Sequencing and de Novo Assembly of Abaca (<i>Musa textilis</i> Née) var. Abuab Genome

Abaca (<i>Musa textilis</i> Née), an indigenous crop to the Philippines, is known to be the source of the strongest natural fiber. Despite its huge economic contributions, research on crop improvement is limited due to the lack of genomic data. In this study, the whole genome of the abac...

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Bibliographic Details
Main Authors: Leny Calano Galvez, Rhosener Bhea Lu Koh, Cris Francis Cortez Barbosa, Jayson Calundre Asunto, Jose Leonido Catalla, Robert Gomez Atienza, Kennedy Trinidad Costales, Vermando Masinsin Aquino, Dapeng Zhang
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Genes
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Online Access:https://www.mdpi.com/2073-4425/12/8/1202
Description
Summary:Abaca (<i>Musa textilis</i> Née), an indigenous crop to the Philippines, is known to be the source of the strongest natural fiber. Despite its huge economic contributions, research on crop improvement is limited due to the lack of genomic data. In this study, the whole genome of the abaca var. Abuab was sequenced using Illumina Novaseq 6000 and Pacific Biosciences Single-Molecule Real-Time Sequel. The genome size of Abuab was estimated to be 616 Mbp based on total k-mer number and volume peak. Its genome was assembled at 65× depth, mapping 95.28% of the estimated genome size. BUSCO analysis recovered 78.2% complete BUSCO genes. A total of 33,277 gene structures were predicted which is comparable to the number of predicted genes from recently assembled Musa spp. genomes. A total of 330 Mbp repetitive elements were also mined, accounting to 53.6% of the genome length. Here we report the sequencing and genome assembly of the abaca var. Abuab that will facilitate gene discovery for crop improvement and an indispensable source for genetic diversity studies in Musa.
ISSN:2073-4425