乳突冠
生物
韧皮纤维
功能基因组学
基因组
基因
基因组学
基因家族
分子育种
遗传学
植物
作者
Md. Shahidul Islam,Jennifer A. Saito,Emdadul Mannan Emdad,Borhan Ahmed,Mohammad Moinul Islam,Abdul Halim,Quazi Md. Mosaddeque Hossen,Md Zakir Hossain,Rasel Ahmed,Md. Sabbir Hossain,Shah Md Tamim Kabir,Md Sarwar Alam Khan,Mursalin Khan,Rajnee Hasan,Nasima Aktar,Ummay Honi,Rakibul Islam,Md. Mamunur Rashid,Xuehua Wan,Shaobin Hou
出处
期刊:Nature plants
[Springer Nature]
日期:2017-01-30
卷期号:3 (2): 16223-16223
被引量:138
标识
DOI:10.1038/nplants.2016.223
摘要
Abstract Jute ( Corchorus sp.) is one of the most important sources of natural fibre, covering ∼80% of global bast fibre production 1 . Only Corchorus olitorius and Corchorus capsularis are commercially cultivated, though there are more than 100 Corchorus species 2 in the Malvaceae family. Here we describe high-quality draft genomes of these two species and their comparisons at the functional genomics level to support tailor-designed breeding. The assemblies cover 91.6% and 82.2% of the estimated genome sizes for C. olitorius and C. capsularis , respectively. In total, 37,031 C. olitorius and 30,096 C. capsularis genes are identified, and most of the genes are validated by cDNA and RNA-seq data. Analyses of clustered gene families and gene collinearity show that jute underwent shared whole-genome duplication ∼18.66 million years (Myr) ago prior to speciation. RNA expression analysis from isolated fibre cells reveals the key regulatory and structural genes involved in fibre formation. This work expands our understanding of the molecular basis of fibre formation laying the foundation for the genetic improvement of jute.
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