Javascript must be enabled to continue!
Arbuscular Mycorrhizal Fungi Associated with Tree Species in a Planted Forest of Eastern China
View through CrossRef
Arbuscular mycorrhizal fungi (AMF) play an important role in the establishment and maintenance of plant communities in forest ecosystems. Most previous studies about AMF have been conducted in natural forests, and little attention has been paid to trees in planted forests. This study investigated AMF associated with tree species and the relationships between edaphic factors and AMF communities in a planted forest of eastern China. We found high total AMF colonization rates in the roots of Carya illinoensis (Wangenh.) K. Koch, Zelkova serrata (Thunb.) Makinoz, Taxodium ‘zhongshansha’, Eucommia ulmoides Oliv., and Elaeagnus pungens Thunb., ranging from 62.07% to 100%, indicating that AMF can establish effective symbiotic relationships with these tree species. The AMF colonization rate was significantly and negatively correlated with soil phosphorus, while AMF colonization intensity was significantly and negatively correlated with soil moisture content, total carbon, and organic matter content. Spore density was in the range of 4.38 to 76.38 spores per g soil. In total, 35 AMF species from 10 genera were identified. Glomus and Acaulospora were the dominant genera. Acaulospora foveata and Septoglomus constrictum were the dominant species. AMF communities differed among the tree species and were closely related to edaphic factors, and AMF diversity was significantly related to soil carbon and pH. Our results revealed the colonization, community, and diversity of AMF associated with tree species, as well as their relationships with edaphic factors, in planted forests. Our findings can be used to provide insight on the utilization and management of AMF to maintain sustainable management of planted forests.
Title: Arbuscular Mycorrhizal Fungi Associated with Tree Species in a Planted Forest of Eastern China
Description:
Arbuscular mycorrhizal fungi (AMF) play an important role in the establishment and maintenance of plant communities in forest ecosystems.
Most previous studies about AMF have been conducted in natural forests, and little attention has been paid to trees in planted forests.
This study investigated AMF associated with tree species and the relationships between edaphic factors and AMF communities in a planted forest of eastern China.
We found high total AMF colonization rates in the roots of Carya illinoensis (Wangenh.
) K.
Koch, Zelkova serrata (Thunb.
) Makinoz, Taxodium ‘zhongshansha’, Eucommia ulmoides Oliv.
, and Elaeagnus pungens Thunb.
, ranging from 62.
07% to 100%, indicating that AMF can establish effective symbiotic relationships with these tree species.
The AMF colonization rate was significantly and negatively correlated with soil phosphorus, while AMF colonization intensity was significantly and negatively correlated with soil moisture content, total carbon, and organic matter content.
Spore density was in the range of 4.
38 to 76.
38 spores per g soil.
In total, 35 AMF species from 10 genera were identified.
Glomus and Acaulospora were the dominant genera.
Acaulospora foveata and Septoglomus constrictum were the dominant species.
AMF communities differed among the tree species and were closely related to edaphic factors, and AMF diversity was significantly related to soil carbon and pH.
Our results revealed the colonization, community, and diversity of AMF associated with tree species, as well as their relationships with edaphic factors, in planted forests.
Our findings can be used to provide insight on the utilization and management of AMF to maintain sustainable management of planted forests.
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...
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...
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
...
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...
A review: Molecular identification of orchid mycorrhiza
A review: Molecular identification of orchid mycorrhiza
Orchids are a diverse and widespread family of flowering plants, with over 25,000 known species and more than 100,000 hybrids and cultivars. Orchids are characterised by their ofte...
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 ...

