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现代蓖麻改良育种方法。

Modern day breeding approaches for improvement of castor.

作者信息

Patel Rumit, Menon Juned, Kumar Sushil, Nóbrega Márcia B M, Patel Dipak A, Sakure Amar A, Vaja Mahesh B

机构信息

Department of Agricultural Biotechnology, Anand Agricultural University, Anand, 388110, India.

Department of Genetics & Plant Breeding, B. A. College of Agriculture, Anand Agricultural University, Anand, 388110, India.

出版信息

Heliyon. 2024 Feb 24;10(5):e27048. doi: 10.1016/j.heliyon.2024.e27048. eCollection 2024 Mar 15.

Abstract

Castor ( L.) is an industrially important oil producing crop belongs to Euphorbiaceae family. Castor oil has unique chemical properties make it industrially important crop. It is a member of monotypic genus even though it has ample amount of variability. Using this variability, conventionally many varieties and hybrids have been developed. But, like other crops, the modern and unconventional methods of crop improvement has not fully explored in castor. This article discusses the use of polyploidy induction, distant/wide hybridization and mutation breeding as tools for generating variety. Modern approaches accelerate the speed of crop breeding as an alternative tool. To achieve this goal, molecular markers are employed in breeding to capture the genetic variability through molecular analysis and population structuring. Allele mining is used to trace the evolution of alleles, identify new haplotypes and produce allele specific markers for use in marker aided selection using Genome wide association studies (GWAS) and quantitative trait loci (QTL) mapping. Plant genetic transformation is a rapid and effective mode of castor improvement is also discussed here. The efforts towards developing stable regeneration protocol provide a wide range of utility like embryo rescue in distant crosses, development of somaclonal variation, haploid development using anther culture and callus development for stable genetic transformation has reviewed in this article. Omics has provided intuitions to the molecular mechanisms of (a)biotic stress management in castor along with dissected out the possible genes for improving the yield. Relating genes to traits offers additional scientific inevitability leading to enhancement and sympathetic mechanisms of yield improvement and several stress tolerance.

摘要

蓖麻(Ricinus communis L.)是大戟科一种具有重要工业价值的产油作物。蓖麻油独特的化学性质使其成为具有重要工业价值的作物。尽管蓖麻具有丰富的变异性,但它是单型属的一员。利用这种变异性,传统上已经培育出了许多品种和杂交种。但是,与其他作物一样,蓖麻中现代和非常规的作物改良方法尚未得到充分探索。本文讨论了利用多倍体诱导、远缘/广泛杂交和诱变育种作为培育品种的工具。现代方法作为一种替代工具加快了作物育种的速度。为了实现这一目标,在育种中使用分子标记通过分子分析和群体结构来捕捉遗传变异性。等位基因挖掘用于追踪等位基因的进化、识别新的单倍型并产生等位基因特异性标记,以用于利用全基因组关联研究(GWAS)和数量性状位点(QTL)定位的标记辅助选择。本文还讨论了植物遗传转化作为蓖麻改良的一种快速有效的方式。本文综述了为开发稳定再生方案所做的努力,这些努力具有广泛的用途,如远缘杂交中的胚挽救、体细胞无性系变异的发育、利用花药培养进行单倍体发育以及用于稳定遗传转化的愈伤组织发育。组学为蓖麻中(非)生物胁迫管理的分子机制提供了见解,并剖析了可能提高产量的基因。将基因与性状联系起来提供了额外科学必然性,从而导致产量提高和多种胁迫耐受性的增强及相关机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4e2/10920369/3c061779feac/ga1.jpg

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