Kuninaga S, Natsuaki T, Takeuchi T, Yokosawa R
Department of General Education, Health Sciences University of Hokkaido, Japan.
Curr Genet. 1997 Sep;32(3):237-43. doi: 10.1007/s002940050272.
Sequence analysis of the rDNA region containing the internal transcribed spacer (ITS) regions and the 5.8s rDNA coding sequence was used to evaluate the genetic diversity of 45 isolates within and between anastomosis groups (AGs) in Rhizoctonia solani. The 5.8s rDNA sequence was completely conserved across all the AGs examined, whereas the ITS rDNA sequence was found to be highly variable among isolates. The sequence homology in the ITS regions was above 96% for isolates of the same subgroup, 66-100% for isolates of different subgroups within an AG, and 55-96% for isolates of different AGs. In neighbor-joining trees based on distances derived from ITS-5.8s rDNA sequences, subgroups IA, IB and IC within AG-1 and subgroups HG-I and HG-II within AG-4 were placed on statistically significant branches as assessed by bootstrap analysis. These results suggest that sequence analysis of ITS rDNA regions of R. solani may be a valuable tool for identifying AG subgroups of biological significance.
利用包含内转录间隔区(ITS)区域和5.8s rDNA编码序列的rDNA区域进行序列分析,以评估茄丝核菌中45个分离株在融合群(AGs)内和融合群之间的遗传多样性。在所检测的所有AGs中,5.8s rDNA序列完全保守,而ITS rDNA序列在分离株之间高度可变。同一亚组分离株的ITS区域序列同源性高于96%,同一AG内不同亚组分离株的序列同源性为66 - 100%,不同AG分离株的序列同源性为55 - 96%。在基于ITS - 5.8s rDNA序列距离构建的邻接树中,通过自展分析评估,AG - 1内的IA、IB和IC亚组以及AG - 4内的HG - I和HG - II亚组位于具有统计学意义的分支上。这些结果表明,茄丝核菌ITS rDNA区域的序列分析可能是鉴定具有生物学意义的AG亚组的有价值工具。