The Genome of Banana Leaf Blight Pathogen Fusarium sacchari str. FS66 Harbors Widespread Gene Transfer From Fusarium oxysporum
文献类型: 外文期刊
第一作者: Cui, Yiping
作者: Cui, Yiping;Peng, Aitian;Song, Xiaobing;Chen, Xia;Wu, Bo
作者机构:
关键词: banana leaf blight; Fusarium sacchari; de novo assembly; comparative genomics; gene transfer
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:5.753; 五年影响因子:6.612 )
ISSN: 1664-462X
年卷期: 2021 年 12 卷
页码:
收录情况: SCI
摘要: Fusarium species have been identified as pathogens causing many different plant diseases, and here we report an emerging banana leaf blight (BLB) caused by F. sacchari (Fs) discovered in Guangdong, China. From the symptomatic tissues collected in the field, a fungal isolate was obtained, which induced similar symptoms on healthy banana seedlings after inoculation. Koch's postulates were fulfilled after the re-isolation of the pathogen. Phylogenetic analysis on two gene segments and the whole genome sequence identified the pathogen belonging to Fs and named as Fs str. FS66. A 45.74 Mb genome of FS66 was acquired through de novo assembly using long-read sequencing data, and its contig N50 (1.97 Mb) is more than 10-fold larger than the previously available genome in the species. Based on transcriptome sequencing and ab initio gene annotation, a total of 14,486 protein-encoding genes and 418 non-coding RNAs were predicted. A total of 48 metabolite biosynthetic gene clusters including the fusaric acid biosynthesis gene cluster were predicted in silico in the FS66 genome. Comparison between FS66 and other 11 Fusarium genomes identified tens to hundreds of genes specifically gained and lost in FS66, including some previously correlated with Fusarium pathogenicity. The FS66 genome also harbors widespread gene transfer on the core chromosomes putatively from F. oxysporum species complex (FOSC), including 30 involved in Fusarium pathogenicity/virulence. This study not only reports the BLB caused by Fs, but also provides important information and clues for further understanding of the genome evolution among pathogenic Fusarium species.
分类号:
- 相关文献
作者其他论文 更多>>
-
Diet restriction in parents shapes the lives of their offspring: a laboratory study using a predatory mite (Acari: Phytoseiidae)
作者:Han, Xiao;Zhang, Keshi;Zhang, Zhi-Qiang;Zhang, Keshi;Zhang, Zhi-Qiang;Chen, Xia
关键词:transgenerational phenotypic plasticity; parental effect; non-genetic inheritance; Phytoseiulus persimilis; life-history traits; diet restriction
-
Rhizosphere metabolic cross-talk from plant-soil-microbe tapping into agricultural sustainability: Current advance and perspectives
作者:Zhuang, Yong;Wang, Hao;Tan, Furong;Wu, Bo;Liu, Linpei;Qin, Han;Yang, ZhiJuan;He, Mingxiong
关键词:Rhizosphere interactions; Root exudates; Microbial metabolites; Biochemical communications; Stress
-
Disease Occurrence and Climatic Factors Jointly Structure Pomelo Leaf Fungal Succession in Disturbed Agricultural Ecosystem
作者:Huang, Feng;Ling, Jinfeng;Song, Xiaobing;Li, Guohua;Liu, Rui
关键词:fungal succession; plant pathogen; temperature; precipitation; citrus
-
First Report of Neofusicoccum parvum Causing Fruit Rot in Psidium guajava in China
作者:Cui, Yiping;Fen, Huang;Bin, Guo;Lin, Jinfeng;Song, Xiaobing
关键词:China; fruit rot; Neofusicoccum parvum; Psidium guajava
-
The fertility tracks of pollen tube in the ovary of Solanum nigrum by three-dimensional reconstruction
作者:Ming, Xing;Chen, Xia;Zhao, Zijian;Li, Jinying;Ma, Hongyu;Li, Chuang;Du, Yingda;Ming, Xing;Du, Yingda
关键词:3D reconstruction; fertility; pollen tube; Solanum nigrum
-
Transcription factor shapes chromosomal conformation and regulates gene expression in bacterial adaptation
作者:Chen, Mao;Wu, Bo;Huang, Yuhuan;Wang, Weiting;Zheng, Yudi;Shabbir, Samina;Liu, Panting;Dai, Yonghua;Xia, Mengli;Hu, Guoquan;He, Mingxiong;Chen, Mao;Huang, Yuhuan;Zheng, Yudi
关键词:
-
De novo assembly of the complete mitochondrial genome of pepino (Solanum muricatum) using PacBio HiFi sequencing: insights into structure, phylogenetic implications, and RNA editing
作者:Li, Ziwei;Guo, Yanbing;Wu, Hongzhi;Jin, Shoulin;Liu, Jiaxun;Liang, Mingtai;Chen, Xia
关键词:Solanum muricatum; HiFi sequencing; Mitochondrial genome; Phylogenetic relationship; RNA editing