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番茄雄性不育系统研究与应用的分子进展

Molecular advances in research and applications of male sterility systems in tomato.

作者信息

Priyadarsini Srija, Singh Saurabh, Nandi Alok

机构信息

Department of Vegetable Science, Odisha University of Agriculture and Technology (OUAT), Bhubaneswar, 751003, India.

Department of Vegetable Science, College of Horticulture and Forestry, Rani Lakshmi Bai Central Agricultural University (RLBCAU), Jhansi, U.P, 284003, India.

出版信息

Plant Physiol Biochem. 2025 Mar;220:109503. doi: 10.1016/j.plaphy.2025.109503. Epub 2025 Jan 13.

Abstract

Tomato, belonging to the nightshade family, is globally considered as a model system for classical and molecular genetics, genomics, and reproductive developmental studies. In the current scenario of climate change, hybrid development is among the crucial elements in the genetic improvement of crop plants. The phenomenon of male sterility is a viable approach for ensuring hybrid seed purity and reducing the cost of hybrid seed production. This review aims to shed light on the use of neoteric genomics and genome editing tools in understanding the genetics and molecular regulation of male sterility in tomato. Plant male gametophyte development is highly susceptible to environmental stress. Abnormalities at any stage of male reproductive development, such as premature or delayed tapetal cell degradation triggered by oxidative stress and programmed cell death (PCD) leads to male sterility in tomato. In tomato, more than 55 sporogenous, structural, and functional male sterile mutants, which are mainly under the control of recessive nuclear genes, have been reported. Recently, the role of open reading frames (ORFs) in governing cytoplasmic male sterility in tomato has also been documented. This review highlights the genetic and genomic progress in the investigation of underlying molecular pathways and practical application of potential male sterile mutants in tomato breeding. The applications and future prospects of genome engineering with CRISPR/Cas9 and mitoTALEN in the generation of novel male sterile systems to expedite tomato breeding is discussed.

摘要

番茄属于茄科,在全球范围内被视为经典遗传学、分子遗传学、基因组学及生殖发育研究的模式系统。在当前气候变化的背景下,杂种优势利用是作物遗传改良的关键要素之一。雄性不育现象是确保杂交种子纯度和降低杂交种子生产成本的可行途径。本综述旨在阐明新型基因组学和基因组编辑工具在理解番茄雄性不育的遗传学和分子调控方面的应用。植物雄配子体发育对环境胁迫高度敏感。雄性生殖发育任何阶段的异常,如氧化应激和程序性细胞死亡(PCD)引发的绒毡层细胞过早或延迟降解,都会导致番茄雄性不育。在番茄中,已报道了55个以上的孢子发生、结构和功能雄性不育突变体,这些突变体主要受隐性核基因控制。最近,开放阅读框(ORF)在调控番茄细胞质雄性不育中的作用也有文献记载。本综述着重介绍了在番茄雄性不育潜在突变体的潜在分子途径研究及实际应用方面的遗传和基因组学进展。还讨论了利用CRISPR/Cas9和线粒体靶向核酸酶(mitoTALEN)进行基因组工程在创建新型雄性不育系统以加速番茄育种方面的应用和未来前景。

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