获得了高效固氮微生物——短截紫花苜蓿(Medicago truncatula Gaertn)菌株CCMM B554 (FSM-MA)的全基因组序列。

Q3 Biochemistry, Genetics and Molecular Biology Standards in Genomic Sciences Pub Date : 2017-12-13 eCollection Date: 2017-01-01 DOI:10.1186/s40793-017-0298-3
Marianna Nagymihály, Bálint M Vásarhelyi, Quentin Barrière, Teik-Min Chong, Balázs Bálint, Péter Bihari, Kar-Wai Hong, Balázs Horváth, Jamal Ibijbijen, Mohammed Amar, Attila Farkas, Éva Kondorosi, Kok-Gan Chan, Véronique Gruber, Pascal Ratet, Peter Mergaert, Attila Kereszt
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引用次数: 5

摘要

菌株CCMM B554,也称为FSM-MA,是从摩洛哥Maamora森林豆科植物紫花苜蓿(Medicago arborea L.)的根瘤中分离出来的一种土壤栖息和形成根瘤的固氮细菌。该菌株在Medicago, Melilotus和Trigonella属的物种上形成有效的固氮瘤,并且由于它是两种最广泛使用的模式豆科植物Medicago truncatula Gaertn的A17和R108的高效共生伙伴,因此它是特殊的。基于16S rRNA基因序列、多位点序列和平均核苷酸同源性分析,FSM-MA被鉴定为一株新的Ensifer meliloti菌株。基因组长度为6,70 Mbp,由染色体(3,64 Mbp)和两个巨型质粒pSymA (1,42 Mbp)和pSymB (1,64 Mbp)组成,分别含有1481和1595个预测基因。基因组平均GC含量为61.93%。FSM-MA基因组结构在染色体和pSymB巨型质粒上与其他E. meliloti菌株高度相似和共线性,而在pSymA质粒上则表现出高度变异性。pSymA中大量的菌株特异性序列以及pSymB上参与脂多糖和荚膜多糖表面多糖生物合成的菌株特异性基因可能编码了新的共生功能,解释了FSM-MA的高共生性能。
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The complete genome sequence of Ensifer meliloti strain CCMM B554 (FSM-MA), a highly effective nitrogen-fixing microsymbiont of Medicago truncatula Gaertn.

Strain CCMM B554, also known as FSM-MA, is a soil dwelling and nodule forming, nitrogen-fixing bacterium isolated from the nodules of the legume Medicago arborea L. in the Maamora Forest, Morocco. The strain forms effective nitrogen fixing nodules on species of the Medicago, Melilotus and Trigonella genera and is exceptional because it is a highly effective symbiotic partner of the two most widely used accessions, A17 and R108, of the model legume Medicago truncatula Gaertn. Based on 16S rRNA gene sequence, multilocus sequence and average nucleotide identity analyses, FSM-MA is identified as a new Ensifer meliloti strain. The genome is 6,70 Mbp and is comprised of the chromosome (3,64 Mbp) harboring 3574 predicted genes and two megaplasmids, pSymA (1,42 Mbp) and pSymB (1,64 Mbp) with respectively 1481 and 1595 predicted genes. The average GC content of the genome is 61.93%. The FSM-MA genome structure is highly similar and co-linear to other E. meliloti strains in the chromosome and the pSymB megaplasmid while, in contrast, it shows high variability in the pSymA plasmid. The large number of strain-specific sequences in pSymA as well as strain-specific genes on pSymB involved in the biosynthesis of the lipopolysaccharide and capsular polysaccharide surface polysaccharides may encode novel symbiotic functions explaining the high symbiotic performance of FSM-MA.

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来源期刊
Standards in Genomic Sciences
Standards in Genomic Sciences GENETICS & HEREDITY-MICROBIOLOGY
CiteScore
1.44
自引率
0.00%
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0
审稿时长
6-12 weeks
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