Nitrogen and carbon transformations, water use efficiency and ecosystem productivity in monocultures and wheat-bean intercropping systems

被引:52
作者
Chapagain, Tejendra [1 ]
Riseman, Andrew [1 ]
机构
[1] Univ British Columbia, Fac Land & Food Syst, Vancouver, BC V6T 1Z4, Canada
关键词
Intercropping; N-transfer; Net ecosystem CO2 exchange; Ecosystem respiration; Gross ecosystem photosynthesis; Net ecosystem productivity; SOIL CO2; FIXATION; ISOTOPE; PEA; DYNAMICS; GROWTH; MAIZE; N2O;
D O I
10.1007/s10705-014-9647-4
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Enhancing soil organic carbon (SOC), nitrogen (N) and water use efficiency (WUE) are significant challenges in intensive wheat production. An intercropping system combining wheat and grain legumes may help maintain SOC, soil mineral N and WUE while also providing an opportunity to sequester carbon (C) in low input organic systems. We grew wheat (Triticum aestivum cv. 'Scarlet') as a monoculture and intercropped with either common bean (Phaseolus vulgaris cv. 'Red Kidney', or cv. 'Black Turtle'), or fava bean (Vicia faba cv. 'Bell') in rows of 1:1, 2 wheat: 1 bean or broadcast arrangement without fertilizers for 2 years to assess the effects of genotype and spatial arrangement on biological nitrogen fixation and seasonal transfer, WUE, gross ecosystem photosynthesis (GEP), and net ecosystem productivity (NEP). Stable isotope methods (C-13 and N-15 natural abundance) were used to quantify C and N within the plant and soil system. Field CO2 exchange measurements used a dynamic closed transparent chamber connected to a portable CO2 analyzer. Intercropped plots had higher percent N derived from symbiotic N-2 fixation, and increased C and N accumulation compared to monocultured wheat. The fava bean cv. Bell intercrops showed increased nodulation (60-80 % more nodules) and percent N derived from symbiotic N-2 fixation (10-12 % higher) compared to common beans resulting in the fixation of 74 kg N ha(-1) biologically from the 1:1 arrangement. The highest rate of N-transfer (13 %) was observed in the wheat-fava bean cv. Bell combination when planted in the 1:1 arrangement. All intercrops accumulated more N in shoot biomass compared to monoculture wheat with wheat-fava bean cv. Bell (1:1 arrangement) accumulating the highest N (34 kg N ha(-1), i.e., 176 % higher) and C (214 g C m(-2) year(-1), i.e., 26 % higher). All plots fixed the most CO2 (i.e., greatest GEP) during mid-growth stage (50 days after seeding i.e., prior to flowering) however, wheat-fava bean cv. Bell in the 1:1 arrangement displayed the greatest NEP sequestering C at the seasonal daytime average rate of 208 mg C m(-2) h(-1) (i.e., 7 % higher than wheat monoculture plots). Intrinsic WUE of wheat, as indicated by delta C-13, was also improved when grown with fava bean cv. Bell or common bean cv. Red Kidney. This study demonstrated that intercropping wheat and fava bean is an effective strategy to achieve greater nitrogen fixation and transfer to the wheat counterparts, higher WUE, and ecosystem productivity than wheat monocultures in areas with low soil N and C. Furthermore, the wheat-fava bean cv. Bell (1:1 arrangement) was more productive than either the 2:1 or mixed planting arrangements.
引用
收藏
页码:107 / 121
页数:15
相关论文
共 46 条
  • [1] Rising atmospheric CO2 and carbon sequestration in forests
    Beedlow, PA
    Tingey, DT
    Phillips, DL
    Hogsett, WE
    Olszyk, DM
    [J]. FRONTIERS IN ECOLOGY AND THE ENVIRONMENT, 2004, 2 (06) : 315 - 322
  • [2] Effects of plant density on intercropped wheat and field beans in an organic farming system
    Bulson, HAJ
    Snaydon, RW
    Stopes, CE
    [J]. JOURNAL OF AGRICULTURAL SCIENCE, 1997, 128 (01) : 59 - 71
  • [3] Managing nitrogen for sustainable crop production
    Campbell, CA
    Myers, RJK
    Curtin, D
    [J]. FERTILIZER RESEARCH, 1995, 42 (1-3): : 277 - 296
  • [4] Chapagain T., 2012, American Journal of Plant Sciences, V3, P655, DOI 10.4236/ajps.2012.35080
  • [5] Chapagain T., 2014, THESIS U BRIT COLUMB THESIS U BRIT COLUMB
  • [6] Intercropping Wheat and Beans: Effects on Agronomic Performance and Land Productivity
    Chapagain, Tejendra
    Riseman, Andrew
    [J]. CROP SCIENCE, 2014, 54 (05) : 2285 - 2293
  • [7] Barley-pea intercropping: Effects on land productivity, carbon and nitrogen transformations
    Chapagain, Tejendra
    Riseman, Andrew
    [J]. FIELD CROPS RESEARCH, 2014, 166 : 18 - 25
  • [8] CARBON ISOTOPE DISCRIMINATION IS POSITIVELY CORRELATED WITH GRAIN-YIELD AND DRY-MATTER PRODUCTION IN FIELD-GROWN WHEAT
    CONDON, AG
    RICHARDS, RA
    FARQUHAR, GD
    [J]. CROP SCIENCE, 1987, 27 (05) : 996 - 1001
  • [9] Breeding for high water-use efficiency
    Condon, AG
    Richards, RA
    Rebetzke, GJ
    Farquhar, GD
    [J]. JOURNAL OF EXPERIMENTAL BOTANY, 2004, 55 (407) : 2447 - 2460
  • [10] Improving intrinsic water-use efficiency and crop yield
    Condon, AG
    Richards, RA
    Rebetzke, GJ
    Farquhar, GD
    [J]. CROP SCIENCE, 2002, 42 (01) : 122 - 131