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利用长读段混合纠错技术获得的MD-2菠萝基因组草图。

The draft genome of MD-2 pineapple using hybrid error correction of long reads.

作者信息

Redwan Raimi M, Saidin Akzam, Kumar S Vijay

机构信息

Biotechnology Research Institute, Universiti Malaysia Sabah, Jalan UMS, 88400 Kota Kinabalu, Sabah, Malaysia.

Novocraft Technology Sdn. Bhd., C-23A-05, Jalan 19/1, Seksyen 19, 46300 Petaling Jaya, Selangor, Malaysia.

出版信息

DNA Res. 2016 Oct 1;23(5):427-439. doi: 10.1093/dnares/dsw026.

Abstract

The introduction of the elite pineapple variety, MD-2, has caused a significant market shift in the pineapple industry. Better productivity, overall increased in fruit quality and taste, resilience to chilled storage and resistance to internal browning are among the key advantages of the MD-2 as compared with its previous predecessor, the Smooth Cayenne. Here, we present the genome sequence of the MD-2 pineapple (Ananas comosus (L.) Merr.) by using the hybrid sequencing technology from two highly reputable platforms, i.e. the PacBio long sequencing reads and the accurate Illumina short reads. Our draft genome achieved 99.6% genome coverage with 27,017 predicted protein-coding genes while 45.21% of the genome was identified as repetitive elements. Furthermore, differential expression of ripening RNASeq library of pineapple fruits revealed ethylene-related transcripts, believed to be involved in regulating the process of non-climacteric pineapple fruit ripening. The MD-2 pineapple draft genome serves as an example of how a complex heterozygous genome is amenable to whole genome sequencing by using a hybrid technology that is both economical and accurate. The genome will make genomic applications more feasible as a medium to understand complex biological processes specific to pineapple.

摘要

精英菠萝品种MD-2的引入,已在菠萝产业中引发了显著的市场转变。与之前的品种“菲律宾卡宴”相比,MD-2具有诸多关键优势,如更高的生产力、水果品质和口感整体提升、耐冷藏以及抗内部褐变。在此,我们利用来自两个高度知名平台的混合测序技术,即PacBio长测序读段和精确的Illumina短读段,呈现了MD-2菠萝(Ananas comosus (L.) Merr.)的基因组序列。我们的基因组草图实现了99.6%的基因组覆盖,预测有27,017个蛋白质编码基因,同时45.21%的基因组被鉴定为重复元件。此外,菠萝果实成熟RNA测序文库的差异表达揭示了乙烯相关转录本,据信其参与调控非跃变型菠萝果实的成熟过程。MD-2菠萝基因组草图展示了如何通过使用既经济又准确的混合技术,使复杂的杂合基因组适用于全基因组测序。该基因组将使基因组应用作为理解菠萝特定复杂生物学过程的媒介变得更加可行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc4a/5066169/87b9231875df/dsw026f1p.jpg

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