TY - JOUR
T1 - Genome-wide adaptive complexes to underground stresses in blind mole rats Spalax
AU - 53 authors, including
AU - Fang, Xiaodong
AU - Nevo, Eviatar
AU - Han, Lijuan
AU - Levanon, Erez Y.
AU - Zhao, Jing
AU - Avivi, Aaron
AU - Larkin, Denis
AU - Jiang, Xuanting
AU - Feranchuk, Sergey
AU - Zhu, Yabing
AU - Fishman, Alla
AU - Feng, Yue
AU - Sher, Noa
AU - Xiong, Zhiqiang
AU - Hankeln, Thomas
AU - Huang, Zhiyong
AU - Gorbunova, Vera
AU - Zhang, Lu
AU - Zhao, Wei
AU - Wildman, Derek E.
AU - Xiong, Yingqi
AU - Gudkov, Andrei
AU - Zheng, Qiumei
AU - Rechavi, Gideon
AU - Liu, Sanyang
AU - Bazak, Lily
AU - Chen, Jie
AU - Knisbacher, Binyamin A.
AU - Lu, Yao
AU - Shams, Imad
AU - Gajda, Krzysztof
AU - Farré, Marta
AU - Kim, Jaebum
AU - Lewin, Harris A.
AU - Ma, Jian
AU - Band, Mark
AU - Bicker, Anne
AU - Kranz, Angela
AU - Mattheus, Tobias
AU - Schmidt, Hanno
AU - Seluanov, Andrei
AU - Azpurua, Jorge
AU - McGowen, Michael R.
AU - Ben Jacob, Eshel
AU - Li, Kexin
AU - Peng, Shaoliang
AU - Zhu, Xiaoqian
AU - Liao, Xiangke
AU - Li, Shuaicheng
AU - Krogh, Anders
AU - Zhou, Xin
AU - Brodsky, Leonid
AU - Wang, Jun
PY - 2014
Y1 - 2014
N2 - The blind mole rat (BMR), Spalax galili, is an excellent model for studying mammalian adaptation to life underground and medical applications. The BMR spends its entire life underground, protecting itself from predators and climatic fluctuations while challenging it with multiple stressors such as darkness, hypoxia, hypercapnia, energetics and high pathonecity. Here we sequence and analyse the BMR genome and transcriptome, highlighting the possible genomic adaptive responses to the underground stressors. Our results show high rates of RNA/DNA editing, reduced chromosome rearrangements, an over-representation of short interspersed elements (SINEs) probably linked to hypoxia tolerance, degeneration of vision and progression of photoperiodic perception, tolerance to hypercapnia and hypoxia and resistance to cancer. The remarkable traits of the BMR, together with its genomic and transcriptomic information, enhance our understanding of adaptation to extreme environments and will enable the utilization of BMR models for biomedical research in the fight against cancer, stroke and cardiovascular diseases. © 2014 Macmillan Publishers Limited. All rights reserved.
AB - The blind mole rat (BMR), Spalax galili, is an excellent model for studying mammalian adaptation to life underground and medical applications. The BMR spends its entire life underground, protecting itself from predators and climatic fluctuations while challenging it with multiple stressors such as darkness, hypoxia, hypercapnia, energetics and high pathonecity. Here we sequence and analyse the BMR genome and transcriptome, highlighting the possible genomic adaptive responses to the underground stressors. Our results show high rates of RNA/DNA editing, reduced chromosome rearrangements, an over-representation of short interspersed elements (SINEs) probably linked to hypoxia tolerance, degeneration of vision and progression of photoperiodic perception, tolerance to hypercapnia and hypoxia and resistance to cancer. The remarkable traits of the BMR, together with its genomic and transcriptomic information, enhance our understanding of adaptation to extreme environments and will enable the utilization of BMR models for biomedical research in the fight against cancer, stroke and cardiovascular diseases. © 2014 Macmillan Publishers Limited. All rights reserved.
UR - https://www.scopus.com/pages/publications/84901937260
UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-84901937260&origin=recordpage
U2 - 10.1038/ncomms4966
DO - 10.1038/ncomms4966
M3 - RGC 21 - Publication in refereed journal
SN - 2041-1723
VL - 5
JO - Nature Communications
JF - Nature Communications
M1 - 3966
ER -