistry
44, 152–157.
|
CrossRef |
CAS |
Lee SK, Hwang SK, Han M, Eom JS, Kang HG, Han Y, Choi SB, Cho MH, Bhoo SH, An G, Hahn TR, Okita TW, Jeon JS (2007
)
Identification of the ADP-glucose pyrophosphorylase isoforms essential for starch synthesis in the leaf and seed endosperm of rice (
Oryza sativa L.).
Plant Molecular Biology
65, 531–546.
|
CrossRef |
CAS |
Nakano H, Makino A, Mae T (1995
)
Effects of panicle removal on the photosynthetic characteristics of the flag leaf of rice plants during the ripening stage.
Plant & Cell Physiology
36, 653–659.
Nakano H, Makino A, Mae T (1997
)
The effect of elevated partial pressures of CO
2 on the relationship between photosynthetic capacity and N content in rice leaves.
Plant Physiology
115, 191–198.
Ohdan T, Francisco PB, Sawada T, Hirose T, Terao T, Satoh H, Nakamura Y (2005
)
Expression profiling of genes involved in starch synthesis in sink and source organs of rice.
Journal of Experimental Botany
56, 3229–3244.
|
CrossRef |
CAS |
Perez CM, Palmiano EP, Baun LC, Juliano BO (1971
)
Starch metabolism in the leaf sheaths and culms of rice.
Plant Physiology
47, 404–408.
|
CrossRef |
CAS |
Rösti S, Denyer K (2007
)
Two paralogous genes encoding small subunits of ADP-glucose pyrophosphorylase in maize,
Bt2 and
L2, replace the single alternatively spliced gene found in other cereal species.
Journal of Molecular Evolution
65, 316–327.
|
CrossRef |
Rösti S, Rudi H, Rudi K, Opsahl-Sorteberg H-G, Fahy B, Denyer K (2006
)
The gene encoding the cytosolic small subunit of ADP-glucose pyrophosphorylase in barley endosperm also encodes the major plastidial small subunit in the leaves.
Journal of Experimental Botany
57, 3619–3626.
|
CrossRef |
Rösti S, Fahy B, Denyer K (2007
)
A mutant of rice lacking the leaf large subunit of ADP-glucose pyrophosphorylase has drastically reduced leaf starch content but grows normally.
Functional Plant Biology
34, 480–489.
|
CrossRef |
Salamone PR, Greene TW, Kavakli IH, Okita TW (2000
)
Isolation and characterization of a higher plant ADP-glucose pyrophosphorylase small subunit homotetramer.
FEBS Letters
482, 113–118.
|
CrossRef |
CAS |
Schnyder H (1992
)
The role of carbohydrate storage and redistribution in the source-sink relations of wheat and barley during grain filling – a review.
New Phytologist
123, 233–245.
|
CrossRef |
Sikka VK, Choi SB, Kavakli IH, Sakulsingharoj C, Gupta S, Ito H, Okita TW (2001
)
Subcellular compartmentation and allosteric regulation of the rice endosperm ADPglucose pyrophosphorylase.
Plant Science
161, 461–468.
|
CrossRef |
CAS |
Singletary G, Anderson PC, Coughlan SJ (2001) Patent assigned to Pioneer Hi-Bred International, Inc., Methods of producing high-oil seed by modification of starch levels. US Patent no. 6?232?529 (The United States Patent and Trademark Office: Alexandria, Virginia).
Smidansky ED, Martin JM, Hannah LC, Fischer AM, Giroux MJ (2003
)
Seed yield and plant biomass increases in rice are conferred by deregulation of endosperm ADP-glucose pyrophosphorylase.
Planta
216, 656–664.
Smith AM, Bettey M, Bedford ID (1989
)
Evidence that the
rb locus alters the starch content of developing pea embryos through an effect on AGP glucose pyrophosphorylase.
Plant Physiology
89, 1279–1284.
|
CrossRef |
CAS |
Thorbjørnsen T, Villand P, Denyer K, Olsen OA, Smith AM (1996
)
Distinct isoforms of ADPglucose pyrophosphorylase occur inside and outside the amyloplasts in barley endosperm.
The Plant Journal
10, 243–250.
|
CrossRef |
Tsai CY, Nelson OE (1966
)
Starch-deficient maize mutant lacking adenosine diphosphate glucose pyrophosphorylase activity.
Science
151, 341–343.
|
CrossRef |
CAS |
Watanabe Y, Nakamura Y, Ishii R (1997
)
Relationship between starch accumulation and activities of the related enzymes in the leaf sheath as a temporary sink organ in rice (
Oryza sativa).
Australian Journal of Plant Physiology
24, 563–569.
|
CrossRef |
CAS |
Yang J, Zhang J, Wang Z, Zhu Q (2001
)
Activities of starch hydrolytic enzymes and sucrose-phosphate synthase in the stems of rice subjected to water stress during grain filling.
Journal of Experimental Botany
52, 2169–2179.
Yoshida S (1972
)
Physiological aspects of grain yield.
Annual Review of Plant Physiology
23, 437–464.
|
CrossRef |