Javascript must be enabled to continue!
Diversity of endophytic fungi of single Norway spruce needles and their role as pioneer decomposers
View through CrossRef
AbstractThe diversity of endophytic fungi within single symptomless Norway spruce needles is described and their possible role as pioneer decomposers after needle detachment is investigated. The majority (90%) of all 182 isolates from green intact needles were identified as Lophodermium piceae. Up to 34 isolates were obtained from single needles. Generally, all isolates within single needles had distinct randomly amplified microsatellite (RAMS) patterns. Single trees may thus contain a higher number of L. piceae individuals than the number of their needles. To investigate the ability of needle endophytes to act as pioneer decomposers, surface‐sterilized needles were incubated on sterile sand inoculated with autoclaved or live spruce forest humus layer. The dry weight loss of 13–17% found in needles after a 20‐week incubation did not significantly differ between the sterilized and live treatments. Hence, fungi surviving the surface sterilization of needles can act as pioneer decomposers. A considerable portion of the needles remained green during the incubation. Brown and black needles, in which the weight loss had presumably taken place, were invaded throughout by single haplotypes different from L. piceae. Instead, Tiarasporella parca, a less common needle endophyte, occurred among these invaders of brown needles. Needle endophytes of Norway spruce seem thus to have different abilities to decompose host tissues after needle cast. L. piceae is obviously not an important pioneer decomposer of Norway spruce needles. The diversity of fungal individuals drops sharply when needles start to decompose. Thus, in single needles the decomposing mycota is considerably less diverse than the endophytic mycota.
Title: Diversity of endophytic fungi of single Norway spruce needles and their role as pioneer decomposers
Description:
AbstractThe diversity of endophytic fungi within single symptomless Norway spruce needles is described and their possible role as pioneer decomposers after needle detachment is investigated.
The majority (90%) of all 182 isolates from green intact needles were identified as Lophodermium piceae.
Up to 34 isolates were obtained from single needles.
Generally, all isolates within single needles had distinct randomly amplified microsatellite (RAMS) patterns.
Single trees may thus contain a higher number of L.
piceae individuals than the number of their needles.
To investigate the ability of needle endophytes to act as pioneer decomposers, surface‐sterilized needles were incubated on sterile sand inoculated with autoclaved or live spruce forest humus layer.
The dry weight loss of 13–17% found in needles after a 20‐week incubation did not significantly differ between the sterilized and live treatments.
Hence, fungi surviving the surface sterilization of needles can act as pioneer decomposers.
A considerable portion of the needles remained green during the incubation.
Brown and black needles, in which the weight loss had presumably taken place, were invaded throughout by single haplotypes different from L.
piceae.
Instead, Tiarasporella parca, a less common needle endophyte, occurred among these invaders of brown needles.
Needle endophytes of Norway spruce seem thus to have different abilities to decompose host tissues after needle cast.
L.
piceae is obviously not an important pioneer decomposer of Norway spruce needles.
The diversity of fungal individuals drops sharply when needles start to decompose.
Thus, in single needles the decomposing mycota is considerably less diverse than the endophytic mycota.
Related Results
Effects of bacterial wilt on community composition and diversity of culturable endophytic fungi in
Alpinia galanga
Effects of bacterial wilt on community composition and diversity of culturable endophytic fungi in
Alpinia galanga
Abstract
Hongdoukou plant (
Alpinia galanga
Willd.) is a perennial herbaceous plant that usually has a stable...
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...
Nutrient characteristics and proline accumulation in relation to Picea abies status on drained peat soils
Nutrient characteristics and proline accumulation in relation to Picea abies status on drained peat soils
Monocultures of Norway spruce widely used for afforestation of drained peat soils often have low productivity and decline in vitality. The research aim was to elucidate: (1) imbala...
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...
Cometary Physics Laboratory: spectrophotometric experiments
Cometary Physics Laboratory: spectrophotometric experiments
<p><strong><span dir="ltr" role="presentation">1. Introduction</span></strong&...
Isolasi dan Identifikasi Kandungan Metabolit Sekunder Jamur Endofit Rimpang Kunyit (Curcuma longa linn.)
Isolasi dan Identifikasi Kandungan Metabolit Sekunder Jamur Endofit Rimpang Kunyit (Curcuma longa linn.)
Turmeric is a plant that is often used as an ingredient in traditional medicine. Turmeric rhizome contains secondary metabolites such as alkaloids, triterpenoids, flavonoids, tanni...
Uncovering the hidden diversity of litter-decomposition mechanisms in mushroom-forming fungi
Uncovering the hidden diversity of litter-decomposition mechanisms in mushroom-forming fungi
Abstract
Litter decomposing Agaricales play key role in terrestrial carbon cycling, but little is known about their decomposition mechanisms. We assembled datasets o...
Direct and indirect food web regulation of microbial decomposers in headwater streams
Direct and indirect food web regulation of microbial decomposers in headwater streams
The direct and indirect regulation of primary productivity has been well established in autotrophic‐based ecosystems; however, less is known about the processes affecting decompose...

