生物
多倍体
基因组
基因
倍性
遗传学
染色体
全基因组测序
普通小麦
基因组进化
作者
Klaus Mayer,Jane Rogers,Jaroslav Doležel,Curtis Pozniak,Kellye Eversole,Catherine Feuillet,Bikram Gill,Bernd Friebe,Adam J. Lukaszewski,Pierre Sourdille,Takashi R. Endo,Marie Kubaláková,Jarmila Číhalíková,Zdeňka Dubská,Jan Vrána,Romana Šperková,Hana Šimková,Melanie Febrer,Leah Clissold,Kirsten McLay
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2014-07-17
卷期号:345 (6194)
被引量:1528
标识
DOI:10.1126/science.1251788
摘要
An ordered draft sequence of the 17-gigabase hexaploid bread wheat (Triticum aestivum) genome has been produced by sequencing isolated chromosome arms. We have annotated 124,201 gene loci distributed nearly evenly across the homeologous chromosomes and subgenomes. Comparative gene analysis of wheat subgenomes and extant diploid and tetraploid wheat relatives showed that high sequence similarity and structural conservation are retained, with limited gene loss, after polyploidization. However, across the genomes there was evidence of dynamic gene gain, loss, and duplication since the divergence of the wheat lineages. A high degree of transcriptional autonomy and no global dominance was found for the subgenomes. These insights into the genome biology of a polyploid crop provide a springboard for faster gene isolation, rapid genetic marker development, and precise breeding to meet the needs of increasing food demand worldwide.
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