Nematode-based soil food web condition in mung bean under semi-arid conditions

被引:1
作者
Leiririo, Julius L. [1 ]
Karuri, Hannah [1 ]
Nyaga, Justine M. [1 ]
机构
[1] Univ Embu, Dept Biol Sci, POB 6-60100, Embu, Kenya
关键词
Metabolic footprints; Indices; Suppressive soil; Vigna radiata; PLANT-PARASITIC NEMATODES; CROP MANAGEMENT; COMMUNITY STRUCTURE; TILLAGE; MAIZE; RESPONSES; AFRICA; IMPACT;
D O I
10.1016/j.jafr.2022.100465
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
In semi-arid regions of Kenya, mung bean plays a significant role as a subsistence and cash crop. Plant-parasitic nematodes that reduce yields are among the biotic constraints affecting the crop. Nematode communities in mung bean monocrop and maize-mung bean intercrop fields in Mbeere South, Embu County, Kenya were assessed. In addition, soil food web indices and metabolic footprints, which can be targeted in enhancement of soil suppressiveness against plant-parasitic nematodes, were also evaluated. Nematode genera from soil samples collected from the monocrop and intercrop fields were identified. The two cropping systems cumulatively had 24 nematode genera belonging to ten functional guilds. Mung bean monocrop had a significantly high number of Scutellonema and Prismatolaimus while the intercrop fields had a greater population of Meloidogyne. There were no significant differences in indices between intercrop and monocrop fields. In both systems, the maturity index of nematodes in cp 2-5 was 2.52 and the channel, basal and enrichment indices were below 50%. Metabolic footprints were similar except the composite footprint which was significantly higher in the maize-mung bean intercrop. Scutellonema and Acrobeles were positively associated with pH while Aphelenchus was positively associated with Carbon. The results of this study can be used in integrated nematode management schemes that enhance the suppressive ability of soil in mung bean cropping systems in both Kenya and other similar regions in Eastern Africa.
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页数:7
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共 66 条
  • [1] Climate change and eastern Africa: a review of impact on major crops
    Adhikari, Umesh
    Nejadhashemi, A. Pouyan
    Woznicki, Sean A.
    [J]. FOOD AND ENERGY SECURITY, 2015, 4 (02): : 110 - 132
  • [2] Ahmed N, 2009, PHYTOPATHOL MEDITERR, V48, P262
  • [3] Anderson J.M., 1993, TROPICAL SOIL BIOL F
  • [4] Distance-based tests for homogeneity of multivariate dispersions
    Anderson, MJ
    [J]. BIOMETRICS, 2006, 62 (01) : 245 - 253
  • [5] Anderson MJ, 2001, AUSTRAL ECOL, V26, P32, DOI 10.1111/j.1442-9993.2001.01070.pp.x
  • [6] Askary TH, 2017, PLANT BIODIVERSITY: MONITORING, ASSESSMENT AND CONSERVATION, P239, DOI 10.1079/9781780646947.0239
  • [7] Organic farming provides improved management of plant parasitic nematodes in maize and bean cropping systems
    Atandi, Janet G.
    Haukeland, Solveig
    Kariuki, George M.
    Coyne, Danny L.
    Karanja, Edward N.
    Musyoka, Martha W.
    Fiaboe, Komi K. M.
    Bautze, David
    Adamtey, Noah
    [J]. AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2017, 247 : 265 - 272
  • [8] Effects of long-term crop management on nematode trophic levels other than plant feeders disappear after 1 year of disruptive soil management
    Berkelmans, R
    Ferris, H
    Tenuta, M
    van Bruggen, AHC
    [J]. APPLIED SOIL ECOLOGY, 2003, 23 (03) : 223 - 235
  • [9] Nematode community structure as a bioindicator in environmental monitoring
    Bongers, T
    Ferris, H
    [J]. TRENDS IN ECOLOGY & EVOLUTION, 1999, 14 (06) : 224 - 228
  • [10] The Maturity Index, the evolution of nematode life history traits, adaptive radiation and cp-scaling
    Bongers, T
    [J]. PLANT AND SOIL, 1999, 212 (01) : 13 - 22