摘要
以吉林省20世纪70年代以来的3个不同年代大面积推广的玉米品种为材料,采用遮雨棚土柱栽培试验,研究长期水分亏缺对不同年代玉米品种光合特性及干物质转运的影响。结果表明,与对照相比,水分亏缺使老品种(1970s和1990s)果穗叶净光合速率(Pn)、最大光化学效率(Fv/Fm)降低幅度大于当代品种(2010s)。水分亏缺下,当代玉米品种叶片和茎鞘干物质转运率高于老品种,与对照相比,2010s、1990s和1970s玉米品种叶片和茎鞘干物质平均转运率分别提高了48.9%、47.7%和33.8%。水分亏缺下,玉米花前贮藏同化物转运对子粒产量贡献率随着年代的推进而降低,花后干物质积累量对产量贡献率则随着年代的推进而提高。
In this paper,maize varieties which had been widely popularized since 1970s in Jilin province re⁃leased in three different eras(1970s,1990s and contemporary era)were used as the materials.The effects of long term water deficit on photosynthetic characteristics and dry matter remobilization of maize varieties in different eras were studied by tubular column cultivation experiment with rain shelter.Compared with the control,water deficit re⁃duced the net photosynthetic rate(Pn)and maximum photochemical efficiency(Fv/Fm)of ear leaves of old varieties(1970s and 1990s)more than that of contemporary varieties(2010s).Under long-term water deficit,the dry matter re⁃mobilization rate of leave and stem-sheath of contemporary maize varieties was higher than that of the old ones.Rel⁃ative to the control,the average translocation rate of leaf and stem-sheaths dry matter in 2010s,1990s and 1970s in⁃creased by 48.9%,47.7%and 33.8%,respectively.In addition,under water deficit,the contribution rate of storage assimilates before anthesis to grain yield decreased with the advancement of the era,while the contribution rate of dry matter accumulation to grain after anthesis increased with the development of the era.
作者
曹玉军
路明
都钧
吕艳杰
姚凡云
魏雯雯
刘志铭
王虹霏
刘卓
王永军
CAO Yu-jun;LU Ming;DU Jun;LÜYan-jie;YAO Fan-yun;WEI Wen-wen;LIU Zhi-ming;WANG Hong-fei;LIU Zhuo;WANG Yong-jun(Jilin Academy of Agricultural Sciences,Changchun 130033;Changchun Academy of Agricultural Sciences,Changchun 130112;College of Agriculture,Jilin Agricultural University,Changchun 130124,China)
出处
《玉米科学》
CAS
CSCD
北大核心
2020年第3期119-126,共8页
Journal of Maize Sciences
基金
吉林省农业科技创新工程(CXGC2017ZY015)
国家重点研发计划课题(2016YFD0300103,2017YFD0300603)。
关键词
玉米
不同年代
长期水分亏缺
光合特性
干物质生产
Maize
Different eras
Long-term water deficit
Photosynthetic characteristic
Dry matter produc⁃tion