GROWTH PROMOTION OF COWPEAINOCULATED WITH RHIZOBIA AND TRICHODERMA SPP. IN THE CERRADO

被引:0
|
作者
Chagas Junior, Aloisio Freitas [1 ]
de Oliveira, Ariadila Goncalves [2 ]
dos Santos, Gil Rodrigues [1 ]
de Borjas Reis, Andre Froes [3 ]
Borges Chagas, Lillian Franca [2 ]
机构
[1] UFT, Curso Agron, BR-77402970 Gurupi, TO, Brazil
[2] UFT, BR-77402970 Gurupi, TO, Brazil
[3] Escola Super Agr Luis Dequeiroz, BR-13418900 Piracicaba, SP, Brazil
关键词
Vigna unguicula L. (Walp.); Biological nitrogen fixation; Biocontrol; INOCULATION; EFFICIENCY; STRAINS; HARZIANUM; INDUCTION; DIVERSITY; RORAIMA; SOIL;
D O I
暂无
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
The study aimed to examine the response of cowpea Vinegar cultivarwith inoculation of rhizobia and Trichoderma spp. at cerrado environment in Gurupi - TO, in the years of 2011 and 2012. The experiment was conducted under field conditions and experimental design of randomized blocks, corresponding to the treatments: inoculation with rhizobia and Trichoderma spp. in the seed; the seed inoculation with rhizobia and Trichoderma spp. in the soil; the seed inoculation with rhizobia and Trichoderma spp. in the seed and soil; only inoculation with rhizobia; fertilized with nitrogen; and control non-inoculated and non-fertilized with nitrogen. Inoculation was performed with the rhizobia strains INPA 03-11B and UFLA 03-84. For treatments with Trichoderma spp. was used to inoculate commercial Trichoplus JCO powder formulation. The results indicated that the potential for nitrogen fixation of rhizobia strains tested, and the Trichoderma bioprotection was of fundamental importance for biomass, production, nodulation and yield, which may be related with the effective capacity to supply nitrogen and protection against pathogens. Generallythe inoculation with rhizobia and Trichoderma in the seed and soil, provided better results on the variables analyzed for both season, with higher productivity than other treatments
引用
收藏
页码:190 / 199
页数:10
相关论文
共 50 条
  • [31] Induced systemic resistance and promotion of plant growth by Bacillus spp.
    Kloepper, JW
    Ryu, CM
    Zhang, SA
    PHYTOPATHOLOGY, 2004, 94 (11) : 1259 - 1266
  • [32] Ecophysiology and saprophytic ability of Trichoderma spp.
    Lupo, S
    Dupont, J
    Bettucci, L
    CRYPTOGAMIE MYCOLOGIE, 2002, 23 (01) : 71 - 80
  • [33] The Impact of Trichoderma spp. on Agriculture and Their Identification
    Japanis, Feodora Grace
    Vetaryan, Sharmilah
    Raja, Naalven Kumar Kumara
    Mokhtar, Mohd Azinuddin Ahmad
    Fishal, Elya Masya Mohd
    MALAYSIAN APPLIED BIOLOGY, 2023, 51 (06) : 1 - 15
  • [34] Characterisation of the rhodanese enzyme in Trichoderma spp.
    Ezzi, MI
    Pascual, JA
    Gould, BJ
    Lynch, JM
    ENZYME AND MICROBIAL TECHNOLOGY, 2003, 32 (05) : 629 - 634
  • [35] Use of Trichoderma spp. in biodegradation of Carbendazim
    Sharma, Pratibha
    Sharma, Manika
    Raja, M.
    Singh, D. V.
    Srivastava, Mukesh
    INDIAN JOURNAL OF AGRICULTURAL SCIENCES, 2016, 86 (07): : 891 - 894
  • [36] Overview of mechanisms and uses of Trichoderma spp.
    Harman, GE
    PHYTOPATHOLOGY, 2006, 96 (02) : 190 - 194
  • [37] TRICHODERMA SPP. : A BOON FOR FARMING COMMUNITY
    Keswani, Chetan
    Godwin, J.
    Sivaraj, K.
    Singh, Harikesh Bahadur
    EVERYMANS SCIENCE, 2015, 49 (06): : 392 - 394
  • [38] Impact of Herbicides on Strains of Trichoderma spp.
    Reis, M. R.
    Leao, E. U.
    Santos, G. R.
    Sarmento-Brum, R. B. C.
    Goncalves, C. G.
    Cardon, C. H.
    Silva, D. B.
    PLANTA DANINHA, 2013, 31 (02) : 419 - 426
  • [39] Overcoming the autotoxicity of muskmelon by Trichoderma spp.
    Wang, S. N.
    Yang, R. X.
    Liu, X.
    Yao, Y.
    Cheng, Y.
    Gao, Z. G.
    ALLELOPATHY JOURNAL, 2016, 39 (01): : 29 - 42
  • [40] Biocontrol of Rhizoctonia solani with Trichoderma Spp.
    TANG Jiabin MA Bingtian WANG Lingxia LI Ping CHEN Hong Rice Res Inst
    Chinese Rice Research Newsletter, 2001, 9 (04) : 8 - 8