Advances in Breeding for Oil Quality Enhancement in Indian Mustard (Brassica spp. L.): Achievements, Challenges, and Research Opportunities

Q4 Agricultural and Biological Sciences
Prity Kumari Singh, Satya Prakash
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Abstract

Major objectives in oil crop improvement are enhancement of seed and oil yield, quality of oil according to its use, i.e. edible or industrial uses, breeding of varieties that fit in different cropping systems and breeding biotic and abiotic stress resistant/tolerant varieties. Despite traditional breeding approaches, including pure line breeding, yielding only modest gains in productivity, recent advancements in mustard breeding have led to significant breakthroughs in both productivity and oil quality. This review discusses the innovative breeding strategies that have contributed to these advancements, with a focus on hybrid development, oil quality enhancement, and biotechnological approaches. To enhance productivity, researchers at the University of Delhi have developed hybrid seed production techniques using transgenic Barnase-barstar systems and cytoplasmic male sterility (CMS) systems. These systems enable large-scale hybrid seed production, with field trials demonstrating significant yield heterosis ranging from 31% to 55% compared to national check varieties. In addition to productivity, improving oil and meal quality has been a key objective. By integrating genes from canola-quality mustard lines, breeders have achieved reductions in erucic acid and glucosinolates, enhancing the health profile and industrial applicability of mustard oil. A high-density linkage map developed using an F1 double haploid mapping population has facilitated the marker-assisted backcross breeding of desirable traits, enabling precise transfer of key quality traits. Transgenic approaches, such as antisense RNA technology, have led to the development of high-oleic, low-linoleic mustard lines with improved fatty acid profiles. These advancements reflect a strategic combination of conventional and biotechnological methods, demonstrating a clear pathway for boosting mustard yields while enhancing oil quality. Molecular markers reported for genetic diversity assessment, mapping and tagging genes/QTLs for different qualitative and quantitative traits and their use in marker-assisted selection have been presented. This progress not only addresses current challenges but also sets the stage for future research aimed at further optimizing productivity, oil quality, and resistance to pests and diseases in mustard cultivation.
提高印度芥菜(Brassica spp. L.)油质的育种进展:成就、挑战和研究机会
油料作物改良的主要目标是提高种子和油的产量,根据用途(即食用或工业用途)提高油的质量,培育适合不同种植系统的品种,以及培育抗生物和非生物胁迫/耐受胁迫的品种。尽管传统的育种方法(包括纯系育种)只能提高少量产量,但芥菜育种的最新进展已在产量和油质方面取得重大突破。本综述讨论了促成这些进步的创新育种策略,重点是杂交种开发、油质改良和生物技术方法。为了提高生产率,德里大学的研究人员利用转基因谷仓星系统和细胞质雄性不育(CMS)系统开发了杂交种子生产技术。这些系统实现了大规模杂交种子生产,田间试验表明,与国家对照品种相比,杂交种子的产量差异显著,从 31% 到 55% 不等。除了产量,提高油和粕的质量也是一个关键目标。通过整合来自优质芥菜品系的基因,育种人员减少了芥酸和葡萄糖苷酸,提高了芥子油的健康状况和工业应用性。利用 F1 双单倍体制图群体开发的高密度连接图促进了理想性状的标记辅助回交育种,实现了关键质量性状的精确转移。通过反义 RNA 技术等转基因方法,开发出了具有更好脂肪酸谱的高油酸、低亚油酸芥菜品系。这些进步反映了传统方法和生物技术方法的战略性结合,展示了在提高芥菜产量的同时提升油质的明确途径。报告还介绍了用于遗传多样性评估、绘制和标记不同质量和数量性状基因/QTL 的分子标记及其在标记辅助选择中的应用。这一进展不仅解决了当前面临的挑战,还为今后旨在进一步优化芥菜种植的产量、油质和抗病虫害能力的研究奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Cell Biotechnology and Molecular Biology
Plant Cell Biotechnology and Molecular Biology Agricultural and Biological Sciences-Horticulture
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