Department of Plant Pathology, Agricultural Research Organization, Gilat Research Center, M. P. Negev, Israel.
Phytopathology. 2010 Mar;100(3):271-8. doi: 10.1094/PHYTO-100-3-0271.
Vegetative compatibility of 94 isolates of Colletotrichum coccodes from Australia originating from potato, soil, and a weed (Solanum esuriale) was tested using nitrate-nonutilizing (nit) mutants. Isolates distributed to six vegetative compatibility groups (VCGs), five of them multimember (24.5, 23.4, 13.8, 12.8, and 7.5% distribution) and only one composed of two isolates (2.1%); 15.9% of them were not assigned to any of the VCGs. Aggressiveness of 51 isolates representing all six VCGs was tested by mature green tomato bioassay: isolates assigned to AUS-VCG-4 were the most aggressive and those in AUS-VCG-3 the least (P < 0.05). Isolates from warmer climates and lower latitudes were more aggressive (P < 0.05). In addition, we report for the first time complementations between isolates from Australia (AUS); North America (NA); and Israel, The Netherlands, Scotland, France, Germany (EU/I). Isolates assigned to AUS-VCG-4 anastomosed with isolates assigned to EU/I-VCG-7 and NA-VCG-5 (which also anastomosed with each other). Isolates assigned to EU/I-VCG-6 anastomosed with isolates assigned to NA-VCG-2 and isolates assigned to AUS-VCG-2 anastomosed with isolates assigned to EU/I-VCG-2. The linkage between subpopulations could result from the limited exchange of seed tubers among continents, or could be due to, for instance, gene flow, selection, or a limited number of polymorphic vegetative incompatibility genes.
从澳大利亚的马铃薯、土壤和杂草(Solanum esuriale)中分离出的 94 株胶孢炭疽菌(Colletotrichum coccodes)的营养体亲和性,用硝酸营养缺陷型(nit)突变体进行了测试。分离物分布在六个营养体亲和群(VCG)中,其中五个为多成员(24.5%、23.4%、13.8%、12.8%和 7.5%),只有一个由两个分离物组成(2.1%);15.9%的分离物不属于任何 VCG。通过成熟绿番茄生物测定,对代表六个 VCG 的 51 个分离物的攻击性进行了测试:分配给 AUS-VCG-4 的分离物最具攻击性,而分配给 AUS-VCG-3 的分离物攻击性最低(P < 0.05)。来自温暖气候和低纬度地区的分离物更具攻击性(P < 0.05)。此外,我们首次报道了来自澳大利亚(AUS)、北美(NA)和以色列、荷兰、苏格兰、法国、德国(EU/I)的分离物之间的互补性。分配给 AUS-VCG-4 的分离物与分配给 EU/I-VCG-7 和 NA-VCG-5 的分离物(它们也相互吻合)吻合。分配给 EU/I-VCG-6 的分离物与分配给 NA-VCG-2 的分离物吻合,分配给 AUS-VCG-2 的分离物与分配给 EU/I-VCG-2 的分离物吻合。亚种群之间的联系可能是由于各大陆之间有限的种子块茎交换,也可能是由于基因流、选择或有限数量的多态营养体不亲和基因。