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引用本文的文献

1
Solanum Tuber-bearing Species Resistance Behavior Against Nacobbus aberrans.马铃薯栽培种对畸形根结线虫的抗性表现
J Nematol. 2009 Mar;41(1):5-10.
2
Diagnosis and Molecular Variability of an Argentinean Population of Nacobbus aberrans with Some Observations on Histopathology in Tomato.阿根廷南方根结线虫种群的诊断与分子变异性以及番茄组织病理学的一些观察结果
J Nematol. 2007 Mar;39(1):17-26.

南方根结线虫的遗传变异:一种分类学解析方法。

Genetic Variation in Nacobbus aberrans: An Approach toward Taxonomic Resolution.

作者信息

Ibrahim S K, Baldwin J G, Roberts P A, Hyman B C

出版信息

J Nematol. 1997 Sep;29(3):241-9.

PMID:19274155
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2619799/
Abstract

Biochemical and molecular analyses of genetic variation were evaluated to address the taxonomic status of Nacobbus aberrans. Isolates from Mexico, Peru, and Argentina, cultured on tomato in the greenhouse, were analyzed with respect to isozyme and DNA marker variation. Although acid phosphatase and malate dehydrogenase revealed distinct profiles for each isolate, non-specific esterases revealed possible affinities between the Peruvian isolates and between the isolates from Mexico and Peru. Two of l 0 RAPD primers revealed affinities suggested by esterase profiles. RFLP analysis of the rDNA repeating unit with six restriction enzymes revealed identical cleavage patterns between the Peru isolates and a distinct profile shared by isolates from Mexico and Argentina. Nucleotide sequence analysis of the 5.8S rRNA coding region revealed differences among the four isolates at eight of 157 positions; sequences of the Peruvian isolates differed from each other at only one position, whereas the Mexican and Argentine isolates were identical and could be distinguished from the Peruvian isolates. A distance matrix from unweighted pairwise comparisons of the 5.8S rDNA revealed apparent elevated intraspecific divergence in N. aberrans comparable to intergeneric divergence between Heterodera and Globodera. Analysis of additional N. aberrans isolates from throughout the distribution range should help determine the full extent of intraspecific genetic variation that underlies the phenotypic and morphologic diversity of the genus.

摘要

对遗传变异进行生化和分子分析,以确定畸形半穿刺线虫的分类地位。从墨西哥、秘鲁和阿根廷采集的分离物,在温室中的番茄上培养,针对同工酶和DNA标记变异进行分析。尽管酸性磷酸酶和苹果酸脱氢酶在每个分离物中显示出不同的图谱,但非特异性酯酶显示出秘鲁分离物之间以及墨西哥和秘鲁分离物之间可能存在的亲缘关系。10个随机扩增多态性DNA(RAPD)引物中的两个显示出酯酶图谱所表明的亲缘关系。用六种限制酶对核糖体DNA(rDNA)重复单元进行限制性片段长度多态性(RFLP)分析,结果显示秘鲁分离物之间的切割模式相同,而墨西哥和阿根廷的分离物共有一种独特的图谱。对5.8S核糖体RNA编码区的核苷酸序列分析显示,在157个位置中的8个位置上,四个分离物之间存在差异;秘鲁分离物的序列彼此之间仅在一个位置上不同,而墨西哥和阿根廷的分离物是相同的,并且可以与秘鲁分离物区分开来。从5.8S rDNA的非加权成对比较得出的距离矩阵显示,畸形半穿刺线虫种内明显存在较高的分歧,这与异皮线虫属和球孢线虫属之间的属间分歧相当。对分布范围内更多的畸形半穿刺线虫分离物进行分析,应有助于确定该物种内遗传变异的全部范围,而这种遗传变异是该属表型和形态多样性的基础。