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克隆玉米几丁质酶 1 基因并在遗传转化水稻中表达以赋予对稻瘟病菌引起的稻瘟病的抗性。

Cloning of maize chitinase 1 gene and its expression in genetically transformed rice to confer resistance against rice blast caused by Pyricularia oryzae.

机构信息

Department of Biological Sciences, International Islamic University, Islamabad, Pakistan.

Department of Botany, University of Poonch Rawalakot, Rawalakot, Azad Jammu and Kashmir, Pakistan.

出版信息

PLoS One. 2024 Jan 16;19(1):e0291939. doi: 10.1371/journal.pone.0291939. eCollection 2024.

Abstract

Fungal pathogens are one of the major reasons for biotic stress on rice (Oryza sativa L.), causing severe productivity losses every year. Breeding for host resistance is a mainstay of rice disease management, but conventional development of commercial resistant varieties is often slow. In contrast, the development of disease resistance by targeted genome manipulation has the potential to deliver resistant varieties more rapidly. The present study reports the first cloning of a synthetic maize chitinase 1 gene and its insertion in rice cv. (Basmati 385) via Agrobacterium-mediated transformation to confer resistance to the rice blast pathogen, Pyricularia oryzae. Several factors for transformation were optimized; we found that 4-week-old calli and an infection time of 15 minutes with Agrobacterium before colonization on co-cultivation media were the best-suited conditions. Moreover, 300 μM of acetosyringone in co-cultivation media for two days was exceptional in achieving the highest callus transformation frequency. Transgenic lines were analyzed using molecular and functional techniques. Successful integration of the gene into rice lines was confirmed by polymerase chain reaction with primer sets specific to chitinase and hpt genes. Furthermore, real-time PCR analysis of transformants indicated a strong association between transgene expression and elevated levels of resistance to rice blast. Functional validation of the integrated gene was performed by a detached leaf bioassay, which validated the efficacy of chitinase-mediated resistance in all transgenic Basmati 385 plants with variable levels of enhanced resistance against the P. oryzae. We concluded that overexpression of the maize chitinase 1 gene in Basmati 385 improved resistance against the pathogen. These findings will add new options to resistant germplasm resources for disease resistance breeding. The maize chitinase 1 gene demonstrated potential for genetic improvement of rice varieties against biotic stresses in future transformation programs.

摘要

真菌病原体是导致水稻(Oryza sativa L.)生物胁迫的主要原因之一,每年造成严重的生产力损失。培育宿主抗性是水稻病害管理的主要支柱,但常规开发商业抗性品种往往进展缓慢。相比之下,通过靶向基因组操作开发抗病性有可能更快地提供抗性品种。本研究首次报告了通过农杆菌介导的转化将合成的玉米几丁质酶 1 基因及其插入水稻品种(Basmati 385)中,以赋予对稻瘟病菌(Pyricularia oryzae)的抗性。优化了转化的几个因素;我们发现,4 周龄的愈伤组织和在共培养培养基上定植前用农杆菌感染 15 分钟是最合适的条件。此外,在共培养培养基中添加 300 μM 的乙酰丁香酮持续两天对实现最高的愈伤组织转化频率是例外。使用分子和功能技术分析转基因系。通过针对几丁质酶和 hpt 基因的引物对聚合酶链反应成功地证实了基因整合到水稻品系中。此外,转化体的实时 PCR 分析表明,转基因表达与对稻瘟病的抗性增强之间存在很强的关联。通过离体叶片生物测定对整合基因进行功能验证,该测定验证了所有转基因 Basmati 385 植物中几丁质酶介导的抗性的功效,这些植物对 P. oryzae 的抗性水平不同。我们得出结论,在 Basmati 385 中过表达玉米几丁质酶 1 基因可提高对病原体的抗性。这些发现将为抗病性育种增加新的抗性种质资源选择。玉米几丁质酶 1 基因在未来的转化计划中为提高水稻品种对生物胁迫的抗性提供了潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f701/10791007/fb82943751dd/pone.0291939.g001.jpg

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