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首页> 外文期刊>Fungal Genetics and Biology >Karyotype analysis, genome organization, and stable genetic transformation of the root colonizing fungus Piriformospora indica
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Karyotype analysis, genome organization, and stable genetic transformation of the root colonizing fungus Piriformospora indica

机译:根定殖真菌印度梨形孢子的核型分析,基因组组织和稳定的遗传转化

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摘要

Piriformospora indica (Basidiomycota, Sebacinales) is a root colonizing fungus which is able to increase biomass and yield of crop plants and to induce local and systemic resistance to fungal diseases and tolerance to abiotic stress. A prerequisite for the elucidation of the mode of action of this novel kind of symbiosis is knowledge of the genome organization as well as the development of tools to study and modify gene functions. Here we provide data on the karyotype and genetic transformation strategies. The fungus was shown to possess at least six chromosomes and a genome size of about 15.4-24Mb. Sequences of the genes encoding the elongation factor 1- alpha (TEF) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH) were used for genome size estimation through real-time PCR analysis. Chromosomal location investigated by Southern blot and expression analysis suggested that TEF and GAPDH are single-copy genes with strong and constitutive promoters. A genetic transformation system was established using a fragment of the TEF promoter region for construction of vectors carrying the selectable marker hygromycin B phosphotransferase. Results demonstrate that P. indica can be stably transformed by random genomic integration of foreign DNA and that it posses a relative small genome as compared to other members of the Basidiomycota.
机译:印度梨形孢子菌(Basidiomycota,Sebacinales)是一种根部定殖真菌,能够增加作物的生物量和产量,并诱导对真菌疾病的局部和系统抗性以及对非生物胁迫的耐受性。阐明这种新型共生作用方式的先决条件是了解基因组的组织以及研究和修改基因功能的工具的发展。在这里,我们提供有关核型和遗传转化策略的数据。该真菌显示具有至少六个染色体,基因组大小约为15.4-24Mb。编码延伸因子1-α(TEF)和甘油醛-3-磷酸脱氢酶(GAPDH)的基因序列用于通过实时PCR分析估算基因组大小。通过Southern印迹和表达分析研究的染色体位置表明TEF和GAPDH是具有强启动子和组成型启动子的单拷贝基因。使用TEF启动子区域的片段建立了遗传转化系统,用于构建携带选择标记潮霉素B磷酸转移酶的载体。结果表明,印度洋假单胞菌可以通过外源DNA的随机基因组整合而稳定转化,并且与担子菌的其他成员相比,它具有相对较小的基因组。

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