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result(s) for
"Calluna vulgaris (heather)"
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Regenerative succession of Azorean peatlands after grazing: vegetation path to self-recovery
by
Mendes Cândida
,
Rochefort Line
,
Azevedo José
in
Abandonment
,
Degradation
,
Ecological succession
2020
The study central goal was to analyze secondary succession in a degraded peatland: (1) Sphagnum distribution trends and (2) successional patterns. Main study sites were adjacent abandoned pastures, where grazing was carried out in former peatland and where degradation had occurred, hereafter referred as degraded peatland. (1) Degraded peatland was mapped in 2006 (while it was still a pasture, grazed for over 30 years), and throughout the study period in 2013 (2 years post-abandonment) and 2015 (4 years post-abandonment). The baseline assessment of 2006 revealed that Sphagnum spp. were present in 7% of the area, which pointed at the resilience of the peat ecosystem. After the grazing ceased, Sphagnum cover increased to 17% and 39%, in the next 2 and 4 years respectively post animal removal. (2) To gain a general comprehension of flora and vegetation changes along the regenerative sucession, 48 permanent plots were established in the degraded peatland. In two other study sites, a further twenty plots were established, ten plots in a semi-natural peatland area where grazing ceased 30 years ago and ten others in a natural peatland. These were monitored between July 2012 and July 2015 (triannual). After 4 years, the formerly degraded peatland showed considerable recovery with a growth of Sphagnum spp. cover as well as other species like Calluna vulgaris, tending to become more similar to semi-natural and natural peatlands. Grazing cessation induced the regenerative succession that could lead to self-recovery, which, in optimal conditions, could be an alternative to active restoration in Azores.
Journal Article
Transient facilitative effects of heather on Scots pine along a grazing disturbance gradient in Scottish moorland
by
Brooker, R.W
,
Palmer, S.C.F
,
Scott, D
in
Animal and plant ecology
,
Animal, plant and microbial ecology
,
Applied ecology
2006
1 Facilitation between neighbouring plants can promote species survival and regulate community composition. However, the role of facilitation varies along environmental severity gradients. It is important to understand the shape of this relationship to improve our ability to predict the impact of a changing environment on biodiversity. 2 We used Scots pine saplings growing within heather to examine the shape of the relationship between facilitative interactions (protection from browsing) and the severity of the environment (deer browsing intensity). We also investigated whether protection from browsing translated into a biomass response of saplings. 3 In the first winter following planting heather had a facilitative effect on saplings by reducing the probability of browsing. This effect was strongest at intermediate deer browsing intensities, thus producing a hump-backed relationship between facilitative effects and the severity of the environment. 4 Protection from browsing did not lead to longer-term biomass gains for the saplings. The competitive effects of heather on sapling growth therefore outweighed the beneficial effects of protection from browsing. 5 These results provide much-needed information on the shape of the severity-interactions relationship with respect to a key natural disturbance phenomenon (herbivory), and demonstrate that an observable interaction relationship does not necessarily translate into a biomass response. 6 This illustrates the complex and potentially transient nature of plant-plant interactions, and the potential difficulty that would be associated with using shelter effects of heather as a management tool to promote Scots pine regeneration.
Journal Article
Early Inbreeding Depression and Pollen Competition inCalluna vulgaris(L.) Hull
by
JACQUEMART, ANNE-LAURE
,
MAHY, GRÉGORY
in
Botany
,
Calluna vulgaris(heather)
,
Calluna vulgaris(heather), self-pollination, pollen tube, ovule fertilization, early inbreeding depression, pollen interference
1999
We investigated whether partial self-sterility inCalluna vulgarisresults from abortion of selfed offspring owing to inbreeding depression or a late-acting self-incompatibility mechanism, and whether self-pollen interferes with normal functioning of cross-pollen. Self-pollination resulted in 75% less seed set than cross-pollination. Self-pollen tubes reached ovaries and penetrated ovules as often as those of cross-pollen. Following self-pollination, examination of the size of undeveloped seeds showed that at least 70% resulted from ovule fertilization and arrest of development occurred at various stages. All self-pollinated plants produced seeds and self-fertility varied among plants. These results indicate that the reduced seed set observed in self-pollination is more likely the result of inbreeding depression rather than a late-acting self-incompatibility system. The fecundity component of inbreeding depression was high (0.762). Seed set was reduced by an average of 40% when self-pollen was mixed with cross-pollen, compared to pure cross-pollination. Using genetic markers, we found about 20% of seeds resulted from self-pollination in mixed-pollinated fruits.C. vulgarisis likely to experience self-pollination in nature and our data suggest this will reduce the number of ovules that might otherwise mature after cross-pollination.
Journal Article
effect of nutrient supply and light intensity on tannins and mycorrhizal colonisation in Dutch heathland ecosystems
by
Hofland-Zijlstra, Jantineke D.
,
Berendse, Frank
in
2 upland perennials
,
Acid soils
,
alaskan taiga
2009
(1) Increased atmospheric nitrogen deposition has shifted plant dominance from ericaceous plants to grass species. To elucidate the reduced competitiveness of heather, we tested the hypothesis that additions of nitrogen reduce the concentrations of phenolics and condensed tannins in ericaceous leaves and retard mycorrhizal colonisation in ericaceous plants. We also tested the negative effects of reduced light intensity on carbon-based secondary compounds and mycorrhizal colonisation in ericaceous plants. (2) We performed a field inventory at three heathland sites in the Netherlands varying in nutrient supply and light intensity. Leaves of ericaceous plants and grasses were collected and analysed for concentrations of tannins, phenolics and nutrients. Similarly, we took root samples to record mycorrhizal colonisation and soil samples to measure the soil mineralisation. In addition, we conducted two-factorial experiments with Calluna vulgaris plants, in which we varied fertiliser and shade levels under greenhouse and field conditions. (3) The field inventory revealed that nitrogen addition and shading both negatively affected the concentration of total phenolics. The total phenolics and condensed tannin concentrations were positively correlated (P < 0.001), but in the field experiment, the condensed tannins were not significantly affected by the treatments. Our results provide the first evidence that the carbon nutrient balance can be used to predict the amount of total phenolics in the dwarf shrub C. vulgaris. (4) In the field experiments, shading of plants resulted in significantly less mycorrhizal colonisation. Only in the greenhouse experiment did addition of nitrogen negatively affect mycorrhizal colonisation. (5) Our results imply that increased atmospheric nitrogen deposition can depress the tannin concentrations in ericaceous plants and the mycorrhizal colonisation in roots, thereby reducing the plants' competitiveness with respect to grasses. Additionally, if ericaceous plants are shaded by grasses that have become dominant due to increased nitrogen supply, these effects will be intensified and competitive replacement will be accelerated.
Journal Article
Testing prescribed fire as a tool to promote Scots pine Pinus sylvestris regeneration
by
Willi, Johanna
,
Amphlett, Andy
,
Hancock, Mark H
in
Biomedical and Life Sciences
,
Burnt ground
,
confidence interval
2009
Techniques for encouraging natural tree regeneration are of increasing interest to managers of Scots pine Pinus sylvestris forests. We tested prescribed fire at a management scale, with deer present or excluded, as a means of increasing rates of Scots pine forest expansion on heathland. At a semi-natural pinewood in Scotland, ten experimental blocks were established, within range of pine seed-fall. Each block comprised four, 100 m² plots. Two plots at each site were burnt and two fenced, allowing the effects of burning on pine regeneration to be measured at two levels of deer abundance. We monitored pine seedlings, seed-fall, deer dung and vegetation for 5 years following treatment. Differences in seedling detection rates between treatments were quantified using dummy seedlings, and analyses corrected accordingly. Mean new pine seedling establishment was 9.8 times higher on burnt ground than unburnt ground (confidence intervals 3.2-30). Differences were even more pronounced in a year of high seed-fall, and following fires with low rates of spread. Establishment rates varied strongly between experimental blocks. Exclusion of deer increased establishment rates, but only in the first 2 years after fire. There was evidence that both seedling survival, and cumulative recruitment of older (over 12 months) seedlings, were improved by prescribed burning. Our results support the use of prescribed fire as a tool to promote increased Scots pine seedling establishment. This technique is likely to give strong fine-scale variation in seedling densities, and so would most suit areas where a variable spatial pattern of regeneration is sought, for landscape or naturalness reasons.
Journal Article
Arbuscular Mycorrhizal Colonization Increases with Host Density in a Heathland Community
by
Alexander, Ian J.
,
Hartley, Sue H.
,
Genney, David R.
in
arbuscular mycorrhiza
,
Bioassay
,
bioassays
2001
• The relationship is examined here between Nardus stricta root length colonized (RLC) by arbuscular mycorrhizal (AM) fungi (% RLC) and vegetation composition in a heathland community. • Two approaches were taken: a field survey of AM colonization of Nardus at two contrasting locations (Glen Clunie and Glen Shee, UK) in relation to vegetation composition; and an 11-month bioassay of AM inoculum potential in Calluna vulgaris and Nardus swards using uncolonized Nardus transplants. • In the field survey,% RLC of Nardus was positively related to Nardus density. This relationship was strongest in Glen Clunie, probably because overall colonization levels were lower at the more fertile Glen Shee site. In the bioassay, Nardus transplants within Calluna swards developed little or no AM colonization, whereas those within Nardus swards had a mean RLC of 23%. • This is the first report that degree of AM colonization is related to host density in the field. Isolated Nardus plants in Calluna swards might be disadvantaged compared with Nardus plants in Nardus swards because of lower of AM colonization.
Journal Article
Early inbreeding depression and pollen competition in Calluna vulgaris (L.) Hull
by
Jacquemart, A.L
,
Mahy, G
in
abortion (plants)
,
Biologie végétale (sciences végétales, sylviculture, mycologie...)
,
Calluna vulgaris
1999
We investigated whether partial self-sterility in Calluna vulgaris results from abortion of selfed offspring owing to inbreeding depression or a late-acting self-incompatibility mechanism, and whether self-pollen interferes with normal functioning of cross-pollen. Self-pollination resulted in 75% less seed set than cross-pollination. Self-pollen tubes reached ovaries and penetrated ovules as often as those of cross-pollen. Following self-pollination, examination of the size of undeveloped seeds showed that at least 70% resulted from ovule fertilization and arrest of development occurred at various stages. All self-pollinated plants produced seeds and self-fertility varied among plants. These results indicate that the reduced seed set observed in self-pollination is more likely the result of inbreeding depression rather than a late-acting self-incompatibility system. The fecundity component of inbreeding depression was high (0.762). Seed set was reduced by an average of 40% when self-pollen was mixed with cross-pollen, compared to pure cross-pollination. Using genetic markers, we found about 20% of seeds resulted from self-pollination in mixed-pollinated fruits. C. vulgaris is likely to experience self-pollination in nature and our data suggest this will reduce the number of ovules that might otherwise mature after cross-pollination.
Journal Article
Allozyme diversity and genetic structure in South-Western populations of heather, Calluna vulgaris
1997
Genetic diversity, population genetic structure and gene flow in
Calluna vulgaris (L.) Hull were assessed by means
of seven allozyme loci scored in 18 populations from the South-Western
area
of the species' range. Genetic
diversity was lower (HT=0·20) than
reported for long-lived widespread species but was characterized by a high
number of alleles per locus (5·60 at the species level) of which
more
than 70% were rare. More than 95% of genetic
variation was found at the intrapopulation level
(GST=0·047). High levels of past gene flow
were inferred, based
on the allozyme data (Nm=5·2 from
GST, Nm=10·2 from the
‘private allele’ method). Calluna vulgaris exhibited
several geographic patterns of genetic variation. Both cluster analysis,
constructed with various genetic distances
and principal components analysis showed that Spanish and Pyrenean populations
were clearly different from
those collected in the Massif Central and Belgium. Also, a trend for
decreasing genetic diversity towards Northern
populations was detected. These patterns might be related to the
post-glacial history of Calluna. In addition, it
is shown that isolation by distance has played a role in the geographic
shaping of genetic variation in this species.
Journal Article
Uptake and accumulation of radiocaesium by mycorrhizal and non-mycorrhizal heather plants
by
Dighton, J
,
Clint, G.M
in
Agronomy. Soil science and plant productions
,
Animal, plant and microbial ecology
,
Applied ecology
1992
Short-term uptake of137Cs by heather (Calluna vulgaris L.) was measured using radiolabelled liquid media and plants grown from shoot cuttings. Uptake by mycorrhizal plants was compared with uptake by non-mycorrhizal plants, and the effects of different external Cs and K concentrations were determined. At each time point during the 3 h experimental period the content (and hence also the apparent influx) of the mycorrhizal plants in each treatment was found to be lower than that of the non-mycorrhizal plants. An increase of 100-fold in the total external Cs concentration (from 5 to 500 μM) gave between a 35-fold and 96-fold increase in initial influx of Cs. A similar change in external K concentration, however, had little effect on Cs influx. Root-shoot transfer of Cs over the 3 h uptake period was slight; in most cases more than 90% of the radiocaesium remained in the root. The final shoot:root Cs ratio was higher in mycorrhizal than in nonmycorrhizal plants, suggesting that in mycorrhizal plants, despite their lower overall accumulation during the first 3 h, a higher proportion of the Cs taken up is translocated to the shoot.
Journal Article
Nutrient limitation of the long term response of heather Calluna vulgaris (L.) Hull to CO2 enrichment
1992
In a 27‐month CO₂‐enrichment experiment, Calluna vulgaris plants were grown on peat obtained from an upland heath in NE Scotland and given a nutrient supply which mimicked that in precipitation in the area. Three CO₂ concentrations were used; ambient, +100ppm and +200ppm. Calluna showed a negative growth response to increased CO₂ over the first year of treatment and a positive response by the end of the experiment. Final above–ground biomass was greatest in the enriched CO₂, treatments, showing an increase of 30 °₀ in + 100ppmCO₂. Determination of tissue nutrient concentration, and calculation of total nutrient uptake, demonstrated that nutrient uptake did not increase with increased growth, resulting in significant dilution of elements in leaf tissue. This suggests that, in its typical, nutrient poor habitats, the growth response of Calluna to CO₂ will be limited by nutrient deficiency, and will reach a maximum with a relatively small increase in CO, concentration. Flowering was advanced and extremely prolific in +100 ppm CO₂ grown plants, but the ecological significance of this is uncertain. The results highlight the need for long term studies of native species on their natural soils, using lower CO₂ concentrations than the usual ‘double CO₂’.
Journal Article