Effect of glyphosate on the castor plant Ricinus communis L.

被引:8
|
作者
McKeon, Thomas A. [1 ]
Brichta, Jenny [1 ]
机构
[1] USDA ARS, WRRC, 800 Buchanan St, Albany, CA 94710 USA
关键词
Oilseed; Roundup(TM); Genetically modified crops; Herbicide; Castor oil; Invasive plants;
D O I
10.1016/j.bcab.2014.03.002
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The presence of ricin in castor seed has impeded the re-introduction of castor in the US. One concern is the potential of castor to contaminate nearby fields. Since most major crops in the US are resistant to the herbicide glyphosate, we evaluated the susceptibility of castor plants to 0.62% glyphosate, suited to that for corn plants resistant to glyphosate. Younger castor plants were more susceptible to the herbicide, with half of the plants and all the inflorescences dead after one treatment. The 9-week-old castor plants required two spray treatments resulting in significant defoliation with 15% of the plants being necrotic or entirely defoliated. Of 148 inflorescences, 5 bore apparently normal seed pods. However, many seeds in these pods were below normal in mass and oil content. Only 2% germinated vs. > 90% for untreated castor seed. Thus, even on maturing castor plants, glyphosate treatment can be effective in preventing volunteer castor plants.
引用
收藏
页码:397 / 399
页数:3
相关论文
共 50 条
  • [31] Effect of short and randomly oriented Ricinus Communis L (Castor oil) plant on Mechanical Behaviour of Ricinus Communis L/ Epoxy LY556 Composites
    Egala, Rajesh
    Setti, Srinivasu Gangi
    MATERIALS TODAY-PROCEEDINGS, 2018, 5 (02) : 8065 - 8072
  • [32] NATURAL OUTCROSSING IN DWARF-INTERNODE CASTOR RICINUS COMMUNIS L.
    BRIGHAM, RD
    CROP SCIENCE, 1967, 7 (04) : 353 - &
  • [33] Energy flow in castor bean (Ricinus communis L.) production systems
    da Silva, Adilson Nunes
    Romanelli, Thiago Liborio
    Reichardt, Klaus
    SCIENTIA AGRICOLA, 2010, 67 (06): : 737 - 742
  • [34] GENETIC VARIABILITY AND TRAITS ASSOCIATION IN CASTOR BEAN (Ricinus communis L.)
    Goodarzi, Farnaz
    Hassani, Abbas
    Darvishzadeh, Reza
    Maleki, Hamid Hatami
    GENETIKA-BELGRADE, 2015, 47 (01): : 265 - 274
  • [35] Isolation of Cellulolytic Fungi from Waste of Castor (Ricinus communis L.)
    Herculano, Polyanna N.
    Lima, D. M. M.
    Fernandes, M. J. S.
    Neves, R. P.
    Souza-Motta, C. M.
    Porto, A. L. F.
    CURRENT MICROBIOLOGY, 2011, 62 (05) : 1416 - 1422
  • [36] Role of biotechnological interventions in the improvement of castor (Ricinus communis L.) and Jatropha curcas L.
    Sujatha, M.
    Reddy, T. P.
    Mahasi, M. J.
    BIOTECHNOLOGY ADVANCES, 2008, 26 (05) : 424 - 435
  • [37] High-frequency plant regeneration through adventitious shoot formation in castor (Ricinus communis L.)
    Yeh-Jin Ahn
    Louisa Vang
    Thomas A. McKeon
    Grace Q. Chen
    In Vitro Cellular & Developmental Biology - Plant, 2007, 43 : 9 - 15
  • [38] TRANSLOCATION AND METABOLISM OF RICININE IN CASTOR BEAN PLANT, RICINUS-COMMUNIS L
    WALLER, GR
    SKURSKY, L
    PLANT PHYSIOLOGY, 1972, 50 (05) : 622 - &
  • [39] Energy balance for biodiesel production by the castor bean crop (Ricinus communis L.)
    Chechetto, Rodolfo Glauber
    Siqueira, Rubens
    Gamero, Carlos Antonio
    REVISTA CIENCIA AGRONOMICA, 2010, 41 (04): : 546 - 553
  • [40] Physical and Chemical Properties of Selected Sample of Castor Oil, Ricinus communis L.
    Mandal, S.
    KEMIJA U INDUSTRIJI-JOURNAL OF CHEMISTS AND CHEMICAL ENGINEERS, 2023, 72 (3-4): : 187 - 192