scholarly journals Trait variation and functional diversity maintenance of understory herbaceous species coexisting along an elevational gradient in Yulong Mountain, Southwest China

2016 ◽  
Vol 38 (6) ◽  
pp. 303-311 ◽  
Author(s):  
Yahuang Luo ◽  
Jie Liu ◽  
Shaolin Tan ◽  
Marc W. Cadotte ◽  
Kun Xu ◽  
...  
2020 ◽  
Vol 10 (5) ◽  
pp. 2545-2558 ◽  
Author(s):  
Zhongzheng Chen ◽  
Xueyou Li ◽  
Wenyu Song ◽  
Quan Li ◽  
Kenneth Onditi ◽  
...  

2018 ◽  
Vol 20 (1) ◽  
pp. 129 ◽  
Author(s):  
Eduardo De Rodrigues Coelho ◽  
Adriano Pereira Paglia ◽  
Arleu Barbosa Viana-Junior ◽  
Luiz A. Dolabela Falcão ◽  
Guilherme B. Ferreira

2019 ◽  
Vol 30 (5) ◽  
pp. 973-983 ◽  
Author(s):  
Yi Ding ◽  
Runguo Zang ◽  
Xinghui Lu ◽  
Jihong Huang ◽  
Yue Xu

2021 ◽  
Author(s):  
Kenny Helsen ◽  
Yeng-Chen Shen ◽  
Tsung-Yi Lin ◽  
Chien-Fan Chen ◽  
Chu-Mei Huang ◽  
...  

While the relative importance of climate filtering is known to be higher for woody species assemblages than herbaceous assemblage, it remains largely unexplored whether this pattern is also reflected between the woody overstory and herbaceous understory of forests. While climatic variation will be more buffered by the tree layer, the understory might also respond more to small-scale soil variation, next to experiencing additional environmental filtering due to the overstory's effects on light and litter quality. For (sub)tropical forests, the understory often contains a high proportion of fern and lycophyte species, for which environmental filtering is even less well understood. We explored the proportional importance of climate proxies and soil variation on the species, functional trait and (functional) diversity patterns of both the forest overstory and fern and lycophyte understory along an elevational gradient from 850 to 2100 m a.s.l. in northern Taiwan. We selected nine functional traits expected to respond to soil nutrient or climatic stress for this study and furthermore verified whether they were positively related across vegetation layers, as expected when driven by similar environmental drivers. We found that climate was a proportionally more important predictor than soil for the species composition of both vegetation layers and trait composition of the understory. The stronger than expected proportional effect of climate for the understory was likely due to fern and lycophytes' higher vulnerability to drought, while the high importance of soil for the overstory seemed driven by deciduous species. The environmental drivers affected different response traits in both vegetation layers, however, which together with additional overstory effects on understory traits, resulted in a strong disconnection of community-level trait values across layers. Interestingly, species and functional diversity patterns could be almost exclusively explained by climate effects for both vegetational layers, with the exception of understory species richness. This study illustrates that environmental filtering can differentially affect species, trait and diversity patterns and can be highly divergent for forest overstory and understory vegetation, and should consequently not be extrapolated across vegetation layers or between composition and diversity patterns.


2019 ◽  
Vol 25 (9) ◽  
pp. 1362-1374 ◽  
Author(s):  
Larissa Nowak ◽  
W. Daniel Kissling ◽  
Irene M. A. Bender ◽  
D. Matthias Dehling ◽  
Till Töpfer ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Agnieszka Kompała-Bąba ◽  
Wojciech Bierza ◽  
Edyta Sierka ◽  
Agnieszka Błońska ◽  
Lynn Besenyei ◽  
...  

AbstractKnowledge about biotic (plant species diversity, biomass) and/or abiotic (physicochemical substrate parameters) factors that determine enzyme activity and functional diversity of the substrate on hard coal spoil heaps is limited. Spontaneously developed vegetation patches dominated by herbaceous species commonly occurring on these spoil heaps: grasses (Poa compressa, Calamagrostis epigejos) and forbs (Daucus carota, Tussilago farfara), were examined. The activity of dehydrogenase and alkaline phosphatase was twice as high in plots dominated by grass species compared with those dominated by forbs. Significant positive correlations were found between the activity of dehydrogenase and alkaline phosphatase with pH, available P, soil moisture, and water holding capacity and negative correlations between the activity of urease and soil organic carbon. Strong positive correlations were found between values for Shannon–Wiener diversity index, evenness, species richness and soil functional diversity in plots dominated by grasses. We found that the soil physicochemical parameters had a greater impact on enzyme activity of the substrate than plant biomass and species diversity. However, grasses, through their extensive root system, more effectively increased enzyme activity and health of the substrate than other herbaceous species, and as they stabilize the substrate and form dense plant cover, they can be recommended for reclamation purposes.


2019 ◽  
Vol 5 (12) ◽  
pp. eaaw8114 ◽  
Author(s):  
Sandra M. Durán ◽  
Roberta E. Martin ◽  
Sandra Díaz ◽  
Brian S. Maitner ◽  
Yadvinder Malhi ◽  
...  

Spatially continuous data on functional diversity will improve our ability to predict global change impacts on ecosystem properties. We applied methods that combine imaging spectroscopy and foliar traits to estimate remotely sensed functional diversity in tropical forests across an Amazon-to-Andes elevation gradient (215 to 3537 m). We evaluated the scale dependency of community assembly processes and examined whether tropical forest productivity could be predicted by remotely sensed functional diversity. Functional richness of the community decreased with increasing elevation. Scale-dependent signals of trait convergence, consistent with environmental filtering, play an important role in explaining the range of trait variation within each site and along elevation. Single- and multitrait remotely sensed measures of functional diversity were important predictors of variation in rates of net and gross primary productivity. Our findings highlight the potential of remotely sensed functional diversity to inform trait-based ecology and trait diversity-ecosystem function linkages in hyperdiverse tropical forests.


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