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Genomics and Effectomics of Filamentous Plant Pathogens

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Release : 2021-03-09
Genre : Science
Kind : eBook
Book Rating : 81X/5 ( reviews)

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Book Synopsis Genomics and Effectomics of Filamentous Plant Pathogens by : Wenwu Ye

Download or read book Genomics and Effectomics of Filamentous Plant Pathogens written by Wenwu Ye. This book was released on 2021-03-09. Available in PDF, EPUB and Kindle. Book excerpt:

Advances in Multi-omics Study of Filamentous Plant Pathogens

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Release : 2022-09-22
Genre : Science
Kind : eBook
Book Rating : 34X/5 ( reviews)

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Book Synopsis Advances in Multi-omics Study of Filamentous Plant Pathogens by : Danyu Shen

Download or read book Advances in Multi-omics Study of Filamentous Plant Pathogens written by Danyu Shen. This book was released on 2022-09-22. Available in PDF, EPUB and Kindle. Book excerpt:

Interactions Between Filamentous Plant Pathogens with their Host Plants and Biocontrol Agents

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Release : 2023-04-04
Genre : Science
Kind : eBook
Book Rating : 806/5 ( reviews)

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Book Synopsis Interactions Between Filamentous Plant Pathogens with their Host Plants and Biocontrol Agents by : Yurong Li

Download or read book Interactions Between Filamentous Plant Pathogens with their Host Plants and Biocontrol Agents written by Yurong Li. This book was released on 2023-04-04. Available in PDF, EPUB and Kindle. Book excerpt:

Plant Disease Management in the Post-Genomic Era: from Functional Genomics to Genome Editing

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Release : 2020
Genre :
Kind : eBook
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Book Synopsis Plant Disease Management in the Post-Genomic Era: from Functional Genomics to Genome Editing by : Sabrina Sarrocco

Download or read book Plant Disease Management in the Post-Genomic Era: from Functional Genomics to Genome Editing written by Sabrina Sarrocco. This book was released on 2020. Available in PDF, EPUB and Kindle. Book excerpt: Crop plants are continuously under attack by pathogens, both during pre and post-harvest stages, often causing economically important food losses. Chemical treatments can pose a serious treat to human health and the environment. Furthermore, there is an increasing market, especially in OECD countries for organic produce, for which most pesticides and inorganic fertilisers are unacceptable. There is therefore a pressing need to develop more effective, sustainable and environmentally friendly tools for disease control. The use of beneficial microorganisms for the control of plant pathogens is very attractive, and the availability of novel molecular techniques and a plethora of genomic information open unexplored avenues for plant protection approaches. Genome-enabled integration of research became a major strategy in the era of the 2000's (the post-genomic era) and set the basis for a different way to understand interactions in plant-pathogen-beneficial microorganisms systems. In recent decades we have moved from the sequencing of single genomes, to the comparison of different genomes, their expression (from single organism to communities) and, more recently, we can apply novel techniques to edit a genome in a precise manner. Together with the complete sequencing of plant genomes, the genome sequences of plant pathogens as well as that of some beneficial organisms (bacteria, fungi, viruses), and the furnished information on their virulence, gave support to relatively new strategies such as transcriptome, proteome, metabolome and secretome analysis. Analyses of avirulence and resistance genes, their products and the cross-talking mechanisms, as well as proteins and metabolites - at an "omics" level - in highly performing beneficial microorganisms/pathogens interactions, represents a major contribution to plant protection, providing information at an unprecedented level of resolution. While single genomes are explored to infer the range of biological activities accomplished by a single organism or species, and comparative genomics allows evaluating the diversity and evolution of biochemical pathways adopted by individual species to perform a common function, information is being obtained about processes carried out by a diverse set of organisms interacting with each other. Environmental genomics, popularized by the metagenome concept, can generate billions of DNA sequences from a given environment furnishing a comparative assessment of a community in situ. Metagenomics (sequence-based approaches applied across genomes in an environment) provides information about functional capabilities and responses of organism (plant, pathogen and beneficial agent) assemblages in different niches, giving a different perspective in the management of plant diseases at a multitrophic level. Advances in functional genomics and genome editing approaches have recently provided new tools to manage the plant-pathogen-beneficial microorganism system, for preventing or controlling disease. The use of RNA-based technologies is extremely appealing, and these include artificial micro-RNA and transacting small interfering RNA, which are currently being used for generating plant virus-resistant plants, thus fostering plant virus control researches. Finally, targeted genome editing strategies - exemplified by, but not limited to, the CRISPR-Cas technique - are among the most modern ways for inducing targeted deletions, insertions and precise changes in the genome of host plants or pathogens, as well as in the genomes of beneficial microorganisms. The aim of the present Research Topic is to give an exhaustive and up to date overview of examples of genomic techniques (genome sequencing, genome comparison, transcriptomics, metagenomics, RNA based technologies and genome editing strategies) applied to plants, pathogens or beneficial microorganisms to promote the exploitation of these modern tools as a new frontier in plant disease management.

Genomics and Effectomics of the Crop Killer Xanthomonas

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Release : 2016-08-09
Genre : Botany
Kind : eBook
Book Rating : 029/5 ( reviews)

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Book Synopsis Genomics and Effectomics of the Crop Killer Xanthomonas by : Nicolas Denancé

Download or read book Genomics and Effectomics of the Crop Killer Xanthomonas written by Nicolas Denancé. This book was released on 2016-08-09. Available in PDF, EPUB and Kindle. Book excerpt: Phytopathogenic bacteria of the Xanthomonas genus cause severe diseases on hundreds of host plants, including economically important crops, such as bean, cabbage, cassava, citrus, hemp, pepper, rice, sugarcane, tomato or wheat. Diseases occurring in nature comprise bacterial blight, canker, necrosis, rot, scald, spot, streak or wilt. Xanthomonas spp. are distributed worldwide and pathogenic and nonpathogenic strains are essentially found in association to plants. Some phytopathogenic strains are emergent or re-emergent and, consequently, dramatically impact agriculture, economy and food safety. During the last decades, massive efforts were undertaken to decipher Xanthomonas biology. So far, more than one hundred complete or draft genomes from diverse Xanthomonas species have been sequenced (http://www.xanthomonas.org), thus providing powerful tools to study genetic determinants triggering pathogenicity and adaptation to plant habitats. Xanthomonas spp. employ an arsenal of virulence factors to invade its host, including extracellular polysaccharides, plant cell wall-degrading enzymes, adhesins and secreted effectors. In most xanthomonads, type III secretion (T3S) system and secreted effectors (T3Es) are essential to bacterial pathogenicity through the inhibition of plant immunity or the induction of plant susceptibility (S) genes, as reported for Transcription Activation-Like (TAL) effectors. Yet, toxins can also be major virulence determinants in some xanthomonads while nonpathogenic Xanthomonas species do live in sympatry with plant without any T3S systems nor T3Es. In a context of ever increasing international commercial exchanges and modifications of the climate, monitoring and regulating pathogens spread is of crucial importance for food security. A deep knowledge of the genomic diversity of Xanthomonas spp. is required for scientists to properly identify strains, to help preventing future disease outbreaks and to achieve knowledge-informed sustainable disease resistance in crops. This Research Topic published in the ‘Plant Biotic Interactions’ section of Frontiers in Plant Science and Frontiers in Microbiology aims at illustrating several of the recent achievements of the Xanthomonas community. We collected twelve manuscripts dealing with comparative genomics or T3E repertoires, including five focusing on TAL effectors which we hope will contribute to advance research on plant pathogenic bacteria.

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