Neotyphodium fungal endophyte in tall fescue [Schedonorus phoenix] a comparison of three Northern European wild populations and the cultivar Kentuky-31

Pooideae grasses may be colonized by systemic fungal endophytes. The fitness of endophyte depends entirely on resources and seed transmission from the host plant, while colonized plants may gain increased survival, growth, and reproduction relative to their uncolonized conspecifics. Most research of endophyte-grass interactions have been carried out on few cultivars of tall fescue [Schedonorus phoenix] and their symbiont Neotyphodium coenophialum. Lack of studies using wild populations of tall fescue across the species natural distribution range, however, limits the understanding of the ecological and evolutionary role of the symbiosis in nature.We performed a common garden experiment in Southern Finland with three wild, tall fescue populations from northern Europe and the forage cultivar Kentucky-31 [KY-31]. For each population, we used naturally endophyte-colonized, naturally endophytecolonized but endophyte removed [decolonized], and naturally uncolonized plants to separate effects due to the host genotype from the endophyte. We evaluated growth variables and survival in four environmental treatments of varying water and nutrients. Supply of water and nutrients increased plant biomass and reproductive effort in all populations. This effect was higher for KY-31 plants which produced on average 55 percent more seeds than wild plants, indicating better adaptation to high resource environments. However, the higher incidence of Claviceps sp. and the low winter survival indicated KY-31 tall fescue is mal-adapted to Northern European conditions. Naturally colonized plants had greater plant biomass [approximately equal to 12 percent], reproductive effort [approximately equal to 22 percent] and seed mass [approximately equal to 29 percent] than naturally uncolonized and decolonized plants. Nonetheless, endophyte colonization did not affect plant survival, and the effects of endophyte colonization on tiller number, panicle/tiller ratio and Claviceps sp. incidence depended on the population origin. In the wild populations, endophyte removal only reduced the number of tillers [approximately equal to 29 percent lower], while the difference between naturally colonized and naturally uncolonized plants was not significant. Our results show that endophyte symbiont increases tall fescue performance in general, but the differences between wild populations and cultivars indicate adaptation to local habitats and agronomic management, respectively. The comparison of naturally endophyte-colonized and decolonized plants suggests certain plant genotype-endophyte combinations found within populations result from local selection pressures.

Saved in:
Bibliographic Details
Main Authors: Gundel, Pedro Emilio, Helander, Marjo, Casas, Cecilia, Hamilton, Cyd E., Faeth, Stanley H., Saikkonen, Kari
Format: Texto biblioteca
Language:eng
Subjects:CLAVICEPS, GRASS, PLANT-MICROBIAL SYMBIOSIS, SYMBIOSIS, VERTICALLY TRANSMITTED SYMBIONT, FESTUCA ARUNDINACEA, NEOTYPHODIUM, NEOTYPHODIUM COENOPHIALUM, POACEAE, POOIDEAE,
Online Access:http://ceiba.agro.uba.ar/cgi-bin/koha/opac-detail.pl?biblionumber=46946
Tags: Add Tag
No Tags, Be the first to tag this record!
id KOHA-OAI-AGRO:46946
record_format koha
institution UBA FA
collection Koha
country Argentina
countrycode AR
component Bibliográfico
access En linea
En linea
databasecode cat-ceiba
tag biblioteca
region America del Sur
libraryname Biblioteca Central FAUBA
language eng
topic CLAVICEPS
GRASS
PLANT-MICROBIAL SYMBIOSIS
SYMBIOSIS
VERTICALLY TRANSMITTED SYMBIONT
FESTUCA ARUNDINACEA
NEOTYPHODIUM
NEOTYPHODIUM COENOPHIALUM
POACEAE
POOIDEAE
CLAVICEPS
GRASS
PLANT-MICROBIAL SYMBIOSIS
SYMBIOSIS
VERTICALLY TRANSMITTED SYMBIONT
FESTUCA ARUNDINACEA
NEOTYPHODIUM
NEOTYPHODIUM COENOPHIALUM
POACEAE
POOIDEAE
spellingShingle CLAVICEPS
GRASS
PLANT-MICROBIAL SYMBIOSIS
SYMBIOSIS
VERTICALLY TRANSMITTED SYMBIONT
FESTUCA ARUNDINACEA
NEOTYPHODIUM
NEOTYPHODIUM COENOPHIALUM
POACEAE
POOIDEAE
CLAVICEPS
GRASS
PLANT-MICROBIAL SYMBIOSIS
SYMBIOSIS
VERTICALLY TRANSMITTED SYMBIONT
FESTUCA ARUNDINACEA
NEOTYPHODIUM
NEOTYPHODIUM COENOPHIALUM
POACEAE
POOIDEAE
Gundel, Pedro Emilio
Helander, Marjo
Casas, Cecilia
Hamilton, Cyd E.
Faeth, Stanley H.
Saikkonen, Kari
Neotyphodium fungal endophyte in tall fescue [Schedonorus phoenix] a comparison of three Northern European wild populations and the cultivar Kentuky-31
description Pooideae grasses may be colonized by systemic fungal endophytes. The fitness of endophyte depends entirely on resources and seed transmission from the host plant, while colonized plants may gain increased survival, growth, and reproduction relative to their uncolonized conspecifics. Most research of endophyte-grass interactions have been carried out on few cultivars of tall fescue [Schedonorus phoenix] and their symbiont Neotyphodium coenophialum. Lack of studies using wild populations of tall fescue across the species natural distribution range, however, limits the understanding of the ecological and evolutionary role of the symbiosis in nature.We performed a common garden experiment in Southern Finland with three wild, tall fescue populations from northern Europe and the forage cultivar Kentucky-31 [KY-31]. For each population, we used naturally endophyte-colonized, naturally endophytecolonized but endophyte removed [decolonized], and naturally uncolonized plants to separate effects due to the host genotype from the endophyte. We evaluated growth variables and survival in four environmental treatments of varying water and nutrients. Supply of water and nutrients increased plant biomass and reproductive effort in all populations. This effect was higher for KY-31 plants which produced on average 55 percent more seeds than wild plants, indicating better adaptation to high resource environments. However, the higher incidence of Claviceps sp. and the low winter survival indicated KY-31 tall fescue is mal-adapted to Northern European conditions. Naturally colonized plants had greater plant biomass [approximately equal to 12 percent], reproductive effort [approximately equal to 22 percent] and seed mass [approximately equal to 29 percent] than naturally uncolonized and decolonized plants. Nonetheless, endophyte colonization did not affect plant survival, and the effects of endophyte colonization on tiller number, panicle/tiller ratio and Claviceps sp. incidence depended on the population origin. In the wild populations, endophyte removal only reduced the number of tillers [approximately equal to 29 percent lower], while the difference between naturally colonized and naturally uncolonized plants was not significant. Our results show that endophyte symbiont increases tall fescue performance in general, but the differences between wild populations and cultivars indicate adaptation to local habitats and agronomic management, respectively. The comparison of naturally endophyte-colonized and decolonized plants suggests certain plant genotype-endophyte combinations found within populations result from local selection pressures.
format Texto
topic_facet CLAVICEPS
GRASS
PLANT-MICROBIAL SYMBIOSIS
SYMBIOSIS
VERTICALLY TRANSMITTED SYMBIONT
FESTUCA ARUNDINACEA
NEOTYPHODIUM
NEOTYPHODIUM COENOPHIALUM
POACEAE
POOIDEAE
author Gundel, Pedro Emilio
Helander, Marjo
Casas, Cecilia
Hamilton, Cyd E.
Faeth, Stanley H.
Saikkonen, Kari
author_facet Gundel, Pedro Emilio
Helander, Marjo
Casas, Cecilia
Hamilton, Cyd E.
Faeth, Stanley H.
Saikkonen, Kari
author_sort Gundel, Pedro Emilio
title Neotyphodium fungal endophyte in tall fescue [Schedonorus phoenix] a comparison of three Northern European wild populations and the cultivar Kentuky-31
title_short Neotyphodium fungal endophyte in tall fescue [Schedonorus phoenix] a comparison of three Northern European wild populations and the cultivar Kentuky-31
title_full Neotyphodium fungal endophyte in tall fescue [Schedonorus phoenix] a comparison of three Northern European wild populations and the cultivar Kentuky-31
title_fullStr Neotyphodium fungal endophyte in tall fescue [Schedonorus phoenix] a comparison of three Northern European wild populations and the cultivar Kentuky-31
title_full_unstemmed Neotyphodium fungal endophyte in tall fescue [Schedonorus phoenix] a comparison of three Northern European wild populations and the cultivar Kentuky-31
title_sort neotyphodium fungal endophyte in tall fescue [schedonorus phoenix] a comparison of three northern european wild populations and the cultivar kentuky-31
url http://ceiba.agro.uba.ar/cgi-bin/koha/opac-detail.pl?biblionumber=46946
work_keys_str_mv AT gundelpedroemilio neotyphodiumfungalendophyteintallfescueschedonorusphoenixacomparisonofthreenortherneuropeanwildpopulationsandthecultivarkentuky31
AT helandermarjo neotyphodiumfungalendophyteintallfescueschedonorusphoenixacomparisonofthreenortherneuropeanwildpopulationsandthecultivarkentuky31
AT casascecilia neotyphodiumfungalendophyteintallfescueschedonorusphoenixacomparisonofthreenortherneuropeanwildpopulationsandthecultivarkentuky31
AT hamiltoncyde neotyphodiumfungalendophyteintallfescueschedonorusphoenixacomparisonofthreenortherneuropeanwildpopulationsandthecultivarkentuky31
AT faethstanleyh neotyphodiumfungalendophyteintallfescueschedonorusphoenixacomparisonofthreenortherneuropeanwildpopulationsandthecultivarkentuky31
AT saikkonenkari neotyphodiumfungalendophyteintallfescueschedonorusphoenixacomparisonofthreenortherneuropeanwildpopulationsandthecultivarkentuky31
_version_ 1756046711177871360
spelling KOHA-OAI-AGRO:469462022-07-11T13:26:50Zhttp://ceiba.agro.uba.ar/cgi-bin/koha/opac-detail.pl?biblionumber=46946AAGNeotyphodium fungal endophyte in tall fescue [Schedonorus phoenix] a comparison of three Northern European wild populations and the cultivar Kentuky-31Gundel, Pedro EmilioHelander, MarjoCasas, CeciliaHamilton, Cyd E.Faeth, Stanley H.Saikkonen, Karitextengapplication/pdfPooideae grasses may be colonized by systemic fungal endophytes. The fitness of endophyte depends entirely on resources and seed transmission from the host plant, while colonized plants may gain increased survival, growth, and reproduction relative to their uncolonized conspecifics. Most research of endophyte-grass interactions have been carried out on few cultivars of tall fescue [Schedonorus phoenix] and their symbiont Neotyphodium coenophialum. Lack of studies using wild populations of tall fescue across the species natural distribution range, however, limits the understanding of the ecological and evolutionary role of the symbiosis in nature.We performed a common garden experiment in Southern Finland with three wild, tall fescue populations from northern Europe and the forage cultivar Kentucky-31 [KY-31]. For each population, we used naturally endophyte-colonized, naturally endophytecolonized but endophyte removed [decolonized], and naturally uncolonized plants to separate effects due to the host genotype from the endophyte. We evaluated growth variables and survival in four environmental treatments of varying water and nutrients. Supply of water and nutrients increased plant biomass and reproductive effort in all populations. This effect was higher for KY-31 plants which produced on average 55 percent more seeds than wild plants, indicating better adaptation to high resource environments. However, the higher incidence of Claviceps sp. and the low winter survival indicated KY-31 tall fescue is mal-adapted to Northern European conditions. Naturally colonized plants had greater plant biomass [approximately equal to 12 percent], reproductive effort [approximately equal to 22 percent] and seed mass [approximately equal to 29 percent] than naturally uncolonized and decolonized plants. Nonetheless, endophyte colonization did not affect plant survival, and the effects of endophyte colonization on tiller number, panicle/tiller ratio and Claviceps sp. incidence depended on the population origin. In the wild populations, endophyte removal only reduced the number of tillers [approximately equal to 29 percent lower], while the difference between naturally colonized and naturally uncolonized plants was not significant. Our results show that endophyte symbiont increases tall fescue performance in general, but the differences between wild populations and cultivars indicate adaptation to local habitats and agronomic management, respectively. The comparison of naturally endophyte-colonized and decolonized plants suggests certain plant genotype-endophyte combinations found within populations result from local selection pressures.Pooideae grasses may be colonized by systemic fungal endophytes. The fitness of endophyte depends entirely on resources and seed transmission from the host plant, while colonized plants may gain increased survival, growth, and reproduction relative to their uncolonized conspecifics. Most research of endophyte-grass interactions have been carried out on few cultivars of tall fescue [Schedonorus phoenix] and their symbiont Neotyphodium coenophialum. Lack of studies using wild populations of tall fescue across the species natural distribution range, however, limits the understanding of the ecological and evolutionary role of the symbiosis in nature.We performed a common garden experiment in Southern Finland with three wild, tall fescue populations from northern Europe and the forage cultivar Kentucky-31 [KY-31]. For each population, we used naturally endophyte-colonized, naturally endophytecolonized but endophyte removed [decolonized], and naturally uncolonized plants to separate effects due to the host genotype from the endophyte. We evaluated growth variables and survival in four environmental treatments of varying water and nutrients. Supply of water and nutrients increased plant biomass and reproductive effort in all populations. This effect was higher for KY-31 plants which produced on average 55 percent more seeds than wild plants, indicating better adaptation to high resource environments. However, the higher incidence of Claviceps sp. and the low winter survival indicated KY-31 tall fescue is mal-adapted to Northern European conditions. Naturally colonized plants had greater plant biomass [approximately equal to 12 percent], reproductive effort [approximately equal to 22 percent] and seed mass [approximately equal to 29 percent] than naturally uncolonized and decolonized plants. Nonetheless, endophyte colonization did not affect plant survival, and the effects of endophyte colonization on tiller number, panicle/tiller ratio and Claviceps sp. incidence depended on the population origin. In the wild populations, endophyte removal only reduced the number of tillers [approximately equal to 29 percent lower], while the difference between naturally colonized and naturally uncolonized plants was not significant. Our results show that endophyte symbiont increases tall fescue performance in general, but the differences between wild populations and cultivars indicate adaptation to local habitats and agronomic management, respectively. The comparison of naturally endophyte-colonized and decolonized plants suggests certain plant genotype-endophyte combinations found within populations result from local selection pressures.CLAVICEPSGRASSPLANT-MICROBIAL SYMBIOSISSYMBIOSISVERTICALLY TRANSMITTED SYMBIONTFESTUCA ARUNDINACEANEOTYPHODIUMNEOTYPHODIUM COENOPHIALUMPOACEAEPOOIDEAEFungal Diversity