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Background: Goat milk is gaining popularity as a superior alternative to bovine milk due to its closer resemblance to human milk. Understanding the molecular processes underlying lactation is crucial for improving milk quality and production in goats. However, the genetic mechanisms governing lactation in goats, particularly in indigenous breeds like the Jakhrana, remain largely unexplored.
Results: In this study, we performed a comprehensive transcriptomic analysis of Jakhrana goat mammary glands during early and late lactation stages. We isolated milk somatic cells and conducted RNA sequencing, followed by transcript quantification and mapping against the ARS1.2 Capra hircus reference assembly. Our analysis identified differentially expressed genes (DEGs) and commonly expressed genes (CEGs) across the lactation phases. Early lactation showed enrichment of genes encoding antimicrobial peptides and lubrication proteins, while late lactation exhibited heightened expression of genes encoding major milk proteins. Additionally, DEG analysis revealed upregulation of pivotal genes, such as the ABC transporter gene MRP4, implicated in modulating milk composition and quality.
Conclusion: Our findings provide insights into the genetic mechanisms underlying lactation dynamics in the Jakhrana goat. Understanding these mechanisms could help in improving milk production and quality in goats, benefiting both the dairy industry and consumers.
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http://dx.doi.org/10.1186/s12864-024-10744-x | DOI Listing |
BMC Genomics
September 2024
Division of Animal Genetic Resources, ICAR- National Bureau of Animal Genetic Resources, Karnal, Haryana, 132001, India.
Background: Goat milk is gaining popularity as a superior alternative to bovine milk due to its closer resemblance to human milk. Understanding the molecular processes underlying lactation is crucial for improving milk quality and production in goats. However, the genetic mechanisms governing lactation in goats, particularly in indigenous breeds like the Jakhrana, remain largely unexplored.
View Article and Find Full Text PDFCryo Letters
July 2021
ICAR-Central Institute for Research on Goats, Makhdoom, Farah, Mathura, India.
Background: Defensins are antimicrobial peptides and uniformly spans the entire sperm surface and is not exclusive to a specific domain. Goat β-defensin-1 helps in initiation of motility and capacitation of sperm.
Objective: To know the status of β-defensin-1 in blood, semen and its effect on post thaw fertility gene expression in Indian goat breeds.
Andrologia
May 2021
Bioenergetics and Environmental Sciences Division, ICAR-National Institute of Animal Nutrition and Physiology (ICAR-NIANP), Bengaluru, Karnataka, India.
The invasion of the male urogenital tract by microorganisms, and its subsequent effects on sperm fertilising ability, has not been well discussed in bucks. The present study was conducted to assess the bacterial load in fresh semen of the 2-6 years old bucks. For conducting the experiment, semen ejaculates from 18 bucks (6 from each breed namely Jakhrana, Jamunapari and Barbari) were used.
View Article and Find Full Text PDFTrop Anim Health Prod
November 2020
Animal Biotechnology, AP&R Division, ICAR-Central Institute for Research on Goats, Makhdoom, Farah, Mathura, 281122, India.
Objective: The aim of the study was to explore the possibility of a better sugar suitable for storage of goat semen at refrigerated temperature.
Materials And Method: For this experiment, semen was collected from eight Jakhrana bucks maintained at Jakhrana unit, ICAR-CIRG, at twice a week interval using artificial vagina. Collected semen was preliminary evaluated, and better semen samples were pooled and divided into two parts.
Reprod Domest Anim
November 2020
AP&R Division, ICAR- Central Institute for Research on Goats, Makhdoom, Farah, Mathura, India.
Infectious diseases and aetiological agents related to female reproductive systems were extensively covered compared to its male counterpart. There needs a proper study to bridge this gap, where microflora and infectious agents of both male and female reproductive are mutually intelligible. With this study, we aimed to evaluate the microbial contamination of the preputial cavity and also screened for abortion-causing agents which are zoonotic as well.
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