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Original Articles

Carbon flow in the plant-soil-microbe continuum at different growth stages of maize grown in a Mollisol

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Pages 362-374 | Received 02 Feb 2016, Accepted 07 Jul 2016, Published online: 27 Jul 2016

References

  • Blagodatskaya E, Yuyukina T, Blagodatsky S, Kuzyakov Y. 2011. Turnover of soil organic matter and of microbial biomass under C3-C4 vegetation change: consideration of 13C fractionation and preferential substrate utilization. Soil Biol Biochem. 43:159–166.
  • Brüggemann N, Gessler A, Kayler Z, Keel SG. 2011. Carbon allocation and carbon isotope fluxes in the plant-soil-atmosphere continuum: a review. Biogeosciences. 8:3457–3489.
  • Butler JL, Bottomley PJ, Griffith SM, Myrold DD. 2004. Distribution and turnover of recently fixed photosynthate in ryegrass rhizospheres. Soil Biol Biochem. 36:371–382.
  • Chowdhury S, Farrell M, Bolan NS. 2014. Photoassimilated carbon allocation in a wheat plant-soil system as affected by soil fertility and land-use history. Plant Soil. 383:173–189.
  • Christiaens A, De Keyser E, Pauwels E, De Riek J, Gobin B, van Labeke MC. 2016. Suboptimal light conditions influence source-sink metabolism during flowering. Front Plant Sci. 7:1–11.
  • Dennis PG, Miller AJ, Hirsch PR. 2010. Are root exudates more important than other sources of rhizodeposits in structuring rhizosphere bacterial communities? FEMS Microbiol Ecol. 72:313–327.
  • Domanski G, Kuzyakov Y, Siniakina SV, Stahr K. 2001. Carbon flows in the rhizosphere of ryegrass (Lolium perenne). J Plant Nutrit Soil Sci. 164:381–387.
  • Fischer H, Eckhardt KU, Meyer A, Neumann G, Leinweber P, Fischer K, Kuzyakov Y. 2010. Rhizodeposition of maize: short-term carbon budget and composition. J Plant Nutrit Soil Sci. 173:67–79.
  • Ge TD, Liu C, Yuan HZ, Zhao ZW, Wu XH, Zhu ZK, Brookes P, Wu JS. 2015. Tracking the photosynthesized carbon input into soil organic carbon pools in a rice soil fertilized with nitrogen. Plant Soil. 392:17–25.
  • Gregory PJ, Atwell BJ. 1991. The fate of carbon in pulse-labelled crops of barley and wheat. Plant Soil. 136:205–213.
  • Hansson AC, Andren O, Steen E. 1991. Root production of four arable crops in Sweden and its effect on abundance of soil organisms. In: Atkinson, D, editor. Plant root growth, an ecological perspective. Malden (MA): Blackwell; p. 247–266.
  • Hütsch BW, Augustin J, Merbach W. 2002. Plant rhizodeposition - an important source for carbon turnover in soils. J Plant Nutr Soil Sci. 165:397–407.
  • Jin J, Wang GH, Liu JD, Liu JJ, Yu ZH, Herbert SJ. 2011. Seasonal allocation of photosynthetically fixed carbon to the soybean-grown Mollisols in Northeast China. Crop Pasture Sci. 62:563–570.
  • Jin J, Wang GH, Liu XB, Mi L, Li YH, Xu YX, Herbert SJ. 2010. Genetic improvement of yield shapes the temporal and spatial root morphology of soybean (Glycine max) grown in Northeast China. New Zeal J Crop Hort Sci. 38:177–188.
  • Jin J, Wang GH, Liu JD, Yu ZH, Liu XB, Herbert SJ. 2013. The fate of soyabean photosynthetic carbon varies in Mollisols differing in organic carbon. Eur J Soil Sci. 64:500–507.
  • Kaštovská E, Šantrůčková H. 2007. Fate and dynamics of recently fixed C in pasture plant-soil system under field conditions. Plant Soil. 300:61–69.
  • Kumar R, Pandey S, Pandey A. 2006. Plant roots and carbon sequestration. Curr Sci. 91:885–890.
  • Kuzyakov Y, Domanski G. 2000. Carbon input by plants into the soil. J Plant Nutr Soil Sci. 163:421–431.
  • Kuzyakov Y, Hill PW, Jones DL. 2007. Root exudate components change litter decomposition in a simulated rhizosphere depending on temperature. Plant Soil. 290:293–305.
  • Liu XB, Han XZ, Song CY, Herbert SJ, Xing BS. 2003. Soil organic carbon dynamics in black soils of China under different agricultural management systems. Commun Soil Sci Plan. 34:973–984.
  • Lu YH, Watanabe A, Kimura M. 2002. Input and distribution of photosynthesized carbon in a flooded rice soil. Global Biogeochem Cy. 16:32-1–32-8. Aticle No. 1085.
  • Marx M, Buegger F, Gattinger A, Zsolnay Á, Munch JC. 2007. Determination of the fate of 13C labelled maize and wheat exudates in an agricultural soil during a short-term incubation. Eur J Soil Sci. 58:1175–1185.
  • Meng ECH, Hu R, Shi X, Zhang S. 2006. Maize in China; production systems, constrains, and research priorities. Mexico: International Maize and Wheat Improvement Center (CIMMYT).
  • Meng F, Dungait JJ, Zhang X, He M, Guo Y, Wu W. 2013. Investigation of photosynthate-C allocation 27 days after 13C-pulse labeling of Zea mays L at different growth stages. Plant Soil. 373:755–764.
  • Morgan PB, Bollero G, Nelson R, Dohleman FG, Long SP. 2005. Smaller than predicted increase in aboveground net primary production and yield of field-grown soybean under fully open-air [CO2] elevation. Global Change Biol. 11:1856–1865.
  • Pausch J, Tian J, Riederer M, Kuzyakov Y. 2013. Estimation of rhizodeposition at field scale: upscaling of a 14C labeling study. Plant Soil. 364:273–285.
  • Pommel B, Gallais A, Coque M, Quilleré I, Hirel B, Prioul JL, Andrieu B, Floriot M. 2006. Carbon and nitrogen allocation and grain filling in three maize hybrids differing in leaf senescence. Eur J Agron. 24:203–211.
  • Qiao Y, Miao S, Li N, Han XZ, Zhang B. 2014. Spatial distribution of rhizodeposit carbon of maize (Zea mays L.) in soil aggregates assessed by multiple pulse 13C labeling in the field. Plant Soil. 375:317–329.
  • Slot M, Kitajima K. 2015. Whole-plant respiration and its temperature sensitivity during progressive carbon starvation. Func Plant Biol. 42:579–588.
  • Steel RGD, Torrie JH. 1980. Principles and prosedures of statistics. 2nd ed. New York (NY): McGraw-Hill Book Co.
  • Swinnen J, Van Veen JA, Merckx R. 1994. 14C pulse-labelling of field-grown spring wheat: an evaluation of its use in rhizosphere carbon budget estimations. Soil Biol Biochem. 26:161–170.
  • Theis DE, Jaeggi M, Aeschlimann D, Blum H, Frossard E, Siegwolf RTW. 2007. Dynamics of soil organic matter turnover and soil respired CO2 in a temperate grassland labelled with 13C. Eur J Soil Sci. 58:1364–1372.
  • Tian J, Dippold M, Pausch J, Blagodatskaya FM, Li X, Kuzyakov Y. 2013. Microbial response to rhizodeposition depending on water regimes in paddy soils. Soil Biol Biochem. 65:195–203.
  • Vance ED, Brookes PC, Jenkinson DS. 1987. An extraction method for measuring soil microbial biomass C. Soil Biol Biochem. 19:703–707.
  • Von Lützow M, Kögel-Knabner I, Ekschmitt K, Matzner E, Guggenberger G, Marschner B, Flessa H. 2006. Stabilization of organic matter in temperate soils: mechanisms and their relevance under different soil conditions – a review. Eur J Soil Sci. 57:426–445.
  • Wang Y, Hu C, Dong W, Li X, Zhang Y, Qin S, Oenema O. 2015. Carbon budget of a winter-wheat and summer-maize rotation cropland in the North China Plain. Agr Ecosyst Environ. 206:33–45.
  • Xu XZ, Xu Y, Chen SC, Xu SG, Zhang HW. 2010. Soil loss and conservation in the black soil region of Northeast China: a retrospective study. Environ Sci Policy. 13:793–800.

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