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决定对豌豆致病性的基因聚集在真菌植物病原体血座壳菌的一条超数染色体上。

Genes determining pathogenicity to pea are clustered on a supernumerary chromosome in the fungal plant pathogen Nectria haematococca.

作者信息

Han Y, Liu X, Benny U, Kistler H C, VanEtten H D

机构信息

Graduate Program in Plant Molecular and Cellular Biology, Plant Pathology Department, University of Florida, Gainesville, FL 32611-0680, USA.

出版信息

Plant J. 2001 Feb;25(3):305-14. doi: 10.1046/j.1365-313x.2001.00969.x.

Abstract

Three genes that contribute to the ability of the fungus Nectria haematococca to cause disease on pea plants have been identified. These pea pathogenicity (PEP) genes are within 25 kb of each other and are located on a supernumerary chromosome. Altogether, the PEP gene cluster contains six transcriptional units that are expressed during infection of pea tissue. The biochemical function of only one of the genes is known with certainty. This gene, PDA1, encodes a specific cytochrome P450 that confers resistance to pisatin, an antibiotic produced by pea plants. The three new PEP genes, in addition to PDA1, can independently increase the ability of the fungus to cause lesions on pea when added to an isolate lacking the supernumerary chromosome. Based on predicted amino acid sequences, functions for two of these three genes are hypothesized. The deduced amino acid sequence of another transcribed portion of the PEP cluster, as well as four other open reading frames in the cluster, have a high degree of similarity to known fungal transposases. Several of the features of the PEP cluster -- a cluster of pathogenicity genes, the presence of transposable elements, and differences in codon usage and GC content from other portions of the genome -- are shared by pathogenicity islands in pathogenic bacteria of plants and animals.

摘要

已鉴定出三个有助于真菌血座壳菌在豌豆植株上致病的基因。这些豌豆致病性(PEP)基因彼此相距25 kb以内,位于一条额外染色体上。总体而言,PEP基因簇包含六个转录单元,它们在感染豌豆组织期间表达。其中只有一个基因的生化功能已确定。该基因PDA1编码一种特定的细胞色素P450,赋予对豌豆素(豌豆植株产生的一种抗生素)的抗性。除PDA1外,这三个新的PEP基因添加到缺乏额外染色体的分离株中时,可独立增强真菌在豌豆上引起病斑的能力。根据预测的氨基酸序列,推测了这三个基因中两个基因的功能。PEP基因簇另一个转录部分的推导氨基酸序列,以及该基因簇中的其他四个开放阅读框,与已知的真菌转座酶具有高度相似性。PEP基因簇的几个特征——致病性基因簇、转座元件的存在以及密码子使用和GC含量与基因组其他部分的差异——在动植物致病细菌的致病岛中也有。

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