Javascript must be enabled to continue!
Temporal continuity of habitat strengthens covariation between plant and arbuscular mycorrhizal fungal communities
View through CrossRef
Abstract
Old grassland is considered one of the most biodiverse terrestrial ecosystems. The habitat temporal continuity may promote the accumulation of host species and symbiont arbuscular mycorrhizal fungi (AMF) diversity and strengthen symbiont interactions. We tested the hypothesis that covariation between AMF and plant communities is stronger in old grasslands. We compared the relationship between AMF and plant communities in forests and in new and old semi-natural grasslands in Japan. DNA was extracted from bulk roots collected at each site and from roots of
Miscanthus sinensis
at each grassland site. AMF operational taxonomic unit was characterized on the basis of small subunit
rRNA
gene sequences. Old grasslands harboured the highest diversity of AMF among vegetation types. The AMF compositions were significantly related to those of plant species. The covariation of plant–AMF communities was stronger in old grasslands than in new grasslands. Individuals of
M. sinensis
were found to share AMF with bulk roots comprising different species. This suggests that AMF form a common mycorrhizal network among several coexisting plants of different species. Increasing AMF diversity in the shared rhizosphere has been proposed to lead to more efficient utilization of soil nutrients and to increase overall benefits of plant–AMF facilitation.
Title: Temporal continuity of habitat strengthens covariation between plant and arbuscular mycorrhizal fungal communities
Description:
Abstract
Old grassland is considered one of the most biodiverse terrestrial ecosystems.
The habitat temporal continuity may promote the accumulation of host species and symbiont arbuscular mycorrhizal fungi (AMF) diversity and strengthen symbiont interactions.
We tested the hypothesis that covariation between AMF and plant communities is stronger in old grasslands.
We compared the relationship between AMF and plant communities in forests and in new and old semi-natural grasslands in Japan.
DNA was extracted from bulk roots collected at each site and from roots of
Miscanthus sinensis
at each grassland site.
AMF operational taxonomic unit was characterized on the basis of small subunit
rRNA
gene sequences.
Old grasslands harboured the highest diversity of AMF among vegetation types.
The AMF compositions were significantly related to those of plant species.
The covariation of plant–AMF communities was stronger in old grasslands than in new grasslands.
Individuals of
M.
sinensis
were found to share AMF with bulk roots comprising different species.
This suggests that AMF form a common mycorrhizal network among several coexisting plants of different species.
Increasing AMF diversity in the shared rhizosphere has been proposed to lead to more efficient utilization of soil nutrients and to increase overall benefits of plant–AMF facilitation.
Related Results
Forty years of study on interactions between walnut tree and arbuscular mycorrhizal fungi. A review
Forty years of study on interactions between walnut tree and arbuscular mycorrhizal fungi. A review
AbstractWalnut trees are among the most important hardwood species in the northern hemisphere, ecologically and economically. They are mainly cultivated for timber and nut producti...
Plant–soil feedbacks between arbuscular- and ecto-mycorrhizal communities
Plant–soil feedbacks between arbuscular- and ecto-mycorrhizal communities
Abstract
Soil microbiomes of adult trees exert species-specific effects on the survival and growth of seedlings
1-6
...
Influence of AM fungi inoculation on Capsicum annuum L. plant grown in microwave-sterilized media
Influence of AM fungi inoculation on Capsicum annuum L. plant grown in microwave-sterilized media
The presence of arbuscular mycorrhizal in soil may affect growth and yield of chili (Capsicum annuum L.). This experiment was done to know the effect of arbuscular mycorrhizal inoc...
Effects of Salinity and Arbuscular Mycorrhizal Fungi Interations on Morphology of 10 Varieties of Tomato (Solanum lycopersicum L.)
Effects of Salinity and Arbuscular Mycorrhizal Fungi Interations on Morphology of 10 Varieties of Tomato (Solanum lycopersicum L.)
Solanum lycopersicum L. (Tomato) is one of the plants commonly grown for its edible fruits all over the world. It is an important component of the average Nigerian meal. The presen...
Arbuscular mycorrhizal fungi in oat-pea intercropping
Arbuscular mycorrhizal fungi in oat-pea intercropping
Abstract
Arbuscular mycorrhizal fungal diversity can be altered by intercropping plant species, as well as N fertilizer applications. This study ...
Arbuscular mycorrhizal fungi in oat-pea intercropping
Arbuscular mycorrhizal fungi in oat-pea intercropping
Abstract
Arbuscular mycorrhizal fungal diversity can be altered by intercropping plant species, as well as N fertilizer applications. This study ...
Arbuscular mycorrhiza influences the growth and biochemical parameters of Cassia fistula L. seedlings, contrasting with the naturally occurring established trees
Arbuscular mycorrhiza influences the growth and biochemical parameters of Cassia fistula L. seedlings, contrasting with the naturally occurring established trees
The efficacy of rhizospheric native arbuscular mycorrhizal fungi from naturally growing Cassia fistula L. trees was evaluated by utilizing seeds from the same trees to assess growt...
EFFECTS OF MYCORRHIZAL INFECTION ON PLANT GROWTH, NITROGEN AND PHOSPHORUS NUTRITION IN GLASSHOUSE‐GROWN ALLIUM CEPAL.
EFFECTS OF MYCORRHIZAL INFECTION ON PLANT GROWTH, NITROGEN AND PHOSPHORUS NUTRITION IN GLASSHOUSE‐GROWN ALLIUM CEPAL.
SUMMARYGrowth and rates of uptake of nitrogen and phosphorus (inflow) in Allium cepa L. were measured in three experiments. Effects of mycorrhizal infection (Glomus mosseae (Nicol....

