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西班牙中部滑锈伞分离株的分子特征及菌根能力评估以筛选真菌接种剂

Molecular characterization and evaluation of mycorrhizal capacity of Suillus isolates from central Spain for the selection of fungal inoculants.

作者信息

Ruiz-Díez Beatriz, Rincón Ana M, de Felipe María R, Fernández-Pascual Mercedes

机构信息

Departamento de Fisiología y Ecología Vegetal, Instituto de Recursos Naturales, Centro de Ciencias Medioambientales, CSIC, Serrano 115-dpdo, Madrid, 28006, Spain.

出版信息

Mycorrhiza. 2006 Oct;16(7):465-474. doi: 10.1007/s00572-006-0063-8. Epub 2006 Aug 8.

Abstract

Suillus fungal specimens of pine forests from a Mediterranean area of central Spain (Madrid region) were studied based on molecular and physiological analysis of sporocarps to obtain fungal native inocula to produce mycorrhizal Pinus halepensis Miller in nursery. Variation within the internal transcribed spacer (ITS) region of the ribosomal RNA genes of Suillus was examined by restriction fragment length polymorphism (RFLP) and direct sequencing of polymerase chain reaction products. Ribosomal DNA (rDNA) spacers were amplified from pure cultures obtained from fruit bodies of a range of Suillus species: Suillus bellinii (Inzenga) Watling, Suillus bovinus (Pers.) Kuntze, Suillus collinitus (Fr.) Kuntze, Suillus granulatus (L.) Snell, Suillus mediterraneensis (Jacquet. & Blum) Redeuil, Suillus luteus L. (Gray), and Suillus variegatus (Sw.) Kuntze. Interspecific variation in the length and number of restriction sites of the amplified ITS region was observed. This variation was confirmed by sequencing, which allowed us to identify some isolates. This is the first time that the ITS sequence of S. mediterraneensis is completely described. No intraspecific rDNA variation was observed within isolates of S. collinitus, S. mediterraneensis, and S. luteus. The phylogenetic analysis established the close relationship among these Mediterranean fungal species. As a further step to characterize the different isolates and to understand the relation between genetic and functional diversity, some physiological variables were evaluated. Intraspecific variation in axenic fungal growth and in mycorrhizal capacities was detected, especially within S. collinitus isolates. The fungal isolates stimulated the growth of P. halepensis in different rates. These studies indicated that ITS analysis, in conjunction with mycorrhizal tests, provides suitable combined tools for the analysis of Suillus spp. in a small geographic area for selecting isolates with final afforestation purposes.

摘要

基于子实体的分子和生理分析,对西班牙中部地中海地区(马德里地区)的松林滑菇真菌标本进行了研究,以获取真菌原生接种体,用于在苗圃中培育菌根化的阿勒颇松(Pinus halepensis Miller)。通过限制性片段长度多态性(RFLP)和聚合酶链反应产物的直接测序,研究了滑菇核糖体RNA基因内部转录间隔区(ITS)的变异情况。从一系列滑菇物种的子实体获得的纯培养物中扩增核糖体DNA(rDNA)间隔区,这些物种包括:贝氏滑菇(Suillus bellinii (Inzenga) Watling)、乳牛肝菌(Suillus bovinus (Pers.) Kuntze)、黏盖乳牛肝菌(Suillus collinitus (Fr.) Kuntze)、点柄乳牛肝菌(Suillus granulatus (L.) Snell)、地中海滑菇(Suillus mediterraneensis (Jacquet. & Blum) Redeuil)、黄滑菇(Suillus luteus L. (Gray))和杂色滑菇(Suillus variegatus (Sw.) Kuntze)。观察到扩增的ITS区域在限制性位点长度和数量上的种间变异。通过测序证实了这种变异,这使我们能够鉴定出一些分离株。这是首次完整描述地中海滑菇的ITS序列。在黏盖乳牛肝菌、地中海滑菇和黄滑菇的分离株中未观察到种内rDNA变异。系统发育分析确定了这些地中海真菌物种之间的密切关系。作为进一步表征不同分离株并理解遗传多样性与功能多样性之间关系的步骤,评估了一些生理变量。检测到无菌真菌生长和菌根能力的种内变异,尤其是在黏盖乳牛肝菌分离株中。真菌分离株以不同速率刺激阿勒颇松的生长。这些研究表明,ITS分析与菌根测试相结合,为在小地理区域内分析滑菇属物种以选择用于最终造林目的的分离株提供了合适的综合工具。

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