The density-dependent effect of initial nematode population levels on the efficacy of Trichoderma as a bio-nematicide against Meloidogyne hapla on tomato

被引:11
作者
Braithwaite, Mark [1 ,2 ]
Clouston, Annabel [1 ]
Minchin, Rhys [1 ]
Yardley, Jessica [1 ]
Nieto-Jacobo, Maria Fernanda [1 ]
Mendoza-Mendoza, Artemio [1 ]
Steyaert, Johanna [1 ]
Hill, Robert [1 ]
Marshall, John [1 ]
Stewart, Alison [1 ,3 ]
机构
[1] Lincoln Univ, Bioprotect Res Ctr, Lincoln, New Zealand
[2] Plant Diagnost Ltd, 185 Kirk Rd, Christchurch 7678, New Zealand
[3] Scion, 49 Sala St, Rotorua 3010, New Zealand
关键词
Root knot nematode; Galling; Bioactivity; Parasitism; ROOT-KNOT NEMATODE; BIOLOGICAL-CONTROL; !text type='JAVA']JAVA[!/text]NICA; MECHANISMS; INCOGNITA; YIELD;
D O I
10.1007/s13313-016-0432-5
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Trichoderma strains were tested for their ability to reduce the severity of root-knot nematode (RKN), Meloidogyne hapla galling on tomato roots. In initial glasshouse trials, under low levels of RKN infestation (1.1 eggs mL soil(-1)), Trichoderma strains applied as a conidial suspension reduced RKN-induced root galling by 42-88 %. When the nematode infestation level was increased (6.2 eggs mL soil(-1)), these isolates were only able to suppress galling by 21-32 %. At the highest infestation rate trialled (30 eggs mL soil(-1)), Trichoderma strains were unable to suppress galling. The chemical control oxamyl (VydateA (R)) (only evaluated at the highest infestation rate) was 98 % effective. The Trichoderma strains were not effective against RKN when treatments of both organisms were applied pre-planting. However, Trichoderma strains were able to reduce symptoms of RKN galling when applied either at seeding prior to nematode inoculation or post seedling emergence together with the RKN inoculation. These results demonstrate that selected Trichoderma strains have biocontrol potential against RKN at low-medium infestation but fail when the infestation level is rated high.
引用
收藏
页码:473 / 479
页数:7
相关论文
共 31 条
[1]   Biocontrol potential of native Trichoderma isolates against root-knot nematodes in West African vegetable production systems [J].
Affokpon, Antoine ;
Coyne, Danny L. ;
Htay, Cho Cho ;
Agbede, Rufin Dossou ;
Lawouin, Louis ;
Coosemans, Jozef .
SOIL BIOLOGY & BIOCHEMISTRY, 2011, 43 (03) :600-608
[2]  
[Anonymous], 2013, GenStat for Windows, V16th
[3]   Developing sustainable systems for nematode management [J].
Barker, KR ;
Koenning, SR .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 1998, 36 :165-205
[4]  
BARKER KR, 1976, J NEMATOL, V8, P232
[5]   ESTIMATION OF ROOT-KNOT NEMATODE INFESTATION LEVELS ON ROOTS USING A RATING CHART [J].
BRIDGE, J ;
PAGE, SLJ .
TROPICAL PEST MANAGEMENT, 1980, 26 (03) :296-298
[6]  
Brodie BB, 1993, PLANT PARASIT NEMAT, P648
[7]  
Dababat AFA, 2007, JORDAN J AGR SCI, V3, P297
[8]  
Dodd-Wilson SL, 2006, BIOCH MOL CHARACTERI
[9]   Commercialization and implementation of biocontrol [J].
Fravel, DR .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 2005, 43 :337-359
[10]   Production of Conidial Biomass of Trichoderma harzianum for Biological Control [J].
Harman, G. E. ;
Jin, X. ;
Stasz, T. E. ;
Peruzzotti, G. ;
Leopold, A. C. ;
Taylor, A. G. .
BIOLOGICAL CONTROL, 1991, 1 (01) :23-28