Molecular breeding for combating salinity stress in sorghum: progress and prospects.

Nidhi Chakma, M. Chakraborty, S. Bhyan, Mobashwer Alam
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Abstract

Abstract This chapter discusses current progress and prospects of molecular breeding and strategies for developing better saline-tolerant sorghum (Sorghum bicolor) varieties. Most molecular breeding techniques for salt tolerance have been carried out in controlled environments where the plants were not exposed to any variation of the surrounding environment, producing reliable results. Due to the polygenic nature of salt tolerance, the identified quantitative trait loci (QTLs) could be false QTLs. Therefore, QTL validation is important in different plant populations and field conditions. Subsequently, marker validation is important before utilizing marker-assisted selection for screening salt-tolerant plants. Combining molecular breeding with conventional breeding can hasten the development of salt-tolerant sorghum varieties.
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高粱抗盐胁迫分子育种研究进展与展望。
摘要本章论述了耐盐碱高粱分子育种的研究进展和前景,以及耐盐碱高粱品种的选育策略。大多数耐盐分子育种技术都是在受控环境中进行的,在这种环境中,植物没有暴露于周围环境的任何变化,产生了可靠的结果。由于耐盐性状的多基因性,所鉴定的数量性状位点(qtl)可能为假qtl。因此,QTL验证在不同植物群体和田间条件下具有重要意义。因此,在利用标记辅助选择筛选耐盐植物之前,标记验证是重要的。分子育种与常规育种相结合,可以加快高粱耐盐品种的发育。
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The genetic architecture and breeding towards cold tolerance in maize: review. Molecular breeding for increasing micronutrient content in sorghum. CRISPR-mediated gene editing in wheat for abiotic stress tolerance. Recent advancement of molecular breeding for improving salinity tolerance in wheat. Recent understanding on molecular mechanisms of plant abiotic stress response and tolerance.
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