Suppr超能文献

甘蔗黑粉菌的基因组测序为甘蔗黑穗病的致病机制提供了见解。

Genome sequencing of Sporisorium scitamineum provides insights into the pathogenic mechanisms of sugarcane smut.

作者信息

Que Youxiong, Xu Liping, Wu Qibin, Liu Yongfeng, Ling Hui, Liu Yanhong, Zhang Yuye, Guo Jinlong, Su Yachun, Chen Jiebo, Wang Shanshan, Zhang Chengguang

机构信息

Key Laboratory of Sugarcane Biology and Genetic Breeding, Ministry of Agriculture, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

BMC Genomics. 2014 Nov 19;15(1):996. doi: 10.1186/1471-2164-15-996.

Abstract

BACKGROUND

Sugarcane smut can cause losses in cane yield and sugar content that range from 30% to total crop failure. Losses tend to increase with the passage of years. Sporisorium scitamineum is the fungus that causes sugarcane smut. This fungus has the potential to infect all sugarcane species unless a species is resistant to biotrophic fungal pathogens. However, it remains unclear how the fungus breaks through the cell walls of sugarcane and causes the formation of black or gray whip-like structures on the sugarcane plants.

RESULTS

Here, we report the first high-quality genome sequence of S. scitamineum assembled de novo with a contig N50 of 41 kb, a scaffold N50 of 884 kb and genome size 19.8 Mb, containing an estimated 6,636 genes. This phytopathogen can utilize a wide range of carbon and nitrogen sources. A reduced set of genes encoding plant cell wall hydrolytic enzymes leads to its biotrophic lifestyle, in which damage to the host should be minimized. As a bipolar mating fungus, a and b loci are linked and the mating-type locus segregates as a single locus. The S. scitamineum genome has only 6 G protein-coupled receptors (GPCRs) grouped into five classes, which are responsible for transducing extracellular signals into intracellular responses, however, the genome is without any PTH11-like GPCR. There are 192 virulence associated genes in the genome of S. scitamineum, among which 31 expressed in all the stages, which mainly encode for energy metabolism and redox of short-chain compound related enzymes. Sixty-eight candidates for secreted effector proteins (CSEPs) were found in the genome of S. scitamineum, and 32 of them expressed in the different stages of sugarcane infection, which are probably involved in infection and/or triggering defense responses. There are two non-ribosomal peptide synthetase (NRPS) gene clusters that are involved in the generation of ferrichrome and ferrichrome A, while the terpenes gene cluster is composed of three unknown function genes and seven biosynthesis related genes.

CONCLUSIONS

As a destructive pathogen to sugar industry, the S. scitamineum genome will facilitate future research on the genomic basis and the pathogenic mechanisms of sugarcane smut.

摘要

背景

甘蔗黑穗病可导致甘蔗产量和糖分损失,损失幅度从30%到作物绝收不等。随着时间推移,损失往往会增加。甘蔗黑粉菌是引发甘蔗黑穗病的真菌。这种真菌有可能感染所有甘蔗品种,除非某个品种对活体营养型真菌病原体具有抗性。然而,尚不清楚该真菌如何突破甘蔗细胞壁并在甘蔗植株上导致形成黑色或灰色鞭状结构。

结果

在此,我们报告了首个从头组装的高质量甘蔗黑粉菌基因组序列,其重叠群N50为41 kb,支架N50为884 kb,基因组大小为19.8 Mb,估计包含6636个基因。这种植物病原体能够利用多种碳源和氮源。一组编码植物细胞壁水解酶的基因数量减少,导致其活体营养型生活方式,在此生活方式中,对宿主的损害应降至最低。作为一种双极性交配真菌,a和b位点相连,交配型位点作为一个单一位点分离。甘蔗黑粉菌基因组仅有6个G蛋白偶联受体(GPCR),分为五类,负责将细胞外信号转导为细胞内反应,然而,该基因组没有任何类PTH11的GPCR。甘蔗黑粉菌基因组中有192个毒力相关基因,其中31个在所有阶段均表达,主要编码与短链化合物能量代谢和氧化还原相关的酶。在甘蔗黑粉菌基因组中发现了68个分泌效应蛋白候选物(CSEP),其中32个在甘蔗感染的不同阶段表达,可能参与感染和/或触发防御反应。有两个非核糖体肽合成酶(NRPS)基因簇参与铁载体和铁载体A的生成,而萜类基因簇由三个功能未知基因和七个生物合成相关基因组成。

结论

作为对制糖业具有破坏性的病原体,甘蔗黑粉菌基因组将促进未来关于甘蔗黑穗病基因组基础和致病机制的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ecb/4246466/ec32cb0cb722/12864_2014_6669_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验