首页> 外文期刊>African Journal of Microbiology Research >Identification and molecular phylogeny analysis using random amplification of polymorphic DNA (RAPD) and 16SrRNA sequencing of N2 fixing tea field soil bacteria from North Bengal tea gardens
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Identification and molecular phylogeny analysis using random amplification of polymorphic DNA (RAPD) and 16SrRNA sequencing of N2 fixing tea field soil bacteria from North Bengal tea gardens

机译:使用北孟加拉茶园的N2固定茶田土壤细菌的多态性DNA随机扩增(RAPD)和16SrRNA测序进行鉴定和分子系统发育分析

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Random amplification of polymorphic DNA (RAPD) amplification genomic DNA of 23 selected laboratory cultures of bacteria using RAPD revealed their polymorphism. Polymerase chain reaction (PCR) amplification of the bacterial 16SrDNA was performed using 704F GTAGCGGTGAAATGCGTAGA and 907R CCGTCAATTCCTTTGAGTTT primer, sequenced and accessed in NCBI (No. KY636356, KY631488, KY 860028, KX587470, KX665547, KY631489, KX608591, KY636360, KY671245, KY631490, KX587469, KY859856, KX665546, KX608590, KX587468, KY859798, KY636357, KY636361, KY 636359, KY631491, KY 859855, KY636358, KY636362) after submitting the contig. FASTA sequence in NCBI database was seen. All most all 23 bacterial strains (viz. TS-1-16, TS-4-23 DJ-1-22, DS-1-20, AS-1-4, DJ-1-24 , DJ-1-10, DJ-1-46) showed strong homology with free living nitrogen fixing soil bacteria, also showing (98 to 100%) identity and E-value of 00 with Burkholderia spp, Strain-S-9-19, Str-S-9-15, SP-2386, Stenotrophomonas maltophilla, strn-MM-3-3, Str-D-3,LP-05, Bacillus cereus Strn-FORC021and Azospirillum sp TSH51 gene, having good nitrogen fixing capacity. Phylogenetic tree analysis among the 23 isolates and between the different strains from GenBank showed close similarity. Most of the isolated bacterial strain identified as a member of the genus Burkholderia sp, Stenotrophomonas maltophila, Herbaspirillum sp, Acinetobacter johnsonii, Methylobacter, SP-T-20, and Bacillus cereus, Azospirillum sp would be consider to be the most suitable bioferiliser for organic and conventional tea gardens of North Bengal, India.
机译:多态性DNA的随机扩增(RAPD)使用RAPD对23种选定的细菌实验室培养物进行的扩增基因组DNA揭示了它们的多态性。使用704F GTAGCGGTGAAATGCGTAGA和907R CCGTCAATTCCTTTGAGTTT引物对细菌16SrDNA进行聚合酶链反应(PCR)扩增,并在NCBI(No. KY636356,KY631488,KY 860028,KX587470,KX665547,KY631489,KX608591,KY636490, KX587469,KY859856,KX665546,KX608590,KX587468,KY859798,KY636357,KY636361,KY636359,KY631491,KY 859855,KY636358,KY636362)。在NCBI数据库中看到了FASTA序列。全部23种细菌菌株(即TS-1-16,TS-4-23 DJ-1-22,DS-1-20,AS-1-4,DJ-1-24,DJ-1-10, DJ-1-46)与固定的固氮土壤细菌具有很强的同源性,与伯克霍尔德氏菌,Strain-S-9-19,Str-S-9- 15,SP-2386,麦芽嗜麦芽单胞菌,strn-MM-3-3,Str-D-3,LP-05,蜡状芽孢杆菌Strn-FORC021和拟螺旋体sp TSH51基因,具有良好的固氮能力。系统进化树分析在这23个分离株之间以及GenBank的不同菌株之间显示出相似的相似性。鉴定为伯克霍尔德氏菌属,麦芽嗜麦芽单胞菌,草本螺旋藻,约翰逊不动杆菌,甲基杆菌,SP-T-20和蜡状芽孢杆菌的大多数分离细菌菌株均被认为是最适合有机有机肥的生物肥料和印度北孟加拉的传统茶园。

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