Mikkelsen_2007_Nature_447_167

Reference

Title : Genome of the marsupial Monodelphis domestica reveals innovation in non-coding sequences - Mikkelsen_2007_Nature_447_167
Author(s) : Mikkelsen TS , Wakefield MJ , Aken B , Amemiya CT , Chang JL , Duke S , Garber M , Gentles AJ , Goodstadt L , Heger A , Jurka J , Kamal M , Mauceli E , Searle SM , Sharpe T , Baker ML , Batzer MA , Benos PV , Belov K , Clamp M , Cook A , Cuff J , Das R , Davidow L , Deakin JE , Fazzari MJ , Glass JL , Grabherr M , Greally JM , Gu W , Hore TA , Huttley GA , Kleber M , Jirtle RL , Koina E , Lee JT , Mahony S , Marra MA , Miller RD , Nicholls RD , Oda M , Papenfuss AT , Parra ZE , Pollock DD , Ray DA , Schein JE , Speed TP , Thompson K , Vandeberg JL , Wade CM , Walker JA , Waters PD , Webber C , Weidman JR , Xie X , Zody MC , Graves JA , Ponting CP , Breen M , Samollow PB , Lander ES , Lindblad-Toh K
Ref : Nature , 447 :167 , 2007
Abstract :

We report a high-quality draft of the genome sequence of the grey, short-tailed opossum (Monodelphis domestica). As the first metatherian ('marsupial') species to be sequenced, the opossum provides a unique perspective on the organization and evolution of mammalian genomes. Distinctive features of the opossum chromosomes provide support for recent theories about genome evolution and function, including a strong influence of biased gene conversion on nucleotide sequence composition, and a relationship between chromosomal characteristics and X chromosome inactivation. Comparison of opossum and eutherian genomes also reveals a sharp difference in evolutionary innovation between protein-coding and non-coding functional elements. True innovation in protein-coding genes seems to be relatively rare, with lineage-specific differences being largely due to diversification and rapid turnover in gene families involved in environmental interactions. In contrast, about 20% of eutherian conserved non-coding elements (CNEs) are recent inventions that postdate the divergence of Eutheria and Metatheria. A substantial proportion of these eutherian-specific CNEs arose from sequence inserted by transposable elements, pointing to transposons as a major creative force in the evolution of mammalian gene regulation.

PubMedSearch : Mikkelsen_2007_Nature_447_167
PubMedID: 17495919
Gene_locus related to this paper: mondo-ACHE , mondo-b2bsf5 , mondo-b2bsz5 , mondo-BCHE , mondo-d2x2i6 , mondo-d2x2i8 , mondo-f6slk2 , mondo-f6wu00 , mondo-f6wuf2 , mondo-f6xfj4 , mondo-f6yt13 , mondo-f7c7p0 , mondo-f7ckd0 , mondo-f7cvq8 , mondo-f7cvr5 , mondo-f7eil6 , mondo-f7ez13 , mondo-f7f0i7 , mondo-f7fg16 , mondo-f7gcv7 , mondo-f7gep4 , mondo-f7gly2 , mondo-f6u7q2 , mondo-f7fw54 , mondo-f7dpf6 , mondo-f6pgj5 , mondo-f6yg68 , mondo-f7g8u4 , mondo-f7eyv1 , mondo-f6pq73 , mondo-f7cre0 , mondo-f7fdj0 , mondo-f7fdj5 , mondo-f7ft63 , mondo-f7ge99 , mondo-f7gea2 , mondo-f6pxq2 , mondo-f7awc1 , mondo-f7c412 , mondo-f7ev24 , mondo-f7b6s6 , mondo-f6vcx0 , mondo-f7g148 , mondo-f6tlv9 , mondo-f6tdm5 , mondo-f7f3w0 , mondo-f7fg39 , mondo-f7d6c2 , mondo-f6sdn0 , mondo-f7gi08 , mondo-f6xss6 , mondo-f6sa37 , mondo-f7gd97 , mondo-f6z6x9

Related information

Gene_locus mondo-ACHE    mondo-b2bsf5    mondo-b2bsz5    mondo-BCHE    mondo-d2x2i6    mondo-d2x2i8    mondo-f6slk2    mondo-f6wu00    mondo-f6wuf2    mondo-f6xfj4    mondo-f6yt13    mondo-f7c7p0    mondo-f7ckd0    mondo-f7cvq8    mondo-f7cvr5    mondo-f7eil6    mondo-f7ez13    mondo-f7f0i7    mondo-f7fg16    mondo-f7gcv7    mondo-f7gep4    mondo-f7gly2    mondo-f6u7q2    mondo-f7fw54    mondo-f7dpf6    mondo-f6pgj5    mondo-f6yg68    mondo-f7g8u4    mondo-f7eyv1    mondo-f6pq73    mondo-f7cre0    mondo-f7fdj0    mondo-f7fdj5    mondo-f7ft63    mondo-f7ge99    mondo-f7gea2    mondo-f6pxq2    mondo-f7awc1    mondo-f7c412    mondo-f7ev24    mondo-f7b6s6    mondo-f6vcx0    mondo-f7g148    mondo-f6tlv9    mondo-f6tdm5    mondo-f7f3w0    mondo-f7fg39    mondo-f7d6c2    mondo-f6sdn0    mondo-f7gi08    mondo-f6xss6    mondo-f6sa37    mondo-f7gd97    mondo-f6z6x9
Gene_locus_frgt mondo-ACHE    mondo-b2bsf5    mondo-b2bsz5    mondo-BCHE    mondo-d2x2i6    mondo-d2x2i8    mondo-f6slk2    mondo-f6wu00    mondo-f6wuf2    mondo-f6xfj4    mondo-f6yt13    mondo-f7c7p0    mondo-f7ckd0    mondo-f7cvq8    mondo-f7cvr5    mondo-f7eil6    mondo-f7ez13    mondo-f7f0i7    mondo-f7fg16    mondo-f7gcv7    mondo-f7gep4    mondo-f7gly2    mondo-f6u7q2    mondo-f7fw54    mondo-f7dpf6    mondo-f6pgj5    mondo-f6yg68    mondo-f7g8u4    mondo-f7eyv1    mondo-f6pq73    mondo-f7cre0    mondo-f7fdj0    mondo-f7fdj5    mondo-f7ft63    mondo-f7ge99    mondo-f7gea2    mondo-f6pxq2    mondo-f7awc1    mondo-f7c412    mondo-f7ev24    mondo-f7b6s6    mondo-f6vcx0    mondo-f7g148    mondo-f6tlv9    mondo-f6tdm5    mondo-f7f3w0    mondo-f7fg39    mondo-f7d6c2    mondo-f6sdn0    mondo-f7gi08    mondo-f6xss6    mondo-f6sa37    mondo-f7gd97    mondo-f6z6x9    mondo-d2x2i7    mondo-f6u555    mondo-f7b7g3    mondo-f7frb7    mondo-f7gag5    mondo-f6ums7    mondo-f7g008

Citations formats

Mikkelsen TS, Wakefield MJ, Aken B, Amemiya CT, Chang JL, Duke S, Garber M, Gentles AJ, Goodstadt L, Heger A, Jurka J, Kamal M, Mauceli E, Searle SM, Sharpe T, Baker ML, Batzer MA, Benos PV, Belov K, Clamp M, Cook A, Cuff J, Das R, Davidow L, Deakin JE, Fazzari MJ, Glass JL, Grabherr M, Greally JM, Gu W, Hore TA, Huttley GA, Kleber M, Jirtle RL, Koina E, Lee JT, Mahony S, Marra MA, Miller RD, Nicholls RD, Oda M, Papenfuss AT, Parra ZE, Pollock DD, Ray DA, Schein JE, Speed TP, Thompson K, Vandeberg JL, Wade CM, Walker JA, Waters PD, Webber C, Weidman JR, Xie X, Zody MC, Graves JA, Ponting CP, Breen M, Samollow PB, Lander ES, Lindblad-Toh K (2007)
Genome of the marsupial Monodelphis domestica reveals innovation in non-coding sequences
Nature 447 :167

Mikkelsen TS, Wakefield MJ, Aken B, Amemiya CT, Chang JL, Duke S, Garber M, Gentles AJ, Goodstadt L, Heger A, Jurka J, Kamal M, Mauceli E, Searle SM, Sharpe T, Baker ML, Batzer MA, Benos PV, Belov K, Clamp M, Cook A, Cuff J, Das R, Davidow L, Deakin JE, Fazzari MJ, Glass JL, Grabherr M, Greally JM, Gu W, Hore TA, Huttley GA, Kleber M, Jirtle RL, Koina E, Lee JT, Mahony S, Marra MA, Miller RD, Nicholls RD, Oda M, Papenfuss AT, Parra ZE, Pollock DD, Ray DA, Schein JE, Speed TP, Thompson K, Vandeberg JL, Wade CM, Walker JA, Waters PD, Webber C, Weidman JR, Xie X, Zody MC, Graves JA, Ponting CP, Breen M, Samollow PB, Lander ES, Lindblad-Toh K (2007)
Nature 447 :167