Centre for DNA Taxonomy, Molecular Systematics Division, Zoological Survey of India, New Alipore, Kolkata, West Bengal, India.
School of Biotechnology, Kalinga Institute of Industrial Technology (KIIT), Deemed to be University, Bhubaneswar, Odisha, India.
PLoS One. 2018 Oct 31;13(10):e0199404. doi: 10.1371/journal.pone.0199404. eCollection 2018.
The melon thrips, Thrips palmi is a serious pest and vector for plant viruses on a wide range of economically important crops. DNA barcoding evidenced the presence of cryptic diversity in T. palmi and that warrants exhaustive molecular studies. Our present study is on decoding the first complete mitochondrial genome of T. palmi (15,333 bp) through next-generation sequencing (NGS). The T. palmi mt genome contains 37 genes, including 13 Protein coding genes (PCGs), two ribosomal RNA (rRNAs), 22 transfer RNA (tRNAs), and two control regions (CRs). The majority strand of T. palmi revealed 78.29% A+T content, and 21.72% G+C content with positive AT skew (0.09) and negative GC skew (-0.06). The ATN initiation codons were observed in 12 PCGs except for cox1 which have unique start codon (TTG). The relative synonymous codon usage (RSCU) analysis revealed Phe, Leu, Ile, Tyr, Asn, Lys and Met were the most frequently used amino acids in all PCGs. The codon (CGG) which is assigned to Arginine in most insects but absent in T. palmi. The Ka/Ks ratio ranges from 0.078 in cox1 to 0.913 in atp8. We observed the typical cloverleaf secondary structure in most of the tRNA genes with a few exceptions; absence of DHU stem and loop in trnV and trnS, absence of DHU loop in trnE, lack of T-arm and loop in trnN. The T. palmi gene order (GO) was compared with ancestral GO and observed an extensive gene arrangement in PCGs, tRNAs and rRNAs. The cox2 gene was separated from the gene block 'cox2-trnL2' in T. palmi as compared with the other thrips mt genomes, including ancestor GO. Further, the nad1, trnQ, trnC, trnL1, trnV, trnF, rrnS, and rrnL were inversely transpositioned in T. palmi GO. The gene blocks 'trnQ-trnS2-trnD' and 'trnN-trnE-trnS1-trnL1' seems to be genus specific. The T. palmi mt genome contained 24 intergenic spacer regions and 12 overlapping regions. The 62 bp of CR2 shows the similarity with CR1 indicating a possible duplication. The occurrence of multiple CRs in thrips mt genomes seems to be a derived trait which needs further investigation. Although, the study depicted extensive gene rearrangements in T. palmi mt genome, but the negative GC skew reflects only strand asymmetry. Both the ML and BI phylogenetic trees revealed the close relationships of Thrips with Scirtothrips as compared to Frankliniella. Thus, more mt genomes of the diverse thrips species are required to understand the in-depth phylogenetic and evolutionary relationships.
瓜蓟马,蓟马属,是一类重要的经济作物害虫和病毒载体。DNA 条形码技术证实了蓟马属存在隐种多样性,这需要进行详尽的分子研究。本研究采用下一代测序(NGS)技术对瓜蓟马的完整线粒体基因组(15333bp)进行解码。瓜蓟马的 mt 基因组包含 37 个基因,包括 13 个蛋白编码基因(PCGs)、两个核糖体 RNA(rRNAs)、22 个转移 RNA(tRNAs)和两个控制区(CRs)。瓜蓟马 mt 基因组的主要链含有 78.29%的 A+T 含量和 21.72%的 G+C 含量,具有正的 AT 倾斜(0.09)和负的 GC 倾斜(-0.06)。12 个 PCGs 中观察到 ATN 起始密码子,cox1 具有独特的起始密码子(TTG)。相对同义密码子使用(RSCU)分析表明,在所有 PCGs 中,苯丙氨酸、亮氨酸、异亮氨酸、酪氨酸、天冬酰胺、赖氨酸和甲硫氨酸是使用最频繁的氨基酸。瓜蓟马中存在密码子(CGG),该密码子在大多数昆虫中编码精氨酸,但在瓜蓟马中不存在。cox1 的 Ka/Ks 比值范围为 0.078,atp8 的 Ka/Ks 比值范围为 0.913。我们观察到大多数 tRNA 基因具有典型的三叶草二级结构,但也有一些例外;trnV 和 trnS 中没有 DHU 茎和环,trnE 中没有 DHU 环,trnN 中没有 T 臂和环。瓜蓟马的基因排列(GO)与祖先 GO 进行了比较,观察到 PCGs、tRNAs 和 rRNAs 中广泛的基因排列。与其他蓟马 mt 基因组(包括祖先 GO)相比,cox2 基因在瓜蓟马中与“cox2-trnL2”基因块分离。此外,nad1、trnQ、trnC、trnL1、trnV、trnF、rrnS 和 rrnL 在瓜蓟马 GO 中发生了反向转位。基因块“trnQ-trnS2-trnD”和“trnN-trnE-trnS1-trnL1”似乎是属特异性的。瓜蓟马 mt 基因组包含 24 个基因间间隔区和 12 个重叠区。CR2 的 62bp 与 CR1 相似,表明可能存在重复。在蓟马 mt 基因组中出现多个 CRs 似乎是一种衍生特征,需要进一步研究。尽管本研究描述了瓜蓟马 mt 基因组中广泛的基因重排,但负的 GC 倾斜仅反映了链不对称性。最大似然法(ML)和贝叶斯推断法(BI)系统发育树均表明,蓟马与烟粉虱属的亲缘关系较缨翅目更近。因此,需要更多不同种类的蓟马 mt 基因组来深入了解其系统发育和进化关系。