Ebrahim Shokoohi, Candice van Rensburg, Zafar Handoo, Peter Masoko
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引用次数: 0
摘要
在对南非林波波省的植物寄生线虫进行调查期间,发现了两种 Helicotylenchus,即 H. dihystera 和 H. pseudorobustus。这些物种的形态和分子特征与已知物种一致。根据28S rDNA对Helicotylenchus种群进行了系统进化分析,发现本研究中鉴定出的H. dihystera与其他H. dihystera标本属于同一类群,后验概率支持率为1.00。此外,基于 18S rDNA 的 H. pseudorobustus 系统进化分析表明,试验种群与其他 H. pseudorobustus 标本接近,后验概率为 0.97。扫描电子显微镜(SEM)对Helicotylenchus物种的观察还发现,本研究中的两个物种(包括H. pseudorobustus和H. dihystera)的唇盘和尾部外侧区域存在明显差异。冗余分析(RDA)显示,伪尾柱虫与土壤的酸碱度和粘度有关。总之,尽管在识别斜纹夜蛾物种方面存在挑战,但扫描电镜和rDNA标记可被视为正确、准确区分物种的高效工具。
Morphological and molecular characters of two Helicotylenchus species from South Africa and relationship of selected soil parameters with H. pseudorobustus
During a survey of plant-parasitic nematodes in South Africa's Limpopo Province, two species of Helicotylenchus were identified, namely H. dihystera and H. pseudorobustus. The morphological and molecular characteristics of these species were found to be consistent with those of the known species. A phylogenetic analysis of Helicotylenchus populations based on 28S rDNA was conducted, and it was found that the H. dihystera identified in this study belonged to the same group as other H. dihystera specimens with a 1.00 posterior probability support. Moreover, phylogenetic analysis of H. pseudorobustus based on 18S rDNA placed the test population close to other H. pseudorobustus specimens with 0.97 posterior probability. Scanning electron microscopy (SEM) for Helicotylenchus species also revealed noticeable dissimilarities in the labial disc and lateral field of the tail region between the two species from the present study, including H. pseudorobustus, and H. dihystera. The redundancy analysis (RDA) showed that H. pseudorobustus had a correlation with pH and clay of the soil. In conclusion, despite the challenges associated with identifying Helicotylenchus species, SEM and rDNA markers can be considered as highly effective tools to distinguish the species correctly and accurately.
期刊介绍:
Established in 1946, Biologia publishes high-quality research papers in the fields of microbial, plant and animal sciences. Microbial sciences papers span all aspects of Bacteria, Archaea and microbial Eucarya including biochemistry, cellular and molecular biology, genomics, proteomics and bioinformatics. Plant sciences topics include fundamental research in taxonomy, geobotany, genetics and all fields of experimental botany including cellular, whole-plant and community physiology. Zoology coverage includes animal systematics and taxonomy, morphology, ecology and physiology from cellular to molecular level.