植物病害管理中易感基因潜力的揭示:现状与展望

IF 0.7 Q4 PLANT SCIENCES Plant Science Today Pub Date : 2023-08-19 DOI:10.14719/pst.2145
Kajal Thakur, N. Salaria, Baljeet Singh, V. Bhardwaj, S. Kukreja, U. Goutam
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引用次数: 0

摘要

全球人口的增长需要相应的粮食产量增长来满足全球粮食需求。作物生产受到各种生物和非生物胁迫的挑战,这些胁迫降低了作物的产量和产量。因此,对作物进行适当的病害管理可确保全球粮食安全。各种化学、物理和生物防治疾病的方法已被设计和用于植物保护。然而,由于这些方法的效率较低,现代研究已转向基因工程方法。近年来分子技术的发展揭示了控制植物先天免疫系统和植物与病原体相互作用的分子机制。早期的研究表明,病原体利用宿主的易感基因(S)来维持自身的可持续性和疾病的发展。通过抑制S基因表达获得的抗性提供了对病原体的抗性。利用S基因来增强抗病能力将为传统的疾病控制方法提供一种更持久、更有效的选择。因此,本综述强调了这种新工具在诱导植物抗病方面的潜力。
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Unravelling the potential of susceptibility genes in plant disease management: Present status and future prospects
The increasing global population requires an equivalent increase in food production to meet the global food demand. Crop production is challenged by various biotic and abiotic stresses, which decrease crop yield and production. Thus, proper disease management for crops ensures global food security. Various chemical, physical, and biological disease control methods have been devised and used for plant protection. However, due to the low efficiency of these methods, modern research has shifted to genetic engineering approaches. The recent advances in molecular techniques have revealed the molecular mechanisms controlling the plant’s innate immune system and plant-pathogen interactions. Earlier studies revealed that the pathogens utilize the susceptibility (S) genes in hosts for their sustainability and disease development. The resistance achieved by suppressing the S genes expression provides resistance against pathogens. Exploiting S genes for imparting/enhancing disease resistance would offer a more durable and effective alternative to conventional disease control methods. Therefore, the present review highlights the potential of this novel tool for inducing disease resistance in plants.
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来源期刊
Plant Science Today
Plant Science Today PLANT SCIENCES-
CiteScore
1.50
自引率
11.10%
发文量
177
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