Literature DB >> 18218730

Invited review: genes involved in the bovine heat stress response.

R J Collier1, J L Collier, R P Rhoads, L H Baumgard.   

Abstract

The cellular heat stress (HS) response is one component of the acute systemic response to HS. Gene networks within and across cells and tissues respond to environmental heat loads above the thermoneutral zone with both intra- and extracellular signals that coordinate cellular and whole-animal metabolism. Activation of these systems appears to be initiated at skin surface temperatures exceeding 35 degrees C as animals begin to store heat and rapidly increase evaporative heat loss (EVHL) mechanisms. Gene expression changes include 1) activation of heat shock transcription factor 1 (HSF1); 2) increased expression of heat shock proteins (HSP) and decreased expression and synthesis of other proteins; 3) increased glucose and amino acid oxidation and reduced fatty acid metabolism; 4) endocrine system activation of the stress response; and 5) immune system activation via extracellular secretion of HSP. If the stress persists, these gene expression changes lead to an altered physiological state referred to as "acclimation," a process largely controlled by the endocrine system. In the acclimated state, metabolism is adjusted to minimize detrimental effects of increased thermal heat load. The role of secreted HSP in feedback regulation of the immune and endocrine system has not yet been investigated. The variation in EVHL among animals and the central role that HSF1 has in coordinating thermal tolerance suggest that there is opportunity to improve thermal tolerance via gene manipulation. Determining the basis for altered energy metabolism during thermal stress will lead to opportunities for improved animal performance via altered nutritional management.

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Year:  2008        PMID: 18218730     DOI: 10.3168/jds.2007-0540

Source DB:  PubMed          Journal:  J Dairy Sci        ISSN: 0022-0302            Impact factor:   4.034


  75 in total

1.  Cellular thermotolerance is associated with heat shock protein 70.1 genetic polymorphisms in Holstein lactating cows.

Authors:  Loredana Basiricò; Patrizia Morera; Valentina Primi; Nicola Lacetera; Alessandro Nardone; Umberto Bernabucci
Journal:  Cell Stress Chaperones       Date:  2011-01-28       Impact factor: 3.667

2.  Physiological and productive responses of multiparous lactating Holstein cows exposed to short-term cooling during severe summer conditions in an arid region of Mexico.

Authors:  L Avendaño-Reyes; J A Hernández-Rivera; F D Alvarez-Valenzuela; U Macías-Cruz; R Díaz-Molina; A Correa-Calderón; P H Robinson; J G Fadel
Journal:  Int J Biometeorol       Date:  2011-11-25       Impact factor: 3.787

3.  Polymorphisms in the bovine HSP90AB1 gene are associated with heat tolerance in Thai indigenous cattle.

Authors:  Rangsun Charoensook; Kesinee Gatphayak; Ahmad Reza Sharifi; Chavin Chaisongkram; Bertram Brenig; Christoph Knorr
Journal:  Trop Anim Health Prod       Date:  2011-10-19       Impact factor: 1.559

4.  Effect of multiple stresses on growth and adaptive capability of Malpura ewes under semi-arid tropical environment.

Authors:  Veerasamy Sejian; Vijai Prakash Maurya; Kamal Kumar; Syed Mohammad Khursheed Naqvi
Journal:  Trop Anim Health Prod       Date:  2012-07-18       Impact factor: 1.559

5.  Transcripts from the Drosophila heat-shock gene hsr-omega influence rates of protein synthesis but hardly affect resistance to heat knockdown.

Authors:  Travis K Johnson; Fiona E Cockerell; Stephen W McKechnie
Journal:  Mol Genet Genomics       Date:  2011-03-12       Impact factor: 3.291

6.  A genomic study on mammary gland acclimatization to tropical environment in the Holstein cattle.

Authors:  D Wetzel-Gastal; F Feitor; S van Harten; M Sebastiana; L M R Sousa; L A Cardoso
Journal:  Trop Anim Health Prod       Date:  2017-09-27       Impact factor: 1.559

7.  Understanding the mechanisms of ATPase beta family genes for cellular thermotolerance in crossbred bulls.

Authors:  Rajib Deb; Basavaraj Sajjanar; Umesh Singh; Rani Alex; T V Raja; Rafeeque R Alyethodi; Sushil Kumar; Gyanendra Sengar; Sheetal Sharma; Rani Singh; B Prakash
Journal:  Int J Biometeorol       Date:  2015-03-31       Impact factor: 3.787

8.  Expression dynamics of HSP70 during chronic heat stress in Tharparkar cattle.

Authors:  Jaya Bharati; S S Dangi; V S Chouhan; S R Mishra; M K Bharti; V Verma; O Shankar; V P Yadav; K Das; A Paul; S Bag; V P Maurya; G Singh; P Kumar; M Sarkar
Journal:  Int J Biometeorol       Date:  2016-12-19       Impact factor: 3.787

9.  Transcriptome analysis and identification of significantly differentially expressed genes in Holstein calves subjected to severe thermal stress.

Authors:  Krishnamoorthy Srikanth; Eunjin Lee; Anam Kwan; Youngjo Lim; Junyep Lee; Gulwon Jang; Hoyoung Chung
Journal:  Int J Biometeorol       Date:  2017-09-12       Impact factor: 3.787

10.  Acute heat stress brings down milk secretion in dairy cows by up-regulating the activity of the milk-borne negative feedback regulatory system.

Authors:  Nissim Silanikove; Fira Shapiro; Dima Shinder
Journal:  BMC Physiol       Date:  2009-06-29
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