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水稻病原菌稻黄单胞菌稻致病变种PXO99A的基因组序列及快速进化

Genome sequence and rapid evolution of the rice pathogen Xanthomonas oryzae pv. oryzae PXO99A.

作者信息

Salzberg Steven L, Sommer Daniel D, Schatz Michael C, Phillippy Adam M, Rabinowicz Pablo D, Tsuge Seiji, Furutani Ayako, Ochiai Hirokazu, Delcher Arthur L, Kelley David, Madupu Ramana, Puiu Daniela, Radune Diana, Shumway Martin, Trapnell Cole, Aparna Gudlur, Jha Gopaljee, Pandey Alok, Patil Prabhu B, Ishihara Hiromichi, Meyer Damien F, Szurek Boris, Verdier Valerie, Koebnik Ralf, Dow J Maxwell, Ryan Robert P, Hirata Hisae, Tsuyumu Shinji, Won Lee Sang, Seo Young-Su, Sriariyanum Malinee, Ronald Pamela C, Sonti Ramesh V, Van Sluys Marie-Anne, Leach Jan E, White Frank F, Bogdanove Adam J

机构信息

Center for Bioinformatics and Computational Biology, University of Maryland, College Park, MD 20742, USA.

出版信息

BMC Genomics. 2008 May 1;9:204. doi: 10.1186/1471-2164-9-204.

Abstract

BACKGROUND

Xanthomonas oryzae pv. oryzae causes bacterial blight of rice (Oryza sativa L.), a major disease that constrains production of this staple crop in many parts of the world. We report here on the complete genome sequence of strain PXO99A and its comparison to two previously sequenced strains, KACC10331 and MAFF311018, which are highly similar to one another.

RESULTS

The PXO99A genome is a single circular chromosome of 5,240,075 bp, considerably longer than the genomes of the other strains (4,941,439 bp and 4,940,217 bp, respectively), and it contains 5083 protein-coding genes, including 87 not found in KACC10331 or MAFF311018. PXO99A contains a greater number of virulence-associated transcription activator-like effector genes and has at least ten major chromosomal rearrangements relative to KACC10331 and MAFF311018. PXO99A contains numerous copies of diverse insertion sequence elements, members of which are associated with 7 out of 10 of the major rearrangements. A rapidly-evolving CRISPR (clustered regularly interspersed short palindromic repeats) region contains evidence of dozens of phage infections unique to the PXO99A lineage. PXO99A also contains a unique, near-perfect tandem repeat of 212 kilobases close to the replication terminus.

CONCLUSION

Our results provide striking evidence of genome plasticity and rapid evolution within Xanthomonas oryzae pv. oryzae. The comparisons point to sources of genomic variation and candidates for strain-specific adaptations of this pathogen that help to explain the extraordinary diversity of Xanthomonas oryzae pv. oryzae genotypes and races that have been isolated from around the world.

摘要

背景

水稻白叶枯病菌引起水稻细菌性条斑病,这是一种在世界许多地区限制这种主要作物产量的重要病害。我们在此报告菌株PXO99A的完整基因组序列,并将其与另外两个先前测序的菌株KACC10331和MAFF311018进行比较,这两个菌株彼此高度相似。

结果

PXO99A基因组是一个5,240,075 bp的单环状染色体,比其他菌株的基因组(分别为4,941,439 bp和4,940,217 bp)长得多,它包含5083个蛋白质编码基因,其中87个在KACC10331或MAFF311018中未发现。相对于KACC10331和MAFF311018,PXO99A含有更多与毒力相关的转录激活样效应子基因,并且至少有十个主要染色体重排。PXO99A包含多种插入序列元件的多个拷贝,其中一些元件与十分之七的主要重排相关。一个快速进化的CRISPR(成簇规律间隔短回文重复序列)区域包含了PXO99A谱系特有的数十次噬菌体感染的证据。PXO99A还在复制终点附近包含一个独特的、近乎完美的212千碱基串联重复序列。

结论

我们的结果为水稻白叶枯病菌内基因组可塑性和快速进化提供了显著证据。这些比较指出了基因组变异的来源以及该病原体菌株特异性适应的候选因素,有助于解释从世界各地分离出的水稻白叶枯病菌基因型和小种的非凡多样性。

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