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    题名 作者 年代 出处 被引量
1Rare and endangered plant species of the Chinese Altai Mountains显示文摘Altai (also named Altay in China) Mountain Country (Mountain System) is a unique natural region,located on the border between different floristic regimes of the Boreal and ancient Mediterranean sub-kingdoms,where distribution of plant species is actually limited. It is known to have sufficient endemic floral biodiversity in the Northern Asia. Many plants of Altai Mountain System need effective care and proper conservation measures for their survival and longer-term protection. Important Plant Area identified as the IUCN (the International Union for Conservation of Nature),specified criteria attract global attention for protection of floral biodiversity across the world. The records of 71 plant species from the Chinese Altai Mountains attributed to the criterion A and the dark conifer forests of Chinese Altai Mountains satisfied the criterion C,which may help qualify to fulfill the national obligation of the Convention on Biological Diversity.Marina V.OLONOVA 2010Journal of Arid Land2010,2,3:3
2Diversity patterns, environmental drivers and changes in vegetation composition in dry inter-Andean valleys显示文摘Aims We studied diversity,patterns of endemism and turnover of veg-etation composition in dry inter-Andean valleys(DIAVs)where lit-tle is known about the influence of the abiotic drivers controlling plant species composition and occurrences,and the life forms that contribute most toα-andβ-diversity,respectively.This study was focused on DIAVs located in the highlands(800-2800 m)around the Equator(1°N-5°S).The following questions were addressed:(i)what differences exist between endemic and non-endemic species in terms of species number,frequency and abundance?(ii)are pat-terns ofα-andβ-diversity correlated with latitude?(iii)what are the major environmental drivers controlling spatial patterns in species composition and occurrence?Methods We established 63 transects of 5×100 m in areas with DIAV vegetation,impacted as little as possible by human activities.In each transect,all mature trees and shrubs were identified and counted to determine their density.The coverage of terrestrial herbs was estimated.Generalized additive models were used to quantify the relationship betweenα-andβ-diversity with latitude.To recordα-diversity,we used the exponential Shannon index.The Sørensen index was used to measureβ-diversity or species turnover.We used canonical correspondence analysis to deter-mine species composition and generalized linear mixed models to quantify simultaneously the determinants of species occur-rence across species and sites.The models were evaluated using the Akaike information criterion.All analyses were run separately for trees,herbs and shrubs.Important Findings Overall,we found that shrubs was the most diverse life form,constituting 43%(12%endemic)of the 313 species,followed by herbs(36%;11.5%endemic)and trees(20%;5%endemic).Trees comprise mostly species with low abundance(e.g.<3 individuals ha^(−1)),which was also true for herbs,whereas shrubs showed a larger number of abundant species(>30 individuals ha^(−1)),includ-ing four endemic species.Most of the endemic species were locally rare,and most of them were restricted to southern valleys,suggesting low migration rates due to local barriers.We identified seven species distribution patterns that gave rise to high β-diversity in the dry inter-Andean valleys.Theβ-diversity of trees was the lowest.Herbs had the highestβ-diversity,which increased steadily with geographic distance.Our results further highlight the influ-ence of disturbance,water availability and low temperature on plant species composition and occurrence.We also found signifi-cant,contrasting patterns in responses to environmental drivers,when analyzing our data separately by life form.Our results show that analyzing diversity patterns separately by life form can shed new light on the mechanisms that have generated present-day pat-terns of plant diversity in DIAVs.Catalina Quintana Marco Girardello Anders S.Barfod Henrik Balslev 2017Journal of Plant Ecology2017,10,3:0
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