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芥菜蚜的从头转录组分析以及与取食和非取食条件及发育阶段相关转录本的差异表达

De Novo Transcriptome Profiling of Mustard Aphid () and Differential Expression of Transcripts Associated with Feeding and Non-Feeding Conditions and Developmental Stages.

作者信息

Chongtham Rubina, Sharma Manvi, Shukla Rohit Nandan, Joshi Gopal, Kumar Amar, Goel Shailendra, Agarwal Manu, Jagannath Arun

机构信息

Department of Botany, University of Delhi, Delhi 110007, India.

Department of Botany, Deshbandhu College, University of Delhi, Delhi 110019, India.

出版信息

Insects. 2024 Sep 9;15(9):682. doi: 10.3390/insects15090682.

Abstract

is a specialist aphid of the Indian subcontinent that causes significant yield losses in oilseed Brassicas. Several aphid genes have been used as preferred targets in RNAi-based transgenic plants for aphid resistance. In order to enhance the repertoire of potential target genes for aphid control and to identify the genes associated with aphid feeding and development, we performed a two-way comparative study of differential gene expression profiles between (i) feeding and non-feeding adults and (ii) adult and nymph developmental stages of De novo RNA-seq of aphids using Illumina technology generated a final transcriptome comprising 52,652 transcripts. Potential transcripts for host selection, detoxification, salivary proteins and effectors, molecular chaperones and developmental genes were identified. Differential gene expression studies identified variations in the expression of 1502 transcripts between feeding and non-feeding adults and 906 transcripts between nymphs and adults. These data were used to identify novel target genes for RNAi-based aphid control and facilitate further studies on the molecular basis of aphid feeding and development.

摘要

是印度次大陆的一种专业蚜虫,会导致油菜籽类作物大幅减产。几个蚜虫基因已被用作基于RNAi的转基因抗蚜虫植物的首选靶标。为了增加蚜虫防治潜在靶基因的种类,并确定与蚜虫取食和发育相关的基因,我们进行了一项双向比较研究,比较了(i)取食和非取食成虫之间以及(ii)蚜虫成虫和若虫发育阶段之间的差异基因表达谱。使用Illumina技术对蚜虫进行从头RNA测序,产生了一个包含52,652个转录本的最终转录组。鉴定出了与宿主选择、解毒、唾液蛋白和效应子、分子伴侣以及发育基因相关的潜在转录本。差异基因表达研究确定了取食和非取食成虫之间1502个转录本以及若虫和成虫之间906个转录本的表达差异。这些数据用于鉴定基于RNAi的蚜虫防治新靶基因,并促进对蚜虫取食和发育分子基础的进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5695/11432475/f615c46857a7/insects-15-00682-g001.jpg

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