Genetic diversity within Colletotrichum acutatum sensu Simmonds

被引:53
作者
Freeman, S
Minz, D
Maymon, M
Zveibil, A
机构
[1] Agr Res Org, Volcani Ctr, Dept Plant Pathol, IL-50250 Bet Dagan, Israel
[2] Agr Res Org, Volcani Ctr, Inst Soil Water & Environm Sci, IL-50250 Bet Dagan, Israel
关键词
C; gloeosporioides; Glomerella; phylogeny;
D O I
10.1094/PHYTO.2001.91.6.586
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Isolates of Colletotrichum acutatum from several hosts were characterized by various molecular methods in comparison with morphological identification. Species-specific primer analysis was reliable for grouping C. acutatum isolates to their designated species. Arbitrarily primed polymerase chain reaction and A+T-rich DNA analyses identified four subgroups within C. acutatum. Subgroup I contained U.S. isolates from almond, apple, peach, and pecan, subgroup II contained isolates from anemone, olive, and strawberry, subgroup III contained isolates from almond (Israel) and strawberry (Spain), and subgroup IV contained a single isolate from anemone (the Netherlands). Likewise, sequence analysis of the internal transcribed spacer (ITS) 2 region alone or the complete ITS (ITS 1-5.8S-ITS 2) region grouped the isolates into the same four subgroups. Percent similarity of the complete ITS region within each cluster ranged from 99.6 to 100.0, 99.8 to 100.0, and 98.6% among subgroups I, II, and III, respectively. DNA sequence analysis of the ITS 2 region alone or the entire ITS 1-2 region was more informative than that of the ITS 1 region, which could only group the isolates into two main clusters. The molecular methods employed for studying genetic variation in populations of C. acutatum determined that this species is diverse, indicating that isolates within populations of each subgroup are not host specific.
引用
收藏
页码:586 / 592
页数:7
相关论文
共 33 条
[1]   Characterization of Colletotrichum acutatum isolates causing anthracnose of almond and peach in California [J].
Adaskaveg, JE ;
Hartin, RJ .
PHYTOPATHOLOGY, 1997, 87 (09) :979-987
[2]  
Bailey J.A., 1992, COLLETOTRICHUM BIOL
[3]   CHARACTERISTICS OF COLLETOTRICHUM FROM PEACH, APPLE, PECAN, AND OTHER HOSTS [J].
BERNSTEIN, B ;
ZEHR, EI ;
DEAN, RA ;
SHABI, E .
PLANT DISEASE, 1995, 79 (05) :478-482
[4]   Molecular characterization of slow-growing orange and Key lime anthracnose strains of Colletotrichum from citrus as C-acutatum [J].
Brown, AE ;
Sreenivasaprasad, S ;
Timmer, LW .
PHYTOPATHOLOGY, 1996, 86 (05) :523-527
[5]   Molecular characterization of Colletotrichum strains derived from strawberry [J].
Buddie, AG ;
Martínez-Culebras, P ;
Bridge, PD ;
García, MD ;
Querol, A ;
Cannon, PF ;
Monte, E .
MYCOLOGICAL RESEARCH, 1999, 103 :385-394
[6]  
CORRELL JC, 1994, INT MYCOL C 5, P77
[7]  
Förster K, 1999, PHYTOPATHOLOGY, V89, P1056, DOI 10.1094/PHYTO.1999.89.11.1056
[8]   MOLECULAR GENOTYPING OF COLLETOTRICHUM SPECIES BASED ON ARBITRARILY PRIMED PCR, A+T-RICH DNA, AND NUCLEAR-DNA ANALYSES [J].
FREEMAN, S ;
PHAM, M ;
RODRIGUEZ, RJ .
EXPERIMENTAL MYCOLOGY, 1993, 17 (04) :309-322
[9]   Characterization of Colletotrichum species responsible for anthracnose diseases of various fruits [J].
Freeman, S ;
Katan, T ;
Shabi, E .
PLANT DISEASE, 1998, 82 (06) :596-605
[10]   Characterization of Colletotrichum gloeosporioides isolates from avocado and almond fruits with molecular and pathogenicity tests [J].
Freeman, S ;
Katan, T ;
Shabi, E .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1996, 62 (03) :1014-1020