Effects of Epigenetic Inhibitors on Somatic Embryogenesis in Wheat (Triticum aestivum L.)

IF 1.4 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES Iranian Journal of Science and Technology, Transactions A: Science Pub Date : 2024-07-29 DOI:10.1007/s40995-024-01679-9
Sumeyra UCAR, Murat AYDIN
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Abstract

Wheat (Triticum aestivum L.) is a global staple cereal known for its nutritional value and economic significance. Somatic embryogenesis (SE) is a powerful biotechnological tool for plant genetic improvement, driven by intricate epigenetic mechanisms as well as controlled by key genes such as Wuschel-related HOMEOBOX (WOX4), Leafy cotyledon (LEC1), Baby Boom 1 (BBM1), and Somatic embryogenesis receptor kinase (TaSERK). This study investigates the impact of different concentrations (0.1, 0.5, 1, and 2 µM) of Trichostatin A (TSA) and 5-Azacytidine (5-Azac), recognized epigenetic inhibitors, on mature embryos of Kırık bread wheat variety cultured in a callus formation medium. In vitro parameters including Callus formation frequency (CFF) (mg), callus fresh weight (CFW) (%), embryogenic callus formation frequency (ECFF) (%), embryogenic callus frequency (RECF) (%), and regeneration efficiency (RE) (number) as well as expression levels of WOX4, LEC1, BBM1, and TaSERK genes, were evaluated at 14, 28, and 42 days after initiation of tissue culture (DAI). The results show that TSA and 5-Azac treatments had a considerable influence on the in vitro parameters tested. Furthermore, these compounds had a significant effect on the mRNA expression levels of the WOX4, LEC1, BBM1, and TaSERK genes, which are important in SE. Specifically, LEC1 expression peaked at 42 DAI across all treatments, while WOX4 and BBM1 peaked at 14 DAI. TaSERK expression decreased by 42 DAI, with variations depending on treatment at previous time points. As a result of this study, 0.5 µM TSA and 5 µM 5-Azac treatments resulted in optimal plant regeneration, emphasizing the importance of epigenetic regulators in promoting somatic embryogenesis via endosperm-supported mature embryo in wheat. This study suggests addressing epigenetic systems to improve SE protocols and inform wheat genetic engineering and breeding initiatives for sustainable agriculture and food security.

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表观遗传抑制剂对小麦体细胞胚胎发生的影响
小麦(Triticum aestivum L.)是一种全球主食谷物,以其营养价值和经济意义而闻名。体细胞胚胎发生(SE)是植物遗传改良的强大生物技术手段,由复杂的表观遗传学机制驱动,并受关键基因(如 Wuschel 相关 HOMEOBOX (WOX4)、叶状子叶 (LEC1)、Baby Boom 1 (BBM1) 和体细胞胚胎发生受体激酶 (TaSERK) 等)控制。本研究调查了在胼胝体形成培养基中培养的 Kırık 面包小麦品种的成熟胚受到不同浓度(0.1、0.5、1 和 2 µM)的 Trichostatin A(TSA)和 5-Azacytidine (5-Azac)(公认的表观遗传抑制剂)的影响。在组织培养(DAI)开始后的 14、28 和 42 天评估了体外参数,包括胼胝体形成频率(CFF)(毫克)、胼胝体鲜重(CFW)(%)、胚化胼胝体形成频率(ECFF)(%)、胚化胼胝体频率(RECF)(%)、再生效率(RE)(数量)以及 WOX4、LEC1、BBM1 和 TaSERK 基因的表达水平。结果表明,TSA 和 5-Azac 处理对测试的体外参数有相当大的影响。此外,这些化合物对 WOX4、LEC1、BBM1 和 TaSERK 基因的 mRNA 表达水平有显著影响,而这些基因在 SE 中具有重要作用。具体来说,在所有处理中,LEC1 的表达在 42 DAI 时达到峰值,而 WOX4 和 BBM1 则在 14 DAI 时达到峰值。TaSERK 的表达在 42 DAI 时下降,其变化取决于前几个时间点的处理。本研究结果表明,0.5 µM TSA 和 5 µM 5-Azac 处理可实现最佳植株再生,这强调了表观遗传调节因子在通过胚乳支持的小麦成熟胚促进体细胞胚胎发生方面的重要性。这项研究建议解决表观遗传系统问题,以改进体细胞胚胎发生方案,并为小麦遗传工程和育种计划提供信息,从而促进可持续农业和粮食安全。
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来源期刊
CiteScore
4.00
自引率
5.90%
发文量
122
审稿时长
>12 weeks
期刊介绍: The aim of this journal is to foster the growth of scientific research among Iranian scientists and to provide a medium which brings the fruits of their research to the attention of the world’s scientific community. The journal publishes original research findings – which may be theoretical, experimental or both - reviews, techniques, and comments spanning all subjects in the field of basic sciences, including Physics, Chemistry, Mathematics, Statistics, Biology and Earth Sciences
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