Draft genome sequence of the mulberry tree Morus notabilis View Full Text


Ontology type: schema:ScholarlyArticle      Open Access: True


Article Info

DATE

2013-12

AUTHORS

Ningjia He, Chi Zhang, Xiwu Qi, Shancen Zhao, Yong Tao, Guojun Yang, Tae-Ho Lee, Xiyin Wang, Qingle Cai, Dong Li, Mengzhu Lu, Sentai Liao, Guoqing Luo, Rongjun He, Xu Tan, Yunmin Xu, Tian Li, Aichun Zhao, Ling Jia, Qiang Fu, Qiwei Zeng, Chuan Gao, Bi Ma, Jiubo Liang, Xiling Wang, Jingzhe Shang, Penghua Song, Haiyang Wu, Li Fan, Qing Wang, Qin Shuai, Juanjuan Zhu, Congjin Wei, Keyan Zhu-Salzman, Dianchuan Jin, Jinpeng Wang, Tao Liu, Maode Yu, Cuiming Tang, Zhenjiang Wang, Fanwei Dai, Jiafei Chen, Yan Liu, Shutang Zhao, Tianbao Lin, Shougong Zhang, Junyi Wang, Jian Wang, Huanming Yang, Guangwei Yang, Jun Wang, Andrew H. Paterson, Qingyou Xia, Dongfeng Ji, Zhonghuai Xiang

ABSTRACT

Human utilization of the mulberry-silkworm interaction started at least 5,000 years ago and greatly influenced world history through the Silk Road. Complementing the silkworm genome sequence, here we describe the genome of a mulberry species Morus notabilis. In the 330-Mb genome assembly, we identify 128 Mb of repetitive sequences and 29,338 genes, 60.8% of which are supported by transcriptome sequencing. Mulberry gene sequences appear to evolve ~3 times faster than other Rosales, perhaps facilitating the species' spread worldwide. The mulberry tree is among a few eudicots but several Rosales that have not preserved genome duplications in more than 100 million years; however, a neopolyploid series found in the mulberry tree and several others suggest that new duplications may confer benefits. Five predicted mulberry miRNAs are found in the haemolymph and silk glands of the silkworm, suggesting interactions at molecular levels in the plant-herbivore relationship. The identification and analyses of mulberry genes involved in diversifying selection, resistance and protease inhibitor expressed in the laticifers will accelerate the improvement of mulberry plants. More... »

PAGES

2445

Identifiers

URI

http://scigraph.springernature.com/pub.10.1038/ncomms3445

DOI

http://dx.doi.org/10.1038/ncomms3445

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1035249300

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/24048436


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