Live-bearing cockroach genome reveals convergent evolutionary mechanisms linked to viviparity in insects and beyond.
Live-bearing cockroach genome reveals convergent evolutionary mechanisms linked to viviparity in insects and beyond.
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DOI:
10.1016/j.isci.2023.107832
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发表时间:
2023-10-20
期刊:
影响因子:
5.8
通讯作者:
Tobe, Stephen S.
中科院分区:
文献类型:
--
作者:
Fouks, Bertrand;Harrison, Mark C.;Mikhailova, Alina A.;Marchal, Elisabeth;English, Sinead;Carruthers, Madeleine;Jennings, Emily C.;Chiamaka, Ezemuoka L.;Frigard, Ronja A.;Pippel, Martin;Attardo, Geoffrey M.;Benoit, Joshua B.;Bornberg-Bauer, Erich;Tobe, Stephen S.
Live birth (viviparity) has arisen repeatedly and independently among animals. We sequenced the genome and transcriptome of the viviparous Pacific beetle-mimic cockroach and performed comparative analyses with two other viviparous insect lineages, tsetse flies and aphids, to unravel the basis underlying the transition to viviparity in insects. We identified pathways undergoing adaptive evolution for insects, involved in urogenital remodeling, tracheal system, heart development, and nutrient metabolism. Transcriptomic analysis of cockroach and tsetse flies revealed that uterine remodeling and nutrient production are increased and the immune response is altered during pregnancy, facilitating structural and physiological changes to accommodate and nourish the progeny. These patterns of convergent evolution of viviparity among insects, together with similar adaptive mechanisms identified among vertebrates, highlight that the transition to viviparity requires changes in urogenital remodeling, enhanced tracheal and heart development (corresponding to angiogenesis in vertebrates), altered nutrient metabolism, and shifted immunity in animal systems. A Diploptera cockroach genome is now available, 1st with long-read sequencing No gene targeted by selection is shared among independent insect viviparous origins Similar pathways are selected during the independent animal viviparous transitions Viviparity is linked with urogenital remodeling, protein secretion, and reduced immunity Genomics; Evolutionary developmental biology; Transcriptomics
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影响因子:
7
作者:
Fouks B;Brand P;Nguyen HN;Herman J;Camara F;Ence D;Hagen DE;Hoff KJ;Nachweide S;Romoth L;Walden KKO;Guigo R;Stanke M;Narzisi G;Yandell M;Robertson HM;Koeniger N;Chantawannakul P;Schatz MC;Worley KC;Robinson GE;Elsik CG;Rueppell O
通讯作者:
Rueppell O
影响因子:
12.3
作者:
Gentleman RC;Carey VJ;Bates DM;Bolstad B;Dettling M;Dudoit S;Ellis B;Gautier L;Ge Y;Gentry J;Hornik K;Hothorn T;Huber W;Iacus S;Irizarry R;Leisch F;Li C;Maechler M;Rossini AJ;Sawitzki G;Smith C;Smyth G;Tierney L;Yang JY;Zhang J
通讯作者:
Zhang J
影响因子:
3.7
作者:
Amgarten, Deyvid;Braga, Lucas P. P.;Setubal, Joao C.
通讯作者:
Setubal, Joao C.
影响因子:
4.6
作者:
Anthoney, Niki;Foldi, Istvan;Hidalgo, Alicia
通讯作者:
Hidalgo, Alicia
影响因子:
3
作者:
Gouveia-Oliveira, Rodrigo;Sackett, Peter W.;Pedersen, Anders G.
通讯作者:
Pedersen, Anders G.