The complete mitochondrial genome of the nematophagous fungus Lecanicillium saksenae
文献类型: 外文期刊
第一作者: Xin, Bei
作者: Xin, Bei;Lin, Runmao;Cheng, Xinyue;Xin, Bei;Lin, Runmao;Shen, Baoming;Mao, Zhenchuan;Xie, Bingyan;Shen, Baoming;Mao, Zhenchuan;Xie, Bingyan;Mao, Zhenchuan;Xie, Bingyan
作者机构:
关键词: Fungi; Lecanicillium saksenae; mitogenome
期刊名称:MITOCHONDRIAL DNA PART A ( 影响因子:1.514; 五年影响因子:0.707 )
ISSN: 2470-1394
年卷期: 2017 年 28 卷 1-2 期
页码:
收录情况: SCI
摘要: Lecanicillium saksenae CGMCC5329 is a useful biological control agent against plant-parasitic nematodes. The complete mitogenome sequence of L. saksenae is reported for the first time. The mitochondria! genome is 25 919 bp long with 14 typical protein-coding genes, an intronic ORF coding for a putative ribosomal protein (rps3), 2 ribosomal RNA genes and a set of 26 transfer RNA genes. The phylogeny based on 12 protein-coding genes (except the loss of other two genes in Acremonium implicatum) suggests the close phylogenetic relationship between L saksenae and L. muscarium. Comparative analysis reveals that mitogenome of L saksenae is 1420 by larger than L. muscarium, mainly due to the intergenic region between cox2 and trnR. The trnC between cob and cox/is conserved in the mitogenomes of three nematophagous fungus of Pochonia chlamydosporia, A. implicatum and L. saksenae, but absent in L. muscarium. This study may provide valuable information for further research on mitochondria! evolution of nematophagous fungus and Lecanicillium species.
分类号:
- 相关文献
作者其他论文 更多>>
-
Characterization of a methyltransferase for iterative N-methylation at the leucinostatin termini in Purpureocillium lilacinum
作者:Li, Zixin;Jiao, Yang;Ling, Jian;Zhao, Jianlong;Yang, Yuhong;Mao, Zhenchuan;Xie, Bingyan;Li, Yan;Li, Zixin;Zhou, Kaixiang;Wang, Wenzhao
关键词:
-
NRPS-like ATRR in Plant-Parasitic Nematodes Involved in Glycine Betaine Metabolism to Promote Parasitism
作者:Zhang, Hongxia;Li, Yanlin;Zhang, Hongxia;Li, Yanlin;Ling, Jian;Zhao, Jianlong;Li, Yan;Mao, Zhenchuan;Xie, Bingyan;Cheng, Xinyue
关键词:plant-parasitic nematode; Meloidogyne incognita; NRPS-like ATRR; glycine betaine reductase; host-derived RNA interference; plant-nematode interaction
-
Characterization and evaluation of the morphological attributes of Ethiopian mustard (Brassica carinata A. Braun) landraces
作者:Abraha, Rahiel Hagos;Liang, Jianli;Wu, Jian;Lin, Runmao;Wang, Xiaowu;Abraha, Rahiel Hagos;Shaibu, Abdulwahab S.
关键词:Characterization; Ethiopian mustard; Evaluation; Landraces; Morphological attributes; Seasons
-
Parasitism of Hirsutella rhossiliensis on Different Nematodes and Its Endophytism Promoting Plant Growth and Resistance against Root-Knot Nematodes
作者:Sun, Xin;Liao, Jiaqian;Lu, Junru;Zou, Manling;Cheng, Xinyue;Sun, Xin;Lu, Junru;Lin, Runmao;Xie, Bingyan;Lin, Runmao;Cheng, Xinyue
关键词:nematophagous fungus; endoparasite; Hirsutella rhossiliensis; plant-parasitic nematode; parasitism; endophytism; plant growth promotion; plant resistance improvement; Bursaphelenchus xylophilus; green fluorescent protein (GFP)-tagged transformant
-
The root-knot nematode effector Mi2G02 hijacks a host plant trihelix transcription factor to promote nematode parasitism
作者:Zhao, Jianlong;Huang, Kaiwei;Liu, Rui;Lai, Yuqing;Ling, Jian;Li, Yan;Yang, Yuhong;Xie, Bingyan;Mao, Zhenchuan;Abad, Pierre;Favery, Bruno;Quentin, Michael;Jian, Heng;Jian, Heng
关键词:Meloidogyne incognita; effector; giant cell; transcription factor; interaction
-
Nematicidal glycosylated resorcylic acid lactones from the fungus Pochonia chlamydosporia PC-170 and their key biosynthetic genes
作者:Li, Zeyu;Zhang, Wenwen;Khan, Raja Asad Ali;Ling, Jian;Zhao, Jianlong;Yang, Yuhong;Mao, Zhenchuan;Xie, Bingyan;Li, Yan;Li, Zeyu;Zhou, Ligang;Luo, Ning
关键词:Pochonia chlamydosporia; RALs; nematicidal activity; Meloidogyne incognita; biosynthetic gene
-
The Soil Bacterial Community Structure in a Lactarius hatsudake Tanaka Plantation during Harvest
作者:Shen, Airong;Tan, Yun;Li, Jilie;Shen, Airong;Tan, Yun;Shen, Baoming;Liu, Lina;Tan, Zhuming;Zeng, Liangbin
关键词:Lactarius hatsudake Tanaka; mycorrhizal edible fungi; bacterial community; soil microbial diversity