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Effects of post-silking water deficit on the leaf photosynthesis and senescence of waxy maize 被引量:3

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摘要 Waxy maize is widely cultivated under rainfed conditions and frequently suffers water shortage during the late growth stage.In this study,a pot trial was conducted to examine the effects of post-silking drought on leaf photosynthesis and senescence and its influence on grain yield.Two waxy maize hybrids,Suyunuo 5(SYN5)and Yunuo 7(YN7),were grown under the control and drought(soil moisture content was 70–80%and 50–60%,respectively)conditions after silking in 2016 and 2017.The decrease in yield was 11.1 and 15.4%for YN7 and SYN5,respectively,owing to the decreased grain weight and number.Post-silking dry matter accumulation was reduced by 27.2%in YN7 and 26.3%in SYN5.The contribution rate of pre-silking photoassimilates transferred to grain yield was increased by 15.6%in YN7 and 10.2%in SYN5,respectively.Post-silking drought increased the malondialdehyde content,but decreased the contents of water,soluble protein,chlorophyll,and carotenoid in the leaves.The weakened activities of enzymes involved in photosynthesis(ribulose-1,5-bisphosphate carboxylase and phosphoenolpyruvate carboxylase)and antioxidant system(catalase,superoxide dismutase and peroxidase)reduced the photosynthetic rate(Pn)and accelerated leaf senescence.The correlation results indicated that reduced Pn and catalase activity and increased malondialdehyde content under drought conditions induced the decrease of post-silking photoassimilates deposition,ultimately resulted in the grain yield loss.
出处 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2020年第9期2216-2228,共13页 农业科学学报(英文版)
基金 This study was supported by the National Key Research and Development Program of China(2016YFD0300109 and 2018YFDO200703) the National Natural Science Foundation of China(31771709) the Jiangsu Agricultural lndustry Technology System of China(JATS[2019]458) the JiangsuAgriculture Science and Technology Innovation Fund,China(Cx[19]3056) and the Priority Academic Program Development of Jiangsu Higher Education Institutions,China.
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  • 1Albert K R,Mikkelsen T N,Michelsen A,Ro-Poulsen H van der Linden L. Interactive effects of drought,elevated CO2 and warming on photosynthetic capacity and photosystem performance in temperate heath plants[J].{H}Journal of Plant Physiology,2011.1550-1561.
  • 2Allen L H,Kakani V G,Vu J C V,Boote K J. Elevated CO2 increases water use efficiency by sustaining photosynthesis of water-limited maize and sorghum[J].{H}Journal of Plant Physiology,2011.1909-1918.
  • 3Cabrera-Bosquet L,Albrizio R,Araus J L,Nogués S. Photosynthetic capacity of field-grown durum wheat under different N availabilities:a comparative study from leaf to canopy[J].{H}Environmental and Experiment Botany,2009.145-152.
  • 4von Caemmerer S,Furbank R. Modeling C4 photosynthesis[A].Academic Press,San Diego,CA,USA,1999.173-211.
  • 5Cerling T E,Harris J M,MacFadden B J,Leakey M G Quade J Eisenmann V Ehleringer J R. Global vegetation change through the Miocene/Pliocene boundary[J].{H}NATURE,1997.153-158.
  • 6Chaves M M,Flexas J,Pinheiro C. Photosynthesis under drought and salt stress:regulation mechanisms from whole plant to cell[J].{H}Annals of Botany,2008.551-560.
  • 7Crous K Y,Walters M B,Ellsworth D S. Elevated CO2 concentration affects leaf photosynthesis-nitrogen relationships in Pinus taeda over nine years in FACE[J].{H}Tree Physiology,2008.607-614.
  • 8Dodd M B,Mackay A D. Effects of contrasting soil fertility on root mass,root growth,root decomposition and soil carbon under a New Zealand perennial ryegrass/white clover pasture[J].{H}Plant and Soil,2011.291-302.
  • 9Driscoll S P,Prins A,Olmos E,Kunert K J Foyer C H. Specification of adaxial and abaxial stomata,epidermal structure and photosynthesis to CO2 enrichment in maize leaves[J].{H}Journal of Experimental Botany,2006.381-390.
  • 10Edwards E J,McCaffery S,Evans J R. Phosphorus availability and elevated CO2 affect biological nitrogen ifxation and nutrient lfuxes in a clover-dominated sward[J].{H}New Phytologist,2006.157-167.

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