Insights in Microbe and Virus Interactions With Plants: 2021
Title | Insights in Microbe and Virus Interactions With Plants: 2021 PDF eBook |
Author | Marco Scortichini |
Publisher | Frontiers Media SA |
Pages | 198 |
Release | 2022-09-13 |
Genre | Science |
ISBN | 2889769364 |
Insights in Microbe and Virus Interactions with Plants: 2022
Title | Insights in Microbe and Virus Interactions with Plants: 2022 PDF eBook |
Author | Tofazzal Islam |
Publisher | Frontiers Media SA |
Pages | 131 |
Release | 2023-12-19 |
Genre | Science |
ISBN | 2832541372 |
Novel Insights Into Plant-Geminivirus Interactions
Title | Novel Insights Into Plant-Geminivirus Interactions PDF eBook |
Author | Jose Trinidad Ascencio-Ibáñez |
Publisher | Frontiers Media SA |
Pages | 169 |
Release | 2021-05-20 |
Genre | Science |
ISBN | 2889667855 |
Insights on Plant-Associated Microorganisms: Diversity, Systematics and Genomics
Title | Insights on Plant-Associated Microorganisms: Diversity, Systematics and Genomics PDF eBook |
Author | James T. Tambong |
Publisher | Frontiers Media SA |
Pages | 317 |
Release | 2023-11-16 |
Genre | Science |
ISBN | 2832539181 |
New insights into the influences of soil nutrients on plant-fungal symbiosis in agro- and forest ecosystems
Title | New insights into the influences of soil nutrients on plant-fungal symbiosis in agro- and forest ecosystems PDF eBook |
Author | Kai Sun |
Publisher | Frontiers Media SA |
Pages | 132 |
Release | 2023-08-03 |
Genre | Science |
ISBN | 2832531407 |
Population and Comparative Genomics of Plant Pathogenic Bacteria
Title | Population and Comparative Genomics of Plant Pathogenic Bacteria PDF eBook |
Author | Jeffrey Jones |
Publisher | Frontiers Media SA |
Pages | 220 |
Release | 2022-09-02 |
Genre | Science |
ISBN | 2889768929 |
Plant-Microbe Interactions
Title | Plant-Microbe Interactions PDF eBook |
Author | B.B. Biswas |
Publisher | Springer Science & Business Media |
Pages | 472 |
Release | 1998-04-30 |
Genre | Science |
ISBN | 9780306456787 |
Recent years have seen tremendous progress in unraveling the molecular basis of different plant-microbe interactions. Knowledge has accumulated on the mecha nisms of the microbial infection of plants, which can lead to either disease or resistance. The mechanisms developed by plants to interact with microbes, whether viruses, bacteria, or fungi, involve events that can lead to symbiotic association or to disease or tumor formation. Cell death caused by pathogen infection has been of great interest for many years because of its association with plant resistance. There appear to be two types of plant cell death associated with pathogen infection, a rapid hypersensitive cell death localized at the site of infection during an incompatible interaction between a resistant plant and an avirulent pathogen, and a slow, normosensitive plant cell death that spreads beyond the site of infection during some compatible interactions involving a susceptible plant and a virulent, necrogenic pathogen. Plants possess a number of defense mechanisms against infection, such as (i) production of phytoalexin, (ii) formation of hydrolases, (iii) accumulation of hydroxyproline-rich glycoprotein and lignin deposition, (iv) production of pathogen-related proteins, (v) produc tion of oligosaccharides, jasmonic acid, and various other phenolic substances, and (vi) production of toxin-metabolizing enzymes. Based on these observations, insertion of a single suitable gene in a particular plant has yielded promising results in imparting resistance against specific infection or disease. It appears that a signal received after microbe infection triggers different signal transduction pathways.