Field Pennycress Production and Weed Control in a Double Crop System with Soybean in Minnesota

被引:68
作者
Johnson, Gregg A. [1 ]
Kantar, Michael B. [1 ]
Betts, Kevin J. [1 ]
Wyse, Donald L. [1 ]
机构
[1] Univ Minnesota, Dept Agron & Plant Genet, St Paul, MN 55108 USA
关键词
THLASPI-ARVENSE L; COVER CROP; CANADIAN WEEDS; MANAGEMENT; CORN; SEED; BIODIESEL; CAMELINA; QUALITY; BIOLOGY;
D O I
10.2134/agronj14.0292
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Sustainable intensification of agricultural systems has been suggested as a way to increase food, fiber, energy, and feed to meet future demands. Field pennycress (Thlaspi arvense L.) is proposed as a means for temporal intensification of agriculture, increasing profitability through oilseed production while providing needed cover to address soil and water quality issues. Field research was conducted across four environments in Minnesota to (i) evaluate pennycress planting date and seeding rate on pennycress and soybean [Glycine max (L.) Merr.] seed production and (ii) determine the role of pennycress systems as a weed management tool. Pennycress seeding rate had a direct effect on pennycress yield at Rosemount but not at Waseca or Lamberton locations. The use of a companion cover crop along with pennycress further reduced pennycress seed yield at Rosemount, but not Waseca or Lamberton suggesting that water availability is a key driver in pennycress productivity. The effect of pennycress and cover crops on soybean yield was also dependent on location. At Rosemount, soybean yield was reduced when pennycress was planted ahead of soybeans both years of the study while there was no effect of pennycress on soybean yield at Waseca. Although soybean yield was reduced at Rosemount, the combined pennycress and soybean seed yield was greater. This research shows the potential for a double cropping system of pennycress-soybean to increase overall seed yield and reduce early-season weed pressure.
引用
收藏
页码:532 / 540
页数:9
相关论文
共 29 条
  • [1] Anderson C., 1965, Soil Horizons, V6, P15
  • [2] BIOLOGY OF CANADIAN WEEDS .9. THLASPI-ARVENSE L
    BEST, KF
    MCINTYRE, GI
    [J]. CANADIAN JOURNAL OF PLANT SCIENCE, 1975, 55 (01) : 279 - 292
  • [3] Producing Stable Pyrolysis Liquids from the Oil-Seed Presscakes of Mustard Family Plants: Pennycress (Thlaspi arvense L.) and Camelina (Camelina sativa)
    Boateng, A. A.
    Mullen, C. A.
    Goldberg, N. M.
    [J]. ENERGY & FUELS, 2010, 24 (12) : 6624 - 6632
  • [4] Seed longevity of 41 weed species buried 17 years in eastern and western Nebraska
    Burnside, OC
    Wilson, RG
    Weisberg, S
    Hubbard, KG
    [J]. WEED SCIENCE, 1996, 44 (01) : 74 - 86
  • [5] Effects of a grass-selective herbicide in a vetch-rye cover crop system on corn grain yield and soil moisture
    Clark, A. J.
    Meisinger, J. J.
    Decker, A. M.
    Mulford, F. R.
    [J]. AGRONOMY JOURNAL, 2007, 99 (01) : 43 - 48
  • [6] Weed seedbank and community shifts in a long-term cropping systems experiment
    Davis, AS
    Renner, KA
    Gross, KL
    [J]. WEED SCIENCE, 2005, 53 (03) : 296 - 306
  • [7] De novo assembly of the pennycress (Thlaspi arvense) transcriptome provides tools for the development of a winter cover crop and biodiesel feedstock
    Dorn, Kevin M.
    Fankhauser, Johnathon D.
    Wyse, Donald L.
    Marks, M. David
    [J]. PLANT JOURNAL, 2013, 75 (06) : 1028 - 1038
  • [8] Double-cropping with winter camelina in the northern Corn Belt to produce fuel and food
    Gesch, R. W.
    Archer, D. W.
    [J]. INDUSTRIAL CROPS AND PRODUCTS, 2013, 44 : 718 - 725
  • [9] Adaptive Responses of Field-Grown Common Lambsquarters (Chenopodium album) to Variable Light Quality and Quantity Environments
    Gramig, Greta G.
    Stoltenberg, David E.
    [J]. WEED SCIENCE, 2009, 57 (03) : 271 - 280
  • [10] Managing a second-generation crop portfolio through sustainable intensification: Examples from the USA and the EU
    Heaton, Emily A.
    Schulte, Lisa A.
    Berti, Marisol
    Langeveld, Hans
    Zegada-Lizarazu, Walter
    Parrish, David
    Monti, Andrea
    [J]. BIOFUELS BIOPRODUCTS & BIOREFINING-BIOFPR, 2013, 7 (06): : 702 - 714