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替卡西林降解产物噻吩乙酸是一种新型生长素类似物,可促进番茄器官发生。

Ticarcillin degradation product thiophene acetic acid is a novel auxin analog that promotes organogenesis in tomato.

作者信息

George Suja, Rafi Mohammed, Aldarmaki Maitha, ElSiddig Mohamed, Nuaimi Mariam Al, Sudalaimuthuasari Naganeeswaran, Nath Vishnu Sukumari, Mishra Ajay Kumar, Hazzouri Khaled Michel, Shah Iltaf, Amiri Khaled M A

机构信息

Khalifa Center for Genetic Engineering and Biotechnology, United Arab Emirates University, Al-Ain, United Arab Emirates.

Department of Chemistry, College of Science, United Arab Emirates University, Al Ain, United Arab Emirates.

出版信息

Front Plant Sci. 2023 Sep 4;14:1182074. doi: 10.3389/fpls.2023.1182074. eCollection 2023.

Abstract

Efficient regeneration of transgenic plants from explants after transformation is one of the crucial steps in developing genetically modified plants with desirable traits. Identification of novel plant growth regulators and developmental regulators will assist to enhance organogenesis in culture. In this study, we observed enhanced shoot regeneration from tomato cotyledon explants in culture media containing timentin, an antibiotic frequently used to prevent Agrobacterium overgrowth after transformation. Comparative transcriptome analysis of explants grown in the presence and absence of timentin revealed several genes previously reported to play important roles in plant growth and development, including Auxin Response Factors (ARFs), GRF Interacting Factors (GIFs), Flowering Locus T (SP5G), Small auxin up-regulated RNAs (SAUR) etc. Some of the differentially expressed genes were validated by quantitative real-time PCR. We showed that ticarcillin, the main component of timentin, degrades into thiophene acetic acid (TAA) over time. TAA was detected in plant tissue grown in media containing timentin. Our results showed that TAA is indeed a plant growth regulator that promotes root organogenesis from tomato cotyledons in a manner similar to the well-known auxins, indole-3-acetic acid (IAA) and indole-3-butyric acid (IBA). In combination with the cytokinin 6-benzylaminopurine (BAP), TAA was shown to promote shoot organogenesis from tomato cotyledon in a concentration-dependent manner. To the best of our knowledge, the present study reports for the first time demonstrating the function of TAA as a growth regulator in a plant species. Our work will pave the way for future studies involving different combinations of TAA with other plant hormones which may play an important role in organogenesis of recalcitrant species. Moreover, the differentially expressed genes and long noncoding RNAs identified in our transcriptome studies may serve as contender genes for studying molecular mechanisms of shoot organogenesis.

摘要

转化后从外植体高效再生转基因植物是培育具有理想性状的转基因植物的关键步骤之一。鉴定新型植物生长调节剂和发育调节剂将有助于提高培养中的器官发生。在本研究中,我们观察到在含有替卡西林(一种常用于防止转化后农杆菌过度生长的抗生素)的培养基中,番茄子叶外植体的芽再生增强。对在有和没有替卡西林的情况下生长的外植体进行比较转录组分析,发现了几个先前报道在植物生长和发育中起重要作用的基因,包括生长素响应因子(ARFs)、GRF相互作用因子(GIFs)、成花素基因T(SP5G)、小生长素上调RNA(SAUR)等。一些差异表达基因通过定量实时PCR进行了验证。我们发现替卡西林的主要成分替卡西林随时间降解为噻吩乙酸(TAA)。在含有替卡西林的培养基中生长的植物组织中检测到了TAA。我们的结果表明,TAA确实是一种植物生长调节剂,它以类似于著名的生长素吲哚-3-乙酸(IAA)和吲哚-3-丁酸(IBA)的方式促进番茄子叶的根器官发生。与细胞分裂素6-苄基腺嘌呤(BAP)结合,TAA被证明以浓度依赖的方式促进番茄子叶的芽器官发生。据我们所知,本研究首次报道了TAA作为一种生长调节剂在植物物种中的功能。我们的工作将为未来涉及TAA与其他植物激素不同组合的研究铺平道路,这些组合可能在难再生物种的器官发生中发挥重要作用。此外,我们转录组研究中鉴定的差异表达基因和长链非编码RNA可能作为研究芽器官发生分子机制的候选基因。

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