S. Subhavyuktha, H. Usha Nandhini Devi, K. K. Kumar, P. Irene Vethamoni, N. Premalatha, S. Srividhya
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引用次数: 0
Abstract
Stability analysis plays a crucial role in plant breeding programs aimed at enhancing crop productivity and resilience. Chili yield stability studies based on the interaction of genotype × environment have been widely conducted, as stable yield is very substantial in the formation of sustainably high-yielding chili varieties. Multi-environmental trials, conducted across different seasons, locations, or both, are used to assess these G × E interactions through various statistical models. In this context, this review paper explores the understanding of stability analysis in chili breeding, the significance of genotype by environment interaction, and the methods employed in this domain, providing a comprehensive update on recent advancements in stability analysis specific to chili breeding. Furthermore, research studies conducted on stability analysis in chili breeding programs and software used to assess crop stability are featured, shedding light on the application, challenges, and future prospects in the field. The importance of stability analysis in developing stable genotypes and enhancing agricultural productivity amid evolving environmental conditions is herewith underscored. These insights are critical for breeding programs aiming to create robust genotypes capable of adapting to changing environmental conditions, ultimately contributing to more sustainable agricultural practices.
稳定性分析在旨在提高作物产量和抗逆性的植物育种计划中发挥着至关重要的作用。基于基因型 × 环境交互作用的辣椒产量稳定性研究已广泛开展,因为稳定的产量对培育可持续高产的辣椒品种非常重要。跨季节、跨地点或同时跨季节、跨地点进行的多环境试验被用来通过各种统计模型评估这些 G × E 相互作用。在此背景下,本综述论文探讨了辣椒育种中对稳定性分析的理解、基因型与环境交互作用的意义以及该领域采用的方法,全面介绍了辣椒育种中稳定性分析的最新进展。此外,还介绍了在辣椒育种计划中开展的稳定性分析研究以及用于评估作物稳定性的软件,揭示了该领域的应用、挑战和未来前景。本文强调了稳定性分析在不断变化的环境条件下开发稳定基因型和提高农业生产力的重要性。这些见解对于旨在创造能够适应不断变化的环境条件的稳健基因型的育种计划至关重要,最终将促进更可持续的农业实践。
期刊介绍:
Articles in Crop Science are of interest to researchers, policy makers, educators, and practitioners. The scope of articles in Crop Science includes crop breeding and genetics; crop physiology and metabolism; crop ecology, production, and management; seed physiology, production, and technology; turfgrass science; forage and grazing land ecology and management; genomics, molecular genetics, and biotechnology; germplasm collections and their use; and biomedical, health beneficial, and nutritionally enhanced plants. Crop Science publishes thematic collections of articles across its scope and includes topical Review and Interpretation, and Perspectives articles.