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Open AccessJournal ArticleDOI

The Genome Sequence of Taurine Cattle: A Window to Ruminant Biology and Evolution

Christine G. Elsik, +328 more
- 24 Apr 2009 - 
- Vol. 324, Iss: 5926, pp 522-528
TLDR
To understand the biology and evolution of ruminants, the cattle genome was sequenced to about sevenfold coverage and provides a resource for understanding mammalian evolution and accelerating livestock genetic improvement for milk and meat production.
Abstract
To understand the biology and evolution of ruminants, the cattle genome was sequenced to about sevenfold coverage. The cattle genome contains a minimum of 22,000 genes, with a core set of 14,345 orthologs shared among seven mammalian species of which 1217 are absent or undetected in noneutherian (marsupial or monotreme) genomes. Cattle-specific evolutionary breakpoint regions in chromosomes have a higher density of segmental duplications, enrichment of repetitive elements, and species-specific variations in genes associated with lactation and immune responsiveness. Genes involved in metabolism are generally highly conserved, although five metabolic genes are deleted or extensively diverged from their human orthologs. The cattle genome sequence thus provides a resource for understanding mammalian evolution and accelerating livestock genetic improvement for milk and meat production.

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Journal ArticleDOI

The evolution of tropical adaptation: comparing taurine and zebu cattle

TL;DR: This investigation is anticipated to be a stepping-stone for future studies to identify genomic regions specific to the two cattle groups, and to subsequently assist in the discrimination between temperate and tropically adapted cattle.
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An overview of gene expression dynamics during early ovarian folliculogenesis: specificity of follicular compartments and bi-directional dialog

TL;DR: This is the first comprehensive exploration of transcriptomes derived from in vivo oocytes and GCs at key stages in early follicular development in sheep and will be a valuable resource for unraveling human ovarian dysfunction such as premature ovarian failure (POF).
Journal ArticleDOI

Vitamin D Signaling in the Bovine Immune System: A Model for Understanding Human Vitamin D Requirements

TL;DR: Utilizing the bovine model to further delineate the immunomodulatory role of vitamin D will provide potentially valuable insights into the vitamin D requirements of both humans and cattle, especially as they relate to immune response capacity and infectious disease resistance.
Journal ArticleDOI

Growth and development of the mammary glands of livestock: a veritable barnyard of opportunities.

TL;DR: From such an analysis it quickly becomes clear that much remains to be learned about the mammary glands of domestic livestock, particularly given their many similarities to the human breast, the unique biological mechanisms they employ, and the phenotypic variation they afford.
References
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疟原虫var基因转换速率变化导致抗原变异[英]/Paul H, Robert P, Christodoulou Z, et al//Proc Natl Acad Sci U S A

宁北芳, +1 more
TL;DR: PfPMP1)与感染红细胞、树突状组胞以及胎盘的单个或多个受体作用,在黏附及免疫逃避中起关键的作�ly.

Neuroscience 細胞死:最近の知見

廣瀬雄一
TL;DR: In this paper, the authors describe a scenario where a group of people are attempting to find a solution to the problem of "finding the needle in a haystack" in the environment.
Journal ArticleDOI

FcRn: the neonatal Fc receptor comes of age

TL;DR: The neonatal Fc receptor for IgG (FcRn) has been well characterized in the transfer of passive humoral immunity from a mother to her fetus and throughout life, FcRm protects IgG from degradation, thereby explaining the long half-life of this class of antibody in the serum.
Journal ArticleDOI

Recent Segmental Duplications in the Human Genome

TL;DR: A method whereby each public sequence is analyzed at the clone level for overrepresentation within a whole-genome shotgun sequence has the ability to detect duplications larger than 15 kilobases irrespective of copy number, location, or high sequence similarity.
Journal ArticleDOI

Viruses and interferon: a fight for supremacy

TL;DR: The interplay between the IFN system and four medically important and challenging viruses — influenza, hepatitis C, herpes simplex and vaccinia — is discussed to highlight the diversity of viral strategies.
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