Identification of symbiosis-regulated genes in Eucalyptus globulus-Pisolithus tinctorius ectomycorrhiza by differential hybridization of arrayed cDNAs.

C. Voiblet, S. Duplessis, Nathalie Encelot, Francis Martin
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引用次数: 182

Abstract

Ectomycorrhiza development alters gene expression in the fungal and plant symbionts. The identification of a large number of genes expressed exclusively or predominantly in the symbiosis will contribute greatly to the understanding of the development of the ectomycorrhizal symbiosis. We have constructed a cDNA library of 4-day-old Eucalyptus globulus-Pisolithus tinctorius ectomycorrhiza and sequenced 850 cDNAs cloned randomly or obtained through suppression subtractive hybridization (SSH). Based on the absence of a database match, 43% of the ectomycorrhiza ESTs are coding for novel genes. At the developmental stage analysed (fungal sheath formation), the majority of the identified sequences represented 'housekeeping' proteins, i.e. proteins involved in gene/protein expression, cell-wall proteins, metabolic enzymes, and components of signalling systems. We screened arrayed cDNAs to identify symbiosis-regulated genes by using differential hybridization. Comparisons of signals from free-living partners and symbiotic tissues revealed significant differences in expression levels (differential expression ratio >2.5) for 17% of the genes analysed. No ectomycorrhiza-specific gene was detected. The results successfully demonstrate the use of the cDNA array and SSH systems as general approaches for dissecting symbiosis development, and provide the first global picture of the cellular functions operating in ectomycorrhiza.
利用阵列cdna的差异杂交鉴定蓝桉-灰桉外生菌根共生调控基因。
外生菌根的发育改变了真菌和植物共生体中的基因表达。大量在共生中独占或主导表达的基因的鉴定将对了解外生菌根共生的发育有很大的帮助。构建了4日龄桉树globulus-Pisolithus tinctorius外生菌根cDNA文库,并对850个随机克隆或通过抑制消减杂交(suppression - subtive hybridization, SSH)获得的cDNA进行了测序。基于缺乏数据库匹配,43%的外生菌根est编码新基因。在分析的发育阶段(真菌鞘形成),大多数鉴定的序列代表“管家”蛋白质,即参与基因/蛋白质表达的蛋白质,细胞壁蛋白,代谢酶和信号系统成分。我们筛选了阵列的cdna,通过差分杂交鉴定共生调节基因。对来自自由生活伴侣和共生组织的信号进行比较,发现17%的基因在表达水平上存在显著差异(差异表达比>2.5)。未检测到外生菌根特异性基因。结果成功地证明了cDNA阵列和SSH系统作为解剖共生发展的一般方法的使用,并提供了在外生菌根中运作的细胞功能的第一个全局图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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