Beneficial and pathogenic plant‐microbe interactions during flooding stress

Положительные и патогенные взаимодействия растений с микроорганизмами при стрессе, вызванном затоплением
Juan A. Martín, Alejandro Solla, Clara Martínez‐Arias, Johanna Witzell, Jesús Rodríguez‐Calcerrada
2022-07-22

beneficial microbesflooding stresshypoxiaplant-microbe interactionsrhizosphere microbiome
The number and intensity of flood events will likely increase in the future, raising the risk of flooding stress in terrestrial plants. Understanding flood effects on plant physiology and plant-associated microbes is key to alleviate flooding stress in sensitive species and ecosystems. Reduced oxygen supply is the main constrain to the plant and its associated microbiome. Hypoxic conditions hamper root aerobic respiration and, consequently, hydraulic conductance, nutrient uptake, and plant growth and development. Hypoxia favours the presence of anaerobic microbes in the rhizosphere and roots with potential negative effects to the plant due to their pathogenic behaviour or their soil denitrification ability. Moreover, plant physiological and metabolic changes induced by flooding stress may also cause dysbiotic changes in endosphere and rhizosphere microbial composition. The negative effects of flooding stress on the holobiont (i.e., the host plant and its associated microbiome) can be mitigated once the plant displays adaptive responses to increase oxygen uptake. Stress relief could also arise from the positive effect of certain beneficial microbes, such as mycorrhiza or dark septate endophytes. More research is needed to explore the spiralling, feedback flood responses of plant and microbes if we want to promote plant flood tolerance from a holobiont perspective.
1
Certain beneficial microbes (e.g., mycorrhizae and dark septate endophytes) can alleviate flooding stress and contribute to stress relief.
2
Flooding increases hypoxic conditions that constrain plant and associated microbiome oxygen supply, impairing root aerobic respiration.
3
Flooding-induced physiological and metabolic plant changes can cause dysbiosis in endosphere and rhizosphere microbial communities.
4
Hypoxia reduces plant hydraulic conductance, nutrient uptake, and overall plant growth and development.
5
Hypoxic conditions favor anaerobic microbes in rhizosphere and roots that can be pathogenic or increase soil denitrification, harming plants.
6
More research is needed to understand feedbacks between plant and microbial responses during flooding to promote holobiont-based flood tolerance.
7
Plant adaptive responses that increase oxygen uptake can mitigate negative flood effects on the holobiont.

Terrestrial plants and their associated microbiome (holobiont) under flooding stress

Interactions between beneficial and pathogenic plant-associated microbes and plant physiological responses under hypoxic flooding stress, and their effects on plant health, nutrient uptake, and flood tolerance

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Publication Date
2022-07-22
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Authors
Juan A. Martín
Alejandro Solla
Clara Martínez‐Arias
Johanna Witzell
Jesús Rodríguez‐Calcerrada
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