Regulation of flagellar motility by temperature-dependent phosphorylation of a 43 kDa axonemal protein in fowl spermatozoa
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry,Biophysics
Reference27 articles.
1. FOWL SPERM IMMOBILIZATION BY A TEMPERATURE-MEDIA INTERACTION AND ITS BIOLOGICAL SIGNIFICANCE
2. Effects of Temperature on the Vigour of Motility, Oxygen Consumption and Duration of Motility of Fowl Spermatozoa under Aerobic Conditions
3. Studies on Reversible Inactivation of Cock Spermatozoa by Temperature
4. Stimulation of sperm motility and oxygen consumption of fowl spermatozoa by a low molecular weight fraction of seminal plasma
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1. Comparative transcriptome analysis identified crucial genes and pathways affecting sperm motility in the reproductive tract of drakes with different libido;Poultry Science;2023-04
2. Main signaling pathways involved in the control of fowl sperm motility;Poultry Science;2019-03
3. Development and Preservation of Avian Sperm;Advances in Experimental Medicine and Biology;2017
4. Regulation of fowl sperm motility: Evidence for the indirect, but not direct, involvement of dynein-ATPase activity on the reversible temperature-dependent immobilization;Theriogenology;2013-02
5. Temperature-dependent regulation of sperm motility of Ijima's copper pheasants (Syrmaticus soemmerringii ijimae), one of ‘near threatened’ species;Animal Reproduction Science;2010-08
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