CSIR-National Botanical Research Institute, (Council of Scientific and Industrial Research) Rana Pratap Marg, Lucknow, UP-226001, India.
Academy of Scientific and Innovative Research (AcSIR), Anusandhan Bhawan, Room No: 310, 2-Rafi Marg, New Delhi, India.
Sci Rep. 2018 May 15;8(1):7573. doi: 10.1038/s41598-018-25845-3.
The cotton mealybug Phenacoccus solenopsis is a devastating pest of cotton causing tremendous loss in the yield of crops each year. Widespread physiological and biological studies on P. solenopsis have been carried out, but the lack of genetic information has constrained our understanding of the molecular mechanisms behind its growth and development. To understand and characterize the different developmental stages, RNA-Seq platform was used to execute de-novo transcriptome assembly and differential gene expression profiling for the eggs, first, second, third instar and adult female stages. About 182.67 million reads were assembled into 93,781 unigenes with an average length of 871.4 bp and an N50 length of 1899 bp. These unigenes sequences were annotated and classified by performing NCBI non-redundant (Nr) database, Kyoto Encyclopedia of Genes and Genomes (KEGG) and Clusters of Orthologous Groups (COG), Gene ontology (GO), the Swiss-Prot protein database (Swiss-Prot), and nearest related organism Acyrthosiphon pisum (pea aphid) database. To get more information regarding the process of metamorphosis, we performed a pairwise comparison of four developmental stages and obtained 29,415 differentially expressed genes. Some of the differentially expressed genes were associated with functional protein synthesis, anti-microbial protection, development and hormone biosynthesis. Functional pathway enrichment analysis of differentially expressed genes showed the positive correlation with specific physiological activities of each stage, and these results were confirmed by qRT-PCR experiments. This study gives a valuable genomics resource of P. solenopsis covering all its developmental stages and will promote future studies on biological processes at the molecular level.
棉红铃虫 Phenacoccus solenopsis 是棉花的毁灭性害虫,每年都会导致作物产量巨大损失。已经对 P. solenopsis 进行了广泛的生理和生物学研究,但遗传信息的缺乏限制了我们对其生长和发育背后的分子机制的理解。为了了解和描述不同的发育阶段,我们使用 RNA-Seq 平台对卵、一龄、二龄、三龄和雌成虫阶段进行了从头转录组组装和差异基因表达谱分析。大约 1.8267 亿条reads 组装成 93781 条unigenes,平均长度为 871.4bp,N50 长度为 1899bp。这些 unigenes 序列通过对 NCBI 非冗余(Nr)数据库、京都基因与基因组百科全书(KEGG)和直系同源群(COG)、基因本体论(GO)、Swiss-Prot 蛋白质数据库(Swiss-Prot)和最近相关的生物体 Acyrthosiphon pisum(豌豆蚜)数据库进行注释和分类。为了获得更多关于变态过程的信息,我们对四个发育阶段进行了两两比较,获得了 29415 个差异表达基因。一些差异表达基因与功能蛋白合成、抗菌保护、发育和激素生物合成有关。差异表达基因的功能途径富集分析显示与每个阶段的特定生理活动呈正相关,这些结果通过 qRT-PCR 实验得到了证实。本研究为 P. solenopsis 提供了一个有价值的基因组学资源,涵盖了其所有的发育阶段,并将促进未来对分子水平上的生物学过程的研究。