畜牧业适应气候变化和生产的基因组选育技术透视

Anjali Arya, Prachi Sharma, M. M. Trivedi, R. J. Modi, Y. G. Patel
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引用次数: 0

摘要

畜牧业生产与全球气候动态密切相关,造成温室气体排放,并容易受到气候影响。为应对这些挑战,必须进行必要的调整,以加强畜牧系统对气候的适应能力。值得注意的是,对遗传多样性有限的商业品种的普遍依赖会使生产战略受到破坏,特别是如果这些品种被限制在未来气候条件下可能失去经济可行性的环境中。因此,了解动物种群对即将到来的环境条件的适应能力对于维持畜牧业生产至关重要。要评估气候适应性的遗传基础,就必须探索量身定制的基因组选择技术,既包括推测具有中等遗传率的生产性状,也包括推测具有低遗传率的适应性状。通过对基因组选择动态进行细致入微的研究,可以深入了解在不断变化的环境背景下促进牲畜种群恢复能力的遗传机制。利用基因组分析来确定与牲畜耐热性、抗病性和饲料效率等性状相关的遗传标记。开展跨学科合作,制定整合这些标记的定制育种计划,并通过严格的田间试验和持续监测验证其有效性,以提高牲畜在不同气候条件下的适应力和生产力。阐明这些机制及其在育种计划中的应用,有助于全面了解基因进步如何提高牲畜的生产效率和气候适应能力。这一论述旨在弥合科学探索与务实实施之间的鸿沟,从而促进牲畜育种战略的知情决策,以减轻气候变化的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Look at Genomic Selection Techniques for Climate Change Adaptation and Production in Livestock
Livestock production profoundly intersects with global climate dynamics, contributing to greenhouse gas emissions and confronting vulnerability to climate impacts. In addressing these challenges, imperative adjustments are requisite to fortify the climate robustness of livestock systems. Notably, the prevalent reliance on commercial breeds with limited genetic diversity exposes production strategies to disruption, especially if these breeds are confined to environments that may lose economic viability under future climate scenarios. Consequently, understanding the adaptability of animal populations to forthcoming environmental conditions is paramount for sustaining livestock production. Assessing the genetic underpinnings of climate adaptation necessitates the exploration of tailored genomic selection techniques encompassing both production traits, presumed to have moderate heritability, and adaptation traits, presumed to have low heritability. Through a nuanced examination of genomic selection dynamics, insights into the genetic mechanisms fostering resilience in livestock populations amidst shifting environmental contexts are garnered. Employ genomic analysis to pinpoint genetic markers associated with traits like heat tolerance, disease resistance, and feed efficiency in livestock. Collaborate across disciplines to develop tailored breeding programs integrating these markers, and validate their effectiveness through rigorous field trials and ongoing monitoring to enhance livestock resilience and productivity in varied climatic conditions. Elucidating these mechanisms and their application in breeding programs offers a comprehensive understanding of how genetic advancements can enhance both production efficiency and climate resilience in livestock. This discourse aims to bridge the chasm between scientific inquiry and pragmatic implementation, thereby facilitating informed decision-making in livestock breeding strategies tailored to mitigate the ramifications of climate change.
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