Challenges to genome sequence dissection in sweetpotato
نویسندگان
چکیده
The development of next generation sequencing (NGS) technologies has enabled the determination of whole genome sequences in many non-model plant species. However, genome sequencing in sweetpotato (Ipomoea batatas (L.) Lam) is still difficult because of the hexaploid genome structure. Previous studies suggested that a diploid wild relative, I. trifida (H.B.K.) Don., is the most possible ancestor of sweetpotato. Therefore, the genetic and genomic features of I. trifida have been studied as a potential reference for sweetpotato. Meanwhile, several research groups have begun the challenging task of directly sequencing the sweetpotato genome. In this manuscript, we review the recent results and activities of large-scale genome and transcriptome analysis related to genome sequence dissection in sweetpotato under the sections as follows: I. trifida genome and transcript sequencing, genome sequences of I. nil (Japanese morning glory), transcript sequences in sweetpotato, chloroplast sequences, transposable elements and transfer DNA. The recent international activities of de novo whole genome sequencing in sweetpotato are also described. The large-scale publically available genome and transcript sequence resources and the international genome sequencing streams are expected to promote the genome sequence dissection in sweetpotato.
منابع مشابه
Current developments in breeding, genetics, genomics, and molecular biology applied to sweetpotato improvement
Sweetpotato is the seventh most important food crop in the world after maize, rice, wheat, potatoes, cassava, and barley. Although it originated in Central to South America, Asia is now the largest producing region with three quarters of the world’s annual production. Sweetpotato can withstand poor growing conditions, such as low soil nutrients and periodic drought, and can accumulate starches ...
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