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多拷贝组 I 内含子存在于 Botryosphaeria dothidea 的小亚基 rDNA 中:种内遗传多样性的影响因素。

Multiple group I introns in the small-subunit rDNA of Botryosphaeria dothidea: implication for intraspecific genetic diversity.

机构信息

Key Laboratory of Crop Stress Biology in Arid Areas, College of Plant Protection, Northwest A&F University, Yangling, Shaanxi, China.

出版信息

PLoS One. 2013 Jul 2;8(7):e67808. doi: 10.1371/journal.pone.0067808. Print 2013.

Abstract

Botryosphaeria dothidea is a widespread and economically important pathogen on various fruit trees, and it often causes die-back and canker on limbs and fruit rot. In characterizing intraspecies genetic variation within this fungus, group I introns, rich in rDNA of fungi, may provide a productive region for exploration. In this research, we analysed complete small subunit (SSU) ribosomal DNA (rDNA) sequences of 37 B. dothidea strains, and found four insertions, designated Bdo.S943, Bdo.S1199-A, Bdo.S1199-B and Bdo.S1506, at three positions. Sequence analysis and structure prediction revealed that both Bdo.S943 and Bdo.S1506 belonged to subgroup IC1 of group I introns, whereas Bdo.S1199-A and Bdo.S1199-B corresponded to group IE introns. Moreover, Bdo.S1199-A was found to host an open reading frame (ORF) for encoding the homing endonuclease (HE), whereas Bdo.S1199-B, an evolutionary descendant of Bdo.S1199-A, included a degenerate HE. The above four introns were novel, and were the first group I introns observed and characterized in this species. Differential distribution of these introns revealed that all strains could be separated into four genotypes. Genotype III (no intron) and genotype IV (Bdo.S1199-B) were each found in only one strain, whereas genotype I (Bdo.S1199-A) and genotype II (Bdo.S943 and Bdo.S1506) occurred in 95% of the strains. There is a correlation between B. dothidea genotypes and hosts or geographic locations. Thus, these newly discovered group I introns can help to advance understanding of genetic differentiation within B. dothidea.

摘要

层出孔腔菌是一种广泛存在且具有重要经济意义的病原菌,可侵染多种果树,引起枝枯和溃疡、果实腐烂等症状。在对该真菌种内遗传变异进行特征分析时,富含真菌 rDNA 的 I 组内含子可能是一个很有前景的探索区域。本研究对 37 株层出孔腔菌的小亚基核糖体 DNA(SSU rDNA)序列进行了完整分析,在 3 个位置发现了 4 个插入序列,分别命名为 Bdo.S943、Bdo.S1199-A、Bdo.S1199-B 和 Bdo.S1506。序列分析和结构预测表明,Bdo.S943 和 Bdo.S1506 属于 I 组内含子的 IC1 亚组,而 Bdo.S1199-A 和 Bdo.S1199-B 则属于 IE 组内含子。此外,Bdo.S1199-A 上还存在一个开放阅读框(ORF),编码归巢内切酶(HE),而 Bdo.S1199-B 是 Bdo.S1199-A 的进化后裔,包含一个缺失的 HE。以上 4 个内含子均为新发现的内含子,是该菌中首次被观察和描述的 I 组内含子。这些内含子的差异分布表明,所有菌株可被分为 4 种基因型。基因型 III(无内含子)和基因型 IV(Bdo.S1199-B)仅存在于 1 个菌株中,而基因型 I(Bdo.S1199-A)和基因型 II(Bdo.S943 和 Bdo.S1506)则存在于 95%的菌株中。B. dothidea 基因型与宿主或地理位置存在一定相关性。因此,这些新发现的 I 组内含子有助于深入了解层出孔腔菌的遗传分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a09/3699495/91da41551ea8/pone.0067808.g001.jpg

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