Chatterton N J, Silvius J E. 1979. Photosynthate partitioning into starch in soybean leaves: I. Effects of photoperiod versus photosynthetic period duration. Plant Physiology, 64, 749–753.
Cross J M, von Korff M, Altmann T, Bartzetko L, Sulpice R, Gibon Y, Palacios N, Stitt M. 2006. Variation of enzyme activities and metabolite levels in 24 Arabidopsis accessions growing in carbon-limited conditions. Plant Physiology, 142, 1574–1588.
Czedik-Eysenberg A, Arrivault S, Lohse M A, Feil R, Krohn N, Encke B, Nunes-Nesi A, Fernie A R, Lunn J E, Sulpice R, Stitt M. 2016. The interplay between carbon availability and growth in different zones of the growing maize leaf. Plant Physiology, 172, 943–967.
FAO (Food and Agriculture Organization of the United Nations). 2017. Statistics of production/crops. [2019-07-08]. http://www.fao.org/faostat/zh/#data/QC/visualize
Fernie A R, Tauberger E, Lytovchenko A, Roessner U, Willmitzer L, Trethewey R N. 2002. Antisense repression of cytosolic phosphoglucomutase in potato (Solanum tuberosum) results in severe growth retardation, reduction in tuber number and altered carbon metabolism. Planta, 214, 510–520.
Gibon Y, Bläsing O E, Palacios-Rojas N, Pankovic D, Hendriks J H M, Fisahn J, Höhne M, Günther M, Stitt M. 2004. Adjustment of diurnal starch turnover to short days: depletion of sugar during the night leads to a temporary inhibition of carbohydrate utilization, accumulation of sugars and post-translational activation of ADP-glucose pyrophosphorylase in the following light period. The Plant Journal, 39, 847–862.
Gibon Y, Pyl E T, Sulpice R, Lunn J E, Höhne M, Günther M, Stitt M. 2009. Adjustment of growth, starch turnover, protein content and central metabolism to a decrease of the carbon supply when Arabidopsis is grown in very short photoperiods. Plant, Cell & Environment, 32, 859–874.
Graf A, Schlereth A, Stitt M, Smith A M. 2010. Circadian control of carbohydrate availability for growth in Arabidopsis plants at night. Proceedings of the National Academy of Sciences of the United States of America, 107, 9458–9463.
Hansen J, Møller I B. 1975. Percolation of starch and soluble carbohydrates from plant tissue for quantitative determination with anthrone. Analytical Biochemistry, 68, 87–94.
Henry C, Bledsoe S W, Griffiths C A, Kollman A, Paul M J, Sakr S, Lagrimini L M. 2015. Differential role for trehalose metabolism in salt-stressed maize. Plant Physiology, 169, 1072–1089.
Henry C, Bledsoe S W, Siekman A, Kollman A, Waters B M, Feil R, Stitt M, Lagrimini L M. 2014. The trehalose pathway in maize: Conservation and gene regulation in response to the diurnal cycle and extended darkness. Journal of Experimental Botany, 65, 5959–5973.
Kalt-Torres W, Huber S C. 1987. Diurnal changes in maize leaf photosynthesis: III. leaf elongation rate in relation to carbohydrates and activities of sucrose metabolizing enzymes in elongating leaf tissue. Plant Physiology, 83, 294–298.
Liang X G, Gao Z, Zhang L, Shen S, Zhao X, Liu Y P, Zhou L L, Paul M J, Zhou S L. 2019. Seasonal and diurnal patterns of non-structural carbohydrates in source and sink tissues in field maize. BMC Plant Biology, 19, 508.
Liang X G, Zhang Z L, Zhou L L, Shen S, Gao Z, Zhang L, Lin S, Pan Y Q, Zhou S L. 2018. Localization of maize critical N curve and estimation of NNI by chlorophyll. International Journal of Plant Production, 12, 85–94.
Lichtenthaler H K, Wellburn A R. 1983. Determinations of total carotenoids and chlorophylls a and b of leaf extracts in different solvents. Biochemical Society Transactions, 11, 591–592.
McLaughlin J E, Boyer J S. 2004. Sugar-responsive gene expression, invertase activity, and senescence in aborting maize ovaries at low water potentials. Annals of Botany, 94, 675–689.
Mugford S T, Fernandez O, Brinton J, Flis A, Krohn N, Encke B, Feil R, Sulpice R, Lunn J E, Stitt M, Smith A M. 2014. Regulatory properties of ADP glucose pyrophosphorylase are required for adjustment of leaf starch synthesis in different photoperiods. Plant Physiology, 166, 1733–1747.
Nakamura Y, Yuki K, Park S Y, Ohya T. 1989. Carbohydrate metabolism in the developing endosperm of rice grains. Plant and Cell Physiology, 30, 833–839.
Pilkington S M, Encke B, Krohn N, Höhne M, Stitt M, Pyl E T. 2015. Relationship between starch degradation and carbon demand for maintenance and growth in Arabidopsis thaliana in different irradiance and temperature regimes. Plant, Cell & Environment, 38, 157–171.
Poiré R, Wiese-Klinkenberg A, Parent B, Mielewczik M, Schurr U, Tardieu F, Walter A. 2010. Diel time-courses of leaf growth in monocot and dicot species: Endogenous rhythms and temperature effects. Journal of Experimental Botany, 61, 1751–1759.
Poorter H, Niklas K J, Reich P B, Oleksyn J, Poot P, Mommer L. 2012. Biomass allocation to leaves, stems and roots: Montrol. New Phytologist, 193, 30–50.
Pyl E T, Piques M, Ivakov A, Schulze W, Ishihara H, Stitt M, Sulpice R. 2012. Metabolism and growth in Arabidopsis depend on the daytime temperature but are temperature-compensated against cool nights. The Plant Cell, 24, 2443–2469.
Ruan Y L. 2014. Sucrose metabolism: Gateway to diverse carbon use and sugar signaling. Annual Review of Plant Biology, 65, 33–67.
Sayed O H. 2003. Chlorophyll fluorescence as a tool in cereal crop research. Photosynthetica, 41, 321–330.
Shen S, Li B B, Deng T, Xiao Z D, Chen X M, Hu H, Zhang B C, Wu G, Li F, Zhao X, Liang X G, Mi G H, Zhou S L. 2020. The equilibrium between sugars and ethylene is involved in shading- and drought-induced kernel abortion in maize. Plant Growth Regulation, 91, 101–111.
Shen S, Liang X G, Zhang L, Zhao X, Liu Y P, Lin S, Gao Z, Wang P, Wang Z M, Zhou S L. 2010. Intervening in sibling competition for assimilates by controlled pollination prevents seed abortion under postpollination drought in maize. Plant Cell & Environment, 43, 903–919.
Smith A M, Stitt M. 2007. Coordination of carbon supply and plant growth. Plant, Cell & Environment, 30, 1126–1149.
Stitt M, Zeeman S C. 2012. Starch turnover: Pathways, regulation and role in growth. Current Opinion in Plant Biology, 15, 282–292.
Sulpice R, Flis A, Ivakov A A, Apelt F, Krohn N, Encke B, Abel C, Feil R, Lunn J E, Stitt M. 2014. Arabidopsis coordinates the diurnal regulation of carbon allocation and growth across a wide range of photoperiods. Molecular Plant, 7, 137–155.
Sulpice R, Pyl E T, Ishihara H, Trenkamp S, Steinfath M, Witucka-Wall H, Gibon Y, Usadel B, Poree F, Piques M C, Korff M V, Steinhauser M C, Keurentjes J J B, Guenther M, Hoehne M, Selbig J, Fernie A R, Altmann T, Stitt M. 2009. Starch as a major integrator in the regulation of plant growth. Proceedings of the National Academy of Sciences of the United States of America, 106, 10348–10353.
Wang L, Czedik-Eysenberg A, Mertz R A, Si Q, Tohge T, Nunes-Nesi A, Arrivault S, Dedow L K, Bryant D W, Zhou W, Xu J, Weissmann S, Studer A, Li P, Zhang C, LaRue T, Shao Y, Ding Z, Sun Q, Patel R V, et al. 2014. Comparative analyses of C4 and C3 photosynthesis in developing leaves of maize and rice. Nature Biotechnology, 32, 1158–1165.
Wang Y Y, Tao H B, Tian B J, Sheng D C, Xu C C, Zhou H M, Huang S B, Wang P. 2019. Flowering dynamics, pollen, and pistil contribution to grain yield in response to high temperature during maize flowering. Environmental and Experimental Botany, 158, 80–88.
Wingler A, Delatte T L, O’Hara L E, Primavesi L F, Jhurreea D, Paul M J, Schluepmann H. 2012. Trehalose 6-phosphate is required for the onset of leaf senescence associated with high carbon availability. Plant Physiology, 158, 1241–1251.
Xia S F, Xu J, Su L Y, Yu X J. 1989. Sucrose synthetase in rice leaves. Acta Phytophysiologica Sinica, 15, 239–243. (in Chinese)
Yang P, Guo Y Z, Qiu L. 2018. Effects of ozone-treated domestic sludge on hydroponic lettuce growth and nutrition. Journal of Integrative Agriculture, 17, 593–602.
Zhang L, Li X H, Gao Z, Shen S, Liang X G, Zhao X, Lin S, Zhou S L. 2017. Regulation of maize kernel weight and carbohydrate metabolism by abscisic acid applied at the early and middle post-pollination stages in vitro. Journal of Plant Physiology, 216, 1–10.
|