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

Latitudinal patterns and environmental drivers of moss layer cover in extratropical forests

View through CrossRef
AbstractAimThe forest moss layer plays an important role in water retention, nutrient cycling and forest regeneration. We quantified broad‐scale latitudinal patterns and environmental drivers of moss layer cover in extratropical upland forests where such information has been missing.LocationOne thousand, nine hundred and seventy‐seven sites outside the tropical belt (i.e., beyond 26° N and S) across longitudes (from 154° W to 140° E) and elevations (from 0 to 3,950 m a.s.l.).Time periodCurrent (1969–2016).Major taxa studiedMoss layer bryophytes (mosses, liverworts and hornworts).MethodsWe compiled three large datasets from: (a) a global literature search, (b) a national forest inventory database in the USA and (c) an extensive survey along the Appalachian Trail (Eastern USA) to contrast the moss layer cover along latitudinal gradients and among regions. We used correlation analysis and simple (meta‐ and linear‐) regression to test whether moss layer cover increased towards the poles across and within forest biomes, and we used multiple (meta‐ and beta‐) regression to test whether and how climate, forest composition and age and topography influence forest moss layer cover at broad spatial scales.ResultsForest moss cover increased towards the North along a clear latitudinal gradient by c. 2% per 1° of latitude, and it decreased with increasing maximum temperature by c. 1%–5% per 1°C. Thus, cool northern regions (e.g., northern Europe) can be considered forest moss layer hotspots. Moss layer cover was driven mainly by canopy composition when all potential drivers were considered. Compared with broad‐scale systematic surveys, the data from specialized literature overestimated moss cover in broadleaf deciduous forests where moss cover was low and variable.Main conclusionsOur findings highlight that systematic surveys complement specialized literature in accurately modelling abundance on broad scales. Given that temperature, rather than precipitation or seasonality, limited the abundance of forest moss layer on broad scales, the moss layer might be a promising tool for monitoring forest ecosystem responses to climate warming.
Title: Latitudinal patterns and environmental drivers of moss layer cover in extratropical forests
Description:
AbstractAimThe forest moss layer plays an important role in water retention, nutrient cycling and forest regeneration.
We quantified broad‐scale latitudinal patterns and environmental drivers of moss layer cover in extratropical upland forests where such information has been missing.
LocationOne thousand, nine hundred and seventy‐seven sites outside the tropical belt (i.
e.
, beyond 26° N and S) across longitudes (from 154° W to 140° E) and elevations (from 0 to 3,950 m a.
s.
l.
).
Time periodCurrent (1969–2016).
Major taxa studiedMoss layer bryophytes (mosses, liverworts and hornworts).
MethodsWe compiled three large datasets from: (a) a global literature search, (b) a national forest inventory database in the USA and (c) an extensive survey along the Appalachian Trail (Eastern USA) to contrast the moss layer cover along latitudinal gradients and among regions.
We used correlation analysis and simple (meta‐ and linear‐) regression to test whether moss layer cover increased towards the poles across and within forest biomes, and we used multiple (meta‐ and beta‐) regression to test whether and how climate, forest composition and age and topography influence forest moss layer cover at broad spatial scales.
ResultsForest moss cover increased towards the North along a clear latitudinal gradient by c.
 2% per 1° of latitude, and it decreased with increasing maximum temperature by c.
 1%–5% per 1°C.
Thus, cool northern regions (e.
g.
, northern Europe) can be considered forest moss layer hotspots.
Moss layer cover was driven mainly by canopy composition when all potential drivers were considered.
Compared with broad‐scale systematic surveys, the data from specialized literature overestimated moss cover in broadleaf deciduous forests where moss cover was low and variable.
Main conclusionsOur findings highlight that systematic surveys complement specialized literature in accurately modelling abundance on broad scales.
Given that temperature, rather than precipitation or seasonality, limited the abundance of forest moss layer on broad scales, the moss layer might be a promising tool for monitoring forest ecosystem responses to climate warming.

Related Results

Northern Hemispheric extratropical cyclones during glacial times: impact of orbital forcing and ice sheet height
Northern Hemispheric extratropical cyclones during glacial times: impact of orbital forcing and ice sheet height
<p>Extratropical cyclones are a major source of natural hazards in the mid latitudes as wind and precipitation extremes are associated to this weather phenomenon. Sti...
The Role of Extratropical Background Flow in Modulating the MJO Extratropical Response
The Role of Extratropical Background Flow in Modulating the MJO Extratropical Response
AbstractThe Madden–Julian oscillation (MJO) is the dominant mode of tropical intraseasonal variability. Many studies have found that the MJO, which acts as a tropical heating sourc...
Novel Solution to Improve the Moss Bag Technique in Environmental Biological Monitoring
Novel Solution to Improve the Moss Bag Technique in Environmental Biological Monitoring
Abstract Low-dose radiation may stimulate growth in plants in general and in mosses in particular, and thus has the potential to enhance the ability to absorb the airborne ...
Estimation of Moss Harvest Amount and Biomass per Hectare for Sustainable Moss Harvesting in Türkiye
Estimation of Moss Harvest Amount and Biomass per Hectare for Sustainable Moss Harvesting in Türkiye
Abstract While moss harvesting is legally permitted in Turkey, the lack of inventory studies in harvested areas puts significant pressure on moss species. Additionally, the...
Detectability of an intermediate layer by magnetotelluric sounding
Detectability of an intermediate layer by magnetotelluric sounding
Abstract The recent publication by Verma and Mallick (1979) on the detectability of an intermediate layer by time domain EM sounding provides some informative ans...
Pacific Cold Tongue Bias in CMIP5/CMIP6 Linked to Shifts in Extratropical Subduction Zones
Pacific Cold Tongue Bias in CMIP5/CMIP6 Linked to Shifts in Extratropical Subduction Zones
Abstract The equatorial Pacific cold tongue (CT) bias is a systematic sea surface temperature (SST) bias, persisting throughout all generations of comprehensive climate models. Rec...
Comparison of moss bag and native moss technique in monitoring airborne particulate and toxic elements
Comparison of moss bag and native moss technique in monitoring airborne particulate and toxic elements
Introduction: In Vietnam, the government has invested in monitoring stations in a few big cities like Hanoi and Ho Chi Minh City, which have transportation centers and industrial z...

Back to Top