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钆通过激活茉莉酸/乙烯诱导的防御反应起到保护作用。

Gadolinium Protects against through the Activation of JA/ET-Induced Defense Responses.

作者信息

Batista-Oliveira Juliana Santos, Formey Damien, Torres Martha, Aragón Wendy, Romero-Contreras Yordan Jhovani, Maruri-López Israel, Tromas Alexandre, Schwan-Estrada Kátia Regina Freitas, Serrano Mario

机构信息

Centro de Ciencias Genómicas, Universidad Nacional Autónoma de México, Av. Universidad 2001, Cuernavaca, Morelos 62209, Mexico.

Departamento de Agronomia, Universidade Estadual de Maringá, Maringá 87020, Brazil.

出版信息

Int J Mol Sci. 2021 May 6;22(9):4938. doi: 10.3390/ijms22094938.

Abstract

Plant food production is severely affected by fungi; to cope with this problem, farmers use synthetic fungicides. However, the need to reduce fungicide application has led to a search for alternatives, such as biostimulants. Rare-earth elements (REEs) are widely used as biostimulants, but their mode of action and their potential as an alternative to synthetic fungicides have not been fully studied. Here, the biostimulant effect of gadolinium (Gd) is explored using the plant-pathosystem - We determine that Gd induces local, systemic, and long-lasting plant defense responses to , without affecting fungal development. The physiological changes induced by Gd have been related to its structural resemblance to calcium. However, our results show that the calcium-induced defense response is not sufficient to protect plants against , compared to Gd. Furthermore, a genome-wide transcriptomic analysis shows that Gd induces plant defenses and modifies early and late defense responses. However, the resistance to is dependent on JA/ET-induced responses. These data support the conclusion that Gd can be used as a biocontrol agent for . These results are a valuable tool to uncover the molecular mechanisms induced by REEs.

摘要

植物粮食生产受到真菌的严重影响;为应对这一问题,农民使用合成杀菌剂。然而,减少杀菌剂使用的需求促使人们寻找替代品,如生物刺激剂。稀土元素(REEs)被广泛用作生物刺激剂,但其作用方式以及作为合成杀菌剂替代品的潜力尚未得到充分研究。在此,利用植物 - 病原菌系统探究钆(Gd)的生物刺激作用——我们确定Gd可诱导植物产生局部、系统和持久的防御反应,而不影响真菌的生长。Gd诱导的生理变化与其与钙的结构相似性有关。然而,我们的结果表明,与Gd相比,钙诱导的防御反应不足以保护植物抵御(病原菌)。此外,全基因组转录组分析表明,Gd可诱导植物防御并改变早期和晚期防御反应。然而,对(病原菌)的抗性依赖于茉莉酸/乙烯诱导的反应。这些数据支持Gd可作为(病原菌)生物防治剂的结论。这些结果是揭示稀土元素诱导分子机制的宝贵工具。

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