Growth rate and trapping efficacy of nematode-trapping fungi under constant and fluctuating temperatures

被引:0
|
作者
A. S. Fernández
M. Larsen
J. Wolstrup
J. Grønvold
P. Nansen
H. Bjørn
机构
[1] Danish Centre for Experimental Parasitology,
[2] Department of Veterinary Microbiology,undefined
[3] Royal Veterinary and Agricultural University,undefined
[4] Ridebanevej 3,undefined
[5] DK-1870 Frederiksberg C,undefined
[6] Denmark e-mail: asf@kvl.dk,undefined
[7] Tel.: +45-3528-2791,undefined
[8] Fax: +45-3528-2774,undefined
[9] Área de Parasitología y Enfermedades Parasitarias,undefined
[10] Facultad de Ciencias Veterinarias,undefined
[11] Universidad Nacional del Centro de la Provincia de Buenos Aires,undefined
[12] Pje. Arroyo Seco s/n,undefined
[13] 7000 Tandil,undefined
[14] Argentina,undefined
[15] Section of Microbiology,undefined
[16] Department of Ecology and Molecular Biology,undefined
[17] Royal Veterinary and Agricultural University,undefined
[18] Thorvaldsensvej 40,undefined
[19] DK-1871 Frederiksberg C,undefined
[20] Denmark,undefined
[21] Section of Zoology,undefined
[22] Department of Ecology and Molecular Biology,undefined
[23] Royal Veterinary and Agricultural University,undefined
[24] Thorvaldsensvej 40,undefined
[25] DK-1871 Frederiksberg C,undefined
[26] Denmark,undefined
[27] Danish Veterinary Laboratory,undefined
[28] Bülowsvej 27,undefined
[29] DK-1790 Copenhagen V,undefined
[30] Denmark,undefined
来源
Parasitology Research | 1999年 / 85卷
关键词
Agar; Petri Dish; Temperature Regime; High Growth Rate; Fluctuate Temperature;
D O I
暂无
中图分类号
学科分类号
摘要
The effect of temperature on radial growth and predatory activity of different isolates of nematode-trapping fungi was assessed. Four isolates of Duddingtonia flagrans and one isolate of Arthrobotrys oligospora were inoculated on petri dishes containing either corn-meal agar (CMA) or faecal agar and then incubated for 14 days under three different constant and fluctuating temperature regimes. The radial growth was similar on the two substrates at each temperature regime. All fungal isolates showed a higher growth rate at a constant 20 °C. At 10° and 15 °C, all D. flagrans isolates showed very similar patterns of radial growth at both constant and fluctuating temperatures. At 20 °C, they grew significantly faster at constant than at fluctuating temperatures. A. oligospora grew significantly faster than all D. flagrans isolates except when incubated at a fluctuating 20 °C. Spores of each fungal isolate were added to faecal cultures containing eggs of Cooperia oncophora at a concentration of 6250 spores/g faeces. The cultures were incubated for 14 days at the same temperature regimes described above. Control faeces (without fungal material) were also cultured. More larvae were recovered from the fungus-treated cultures incubated at a constant 10° or 15 °C than from those incubated at the respective fluctuating temperatures, except for one D. flagrans isolate. Incubation at 20 °C showed the opposite effect. The general reduction observed in the number of nematode larvae due to fungal trapping was 18–25% and 48–80% for a constant and fluctuating 10 °C, 70–96% and 93–95% for a constant and fluctuating 15 °C, and 63–98% and 0–25% for a constant and fluctuating 20 °C, respectively.
引用
收藏
页码:661 / 668
页数:7
相关论文
共 50 条
  • [1] Growth rate and trapping efficacy of nematode-trapping fungi under constant and fluctuating temperatures
    Fernández, AS
    Larsen, M
    Wolstrup, J
    Gronvold, J
    Nansen, P
    Bjorn, H
    PARASITOLOGY RESEARCH, 1999, 85 (8-9) : 661 - 668
  • [2] Nematode-Trapping Fungi
    Jiang, Xiangzhi
    Xiang, Meichun
    Liu, Xingzhong
    MICROBIOLOGY SPECTRUM, 2017, 5 (01):
  • [3] ULTRASTRUCTURE OF NEMATODE-TRAPPING FUNGI
    HEINTZ, CE
    PRAMER, D
    JOURNAL OF BACTERIOLOGY, 1972, 110 (03) : 1163 - &
  • [4] NEMATODE-TRAPPING FUNGI AS MYCOPATHOGENS
    TZEAN, SS
    ESTEY, RH
    PHYTOPATHOLOGY, 1978, 68 (09) : 1266 - 1270
  • [5] Urea regulates soil nematode population by enhancing the nematode-trapping ability of nematode-trapping fungi
    Zhang, Fa
    Huang, Shuaiyi
    Boonmee, Saranyaphat
    Xiao, Wen
    Yang, Xiaoyan
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [6] Nematode-Trapping Fungi Eavesdrop on Nematode Pheromones
    Hsueh, Yen-Ping
    Mahanti, Parag
    Schroeder, Frank C.
    Sternberg, Paul W.
    CURRENT BIOLOGY, 2013, 23 (01) : 83 - 86
  • [7] Classification of dendrocola nematode-trapping fungi
    Zhang, Haixiao
    Wei, Zhiyan
    Zhang, Jie
    Liu, Xuefeng
    JOURNAL OF FORESTRY RESEARCH, 2021, 32 (03) : 1295 - 1304
  • [8] OCCURRENCE OF NEMATODE-TRAPPING FUNGI IN RHIZOSPHERE
    PETERSON, EA
    KATZNELSON, H
    NATURE, 1964, 204 (496) : 1111 - &
  • [9] Classification of dendrocola nematode-trapping fungi
    Haixiao Zhang
    Zhiyan Wei
    Jie Zhang
    Xuefeng Liu
    Journal of Forestry Research, 2021, 32 (03) : 1295 - 1304
  • [10] NUTRITIONAL STUDIES ON NEMATODE-TRAPPING FUNGI
    SAXENA, G
    DAYAL, R
    MUKERJI, KG
    FOLIA MICROBIOLOGICA, 1989, 34 (01) : 42 - 48