Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Diversity analysis of leaf endophytic fungi and rhizosphere soil fungi of Korean Epimedium at different growth stages

View through CrossRef
Abstract Background Rhizosphere fungi and endophytic fungi play key roles in plant growth and development; however, their role in the growth of Epimedium koreanum Nakai at different stages remains unclear. Here, we used the Illumina MiSeq system, a high-throughput sequencing technology, to study the endophytic fungi and rhizosphere microbiome of Korean Epimedium. Results Epimedium koreanum Nakai rhizosphere soil and leaves had highly diverse fungal communities during the growth process. The relative abundance of soil fungi in the rhizosphere stage was higher than that of leaf endophytic fungi in the early growth stage, but the overall abundance was basically equal. Sebacina is a significantly divergent fungal genera, and Sebacina sp. are present among leaf fungi species in the rhizosphere soil of Epimedium koreanum Nakai. Sebacina sp. can move to each other in rhizosphere soil fungi and leaf endophytes. VIF (variance inflation factor) analysis showed that soluble salt, whole nitrogen, alkaline lysis nitrogen, whole phosphorus, total potassium, and fast-acting potassium are useful environmental factors for rhizosphere soil and leaf endophytic fungi: potassium, total nitrogen, whole phosphorus, and three environmental factors were significantly and positively associated with the relative abundance of Sebacina sp. Conclusions (1) This study is the first to clarify the species diversity of fungi in Epimedium koreanum Nakai leaf and rhizosphere soil. (2) Different fungal communities of rhizosphere soil fungi and leaf endophytic fungi at different growth stages of Epimedium koreanum Nakai were examined. (3) Sebacina sp. can move to each other between rhizosphere soil fungi and leaf endophytic fungi. (4) Nitrogen, phosphorus and potassium elements in the environment have a significant positive effect on the relative abundance of Sebacina sp.
Title: Diversity analysis of leaf endophytic fungi and rhizosphere soil fungi of Korean Epimedium at different growth stages
Description:
Abstract Background Rhizosphere fungi and endophytic fungi play key roles in plant growth and development; however, their role in the growth of Epimedium koreanum Nakai at different stages remains unclear.
Here, we used the Illumina MiSeq system, a high-throughput sequencing technology, to study the endophytic fungi and rhizosphere microbiome of Korean Epimedium.
Results Epimedium koreanum Nakai rhizosphere soil and leaves had highly diverse fungal communities during the growth process.
The relative abundance of soil fungi in the rhizosphere stage was higher than that of leaf endophytic fungi in the early growth stage, but the overall abundance was basically equal.
Sebacina is a significantly divergent fungal genera, and Sebacina sp.
are present among leaf fungi species in the rhizosphere soil of Epimedium koreanum Nakai.
Sebacina sp.
can move to each other in rhizosphere soil fungi and leaf endophytes.
VIF (variance inflation factor) analysis showed that soluble salt, whole nitrogen, alkaline lysis nitrogen, whole phosphorus, total potassium, and fast-acting potassium are useful environmental factors for rhizosphere soil and leaf endophytic fungi: potassium, total nitrogen, whole phosphorus, and three environmental factors were significantly and positively associated with the relative abundance of Sebacina sp.
Conclusions (1) This study is the first to clarify the species diversity of fungi in Epimedium koreanum Nakai leaf and rhizosphere soil.
(2) Different fungal communities of rhizosphere soil fungi and leaf endophytic fungi at different growth stages of Epimedium koreanum Nakai were examined.
(3) Sebacina sp.
can move to each other between rhizosphere soil fungi and leaf endophytic fungi.
(4) Nitrogen, phosphorus and potassium elements in the environment have a significant positive effect on the relative abundance of Sebacina sp.

Related Results

Mechanism of Epimedium intervention in heart failure based on network pharmacology and molecular docking technology
Mechanism of Epimedium intervention in heart failure based on network pharmacology and molecular docking technology
To analyze the pharmacological mechanism of Epimedium in regulating heart failure (HF) based on the network pharmacology method, and to provide a reference for the clinical applica...
Identification of Endophytic Fungi of Balangeran (Shorea balangeran Korth.) by Morphological Characterization
Identification of Endophytic Fungi of Balangeran (Shorea balangeran Korth.) by Morphological Characterization
Endophytic fungi are the potential biological agent that could stimulate plant growth and inhibit plant disease. The existence of diverse and abundant endophytic fungi encourages c...
Therapeutic Effects of Cortex Phellodendri, Epimedium brevicornu, and Earthworm on Chronic Prostatitis/Chronic Pelvic Pain Syndrome Mice
Therapeutic Effects of Cortex Phellodendri, Epimedium brevicornu, and Earthworm on Chronic Prostatitis/Chronic Pelvic Pain Syndrome Mice
Background: The use of traditional Chinese medicine (TCM) for the treatment of chronic prostatitis/chronic pelvic pain syndrome (CP/CPPS) is widespread. The purpose of this study i...
Rhizosphere effect of woody plants: A meta-analysis
Rhizosphere effect of woody plants: A meta-analysis
<p>Interactions among plants, soil and microbiota play an important role in maintaining the function of terrestrial ecosystems, which often occur in rhizosphere. The ...
Characteristics of rhizosphere and bulk soil microbial communities in pear trees
Characteristics of rhizosphere and bulk soil microbial communities in pear trees
Rhizosphere bacteria play a crucial role in promoting plant health and development. A full understanding of the bacterial communities in rhizosphere soil and their relationship wit...
Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
Bacterial endophytes in agricultural crops
Bacterial endophytes in agricultural crops
Endophytic bacteria are ubiquitous in most plant species, residing latently or actively colonizing plant tissues locally as well as systemically. Several definitions have been prop...

Back to Top