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核糖体 DNA 序列差异和组 I 内含子在导致果树 Cytospora 溃疡的 Leucostoma 种 L. cinctum、L. persoonii 和 L. parapersoonii sp. nov. 中。

Ribosomal DNA sequence divergence and group I introns within the Leucostoma species L. cinctum, L. persoonii, and L. parapersoonii sp. nov., ascomycetes that cause Cytospora canker of fruit trees.

机构信息

Department of Plant Pathology, Michigan State University, East Lansing, Michigan 48824-1312.

出版信息

Mycologia. 2002 Nov-Dec;94(6):947-67.

Abstract

Leucostoma species that are the causal agents of Cytospora canker of stone and pome fruit trees were studied in detail. DNA sequence of the internal transcribed spacer regions and the 5.8S of the nuclear ribosomal DNA operon (ITS rDNA) supplied sufficient characters to assess the phylogenetic relationships among species of Leucostoma, Valsa, Valsella, and related anamorphs in Cytospora. Parsimony analysis of the aligned sequence divided Cytospora isolates from fruit trees into clades that generally agreed with the morphological species concepts, and with some of the phenetic groupings (PG 1-6) identified previously by isozyme analysis and cultural characteristics. Phylogenetic analysis inferred that isolates of L. persoonii formed two well-resolved clades distinct from isolates of L. cinctum. Phylogenetic analysis of the ITS rDNA, isozyme analysis, and cultural characteristics supported the inference that L. persoonii groups PG 2 and PG 3 were populations of a new species apparently more genetically different from L. persoonii PG 1 than from isolates representative of L. massariana, L. niveum, L. translucens, and Valsella melastoma. The new species, L. parapersoonii, was described. A diverse collection of isolates of L. cinctum, L. persoonii, and L. parapersoonii were examined for genetic variation using restriction fragment length polymorphism (RFLP) analysis of the ITS rDNA and the five prime end of the large subunit of the rDNA (LSU rDNA). HinfI and HpaII endonucleases were each useful in dividing the Leucostoma isolates into RFLP profiles corresponding to the isozyme phenetic groups, PG 1-6. RFLP analysis was more effective than isozyme analysis in uncovering variation among isolates of L. persoonii PG 1, but less effective within L. cinctum populations. Isolates representative of seven of the L. persoonii formae speciales proposed by G. Défago in 1935 were found to be genetically diverse isolates of PG 1. Two large insertions, 415 and 309 nucleotides long, in the small subunit (SSU) of the nuclear rDNA of L. cinctum were identified as Group 1 introns; intron 1 at position 943 and intron 2 at position 1199. The two introns were found to be consistently present in isolates of L. cinctum PG 4 and PG 5 and absent from L. cinctum PG 6 isolates, despite the similarity of the ITS sequence and teleomorph morphology. Intron 1 was of subgroup 1C1 whereas intron 2 was of an unknown subgroup. RFLP patterns and presence/absence of introns were useful characters for expediting the identification of cultures of Leucostoma isolated from stone and pome fruit cankers. RFLP patterns from 13 endonucleases provided an effective method for selecting an array of diverse PG 1 isolates useful in screening plant germplasm for disease-resistance.

摘要

对引起核果和梨果实 Cytospora 溃疡的 Leucostoma 种进行了详细研究。核核糖体 DNA 操纵子(ITS rDNA)的内部转录间隔区和 5.8S 区的 DNA 序列为评估 Leucostoma、Valsa、Valsella 和 Cytospora 中相关无性型种间的系统发育关系提供了足够的特征。对齐序列的简约分析将来自果树的 Cytospora 分离物分为与形态种概念大体一致的分支,与先前通过同工酶分析和培养特性确定的一些表型群(PG 1-6)一致。系统发育分析推断,L. persoonii 的分离物形成了两个与 L. cinctum 分离物明显不同的分支。ITS rDNA、同工酶分析和培养特性的系统发育分析支持以下推断:L. persoonii PG 2 和 PG 3 是一个新种的群体,其遗传差异明显大于 L. persoonii PG 1,而与代表 L. massariana、L. niveum、L. translucens 和 Valsella melastoma 的分离物相比。描述了这个新种,L. parapersoonii。使用内切酶 HinfI 和 HpaII 对来自 L. cinctum、L. persoonii 和 L. parapersoonii 的分离物的 ITS rDNA 和核糖体 RNA 大亚基 5'末端(LSU rDNA)的 RFLP 分析,对 L. cinctum 和 L. persoonii 的遗传变异进行了检测。这些内切酶都能将 Leucostoma 分离物有效地分为与同工酶表型群 PG 1-6 相对应的 RFLP 图谱。与同工酶分析相比,RFLP 分析在揭示 L. persoonii PG 1 分离物之间的变异方面更有效,但在 L. cinctum 群体内的效果较差。G. Défago 于 1935 年提出的 7 种 L. persoonii 特殊形式的代表分离物被发现是 PG 1 的遗传多样性分离物。在 L. cinctum 的小亚基(SSU)核 rDNA 中发现了两个长 415 和 309 个核苷酸的大插入,被鉴定为第 1 组内含子;第 943 位的内含子 1 和第 1199 位的内含子 2。这两个内含子在 L. cinctum PG 4 和 PG 5 的分离物中始终存在,而在 L. cinctum PG 6 分离物中不存在,尽管 ITS 序列和有性型形态相似。内含子 1 属于亚组 1C1,而内含子 2 属于未知亚组。RFLP 模式和内含子的存在/缺失是加速鉴定核果和梨果实溃疡中分离出的 Leucostoma 培养物的有用特征。来自 13 种内切酶的 RFLP 模式提供了一种有效的方法,可选择一系列不同的 PG 1 分离物,这些分离物可用于筛选植物种质对疾病的抗性。

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