新出现的疾病:趋势研究和基于 omics 的分析揭示了内生菌调节辣椒植物抗逆性的机制

IF 2.1 3区 生物学 Q3 MICROBIOLOGY Symbiosis Pub Date : 2024-07-08 DOI:10.1007/s13199-024-01005-2
Wiwiek Harsonowati, Evy Latifah, Arinal Haq Izzawati Nurrahma, Jati Purwani, Rashid Iqbal, Javid Ahmad Parray, Ashish D. Patel
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引用次数: 0

摘要

辣椒作为一种广受欢迎的香料和重要的经济作物,在全球范围内受到广泛认可,但却面临着与气候变化相关的巨大压力威胁,尤其是植物病害的爆发。新出现的全球性病害,如疫病、炭疽果腐病和 Ralstonia 细菌性枯萎病威胁着辣椒生产国,造成每年大量减产。这些主要的威胁性病害因其分布广、范围大、存活期长而难以控制。病害管理方法依赖农用化学品,导致植物病原体产生抗药性和环境问题。目前的研究重点是开发创新、有效、无化学品和可持续的生物安全策略,以应对这些挑战。内生菌是植物的内共生体,由于其对宿主植物具有显著的基因组调控作用,为科学家提供了新的见解。本综述基于文献计量分析,重点介绍了影响辣椒作物的全球新兴疾病的现状。我们还重点介绍了内生菌介导的植物防御反应作为化学农药的可持续解决方案。本综述讨论了基于组学的技术在破译内生菌介导的辣椒植物耐受各种病原体的生化和分子机制方面的重要性。植物内生菌和多组学技术的综合方法有助于制定有效的缓解策略,以防止疾病爆发,从而在现代农业 4.0 - 绿色农业革命时代实现可持续的作物生产和环境恢复。
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Emerging diseases: trend research and omics-based analysis reveals mechanisms of endophytes modulate Chilli plant resilience

Chili pepper, widely recognized as a popular spice and an important cash crop worldwide, faces significant threats from climate change-related stress, particularly plant disease outbreaks. Emerging global diseases like Phytophthora blight, anthracnose fruit rot, and Ralstonia bacterial wilt threaten chili-producing countries, causing substantial annual yield losses. These major threatening diseases are difficult to control due to their widespread, extensive, and long-lived survival structures. Disease management practices rely on agrochemicals, leading to resistance to phytopathogens and environmental issues. Current research focuses on developing innovative, effective, chemical-free, and sustainable biosecurity strategies to address these challenges. Endophytes are plant endosymbionts that provide new insights for scientists due to their remarkable genome regulation to host plants. This review highlights the current state of emerging global diseases affecting chili pepper crops based on bibliometric analysis. We also focus on endophytes-mediated plant defense response as a sustainable solution for chemical pesticides. This review discusses the importance of omics-based technologies in deciphering the biochemical and molecular mechanisms of endophytes-mediated chili plant tolerance to various pathogens. A holistic approach of plant endophytes and multi-omics technologies can help develop effective mitigation strategies to prevent disease outbreaks for sustainable crop production and environmental restoration in the modern era of Agriculture 4.0 ‒ a green agricultural revolution.

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来源期刊
Symbiosis
Symbiosis 生物-微生物学
CiteScore
4.80
自引率
8.00%
发文量
56
审稿时长
>12 weeks
期刊介绍: Since 1985, Symbiosis publishes original research that contributes to the understanding of symbiotic interactions in a wide range of associations at the molecular, cellular and organismic level. Reviews and short communications on well-known or new symbioses are welcomed as are book reviews and obituaries. This spectrum of papers aims to encourage and enhance interactions among researchers in this rapidly expanding field. Topics of interest include nutritional interactions; mutual regulatory and morphogenetic effects; structural co-adaptations; interspecific recognition; specificity; ecological adaptations; evolutionary consequences of symbiosis; and methods used for symbiotic research.
期刊最新文献
Fungal community structure in bees: influence of biome and host species The monodominant species Spirotropis longifolia is mainly nodulated by strains of the genus Bradyrhizobium outside the B. japonicum and B. elkanii superclades The soil legacy produced by grass-endophyte-mycorrhizae fungi interaction increases legume establishment Are the symbiont faunas of the venomous echinoids Toxopneustes pileolus and Tripneustes gratilla (Echinoidea, Toxopneustidae) similar? Microbiome diversity and composition across development stages of the Blue Orchard Bee, Osmia lignaria (Megachilidae)
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