biodiversity pattern
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2022 ◽  
pp. 27-50
Author(s):  
Soumi Datta ◽  
Dwaipayan Sinha ◽  
Vidhi Chaudhary ◽  
Somnath Kar ◽  
Anjana Singh

Pollution has become a matter of grave concern at present with all the components of the environment laden with pollutants largely from anthropogenic sources and unplanned urbanization. Inland wetlands are very delicate ecosystems and encompass a variety of water bodies, namely ponds, rivers, swamps, etc. They house some unique floristic patterns that are crucial in the primary productivity and maintaining a balance of the wetland ecosystem. In addition to it, the inland water bodies are also productive and are of immense importance to humans. The inland wetlands are also an integral part of boosting the economy of the region as they support a number of industries including fishing and recreation. Thus pollution of water bodies has impacted the human race in a deleterious manner. This chapter is an attempt to overview the inland water bodies, their biodiversity pattern, pollution, and their effect on flora at large.


2021 ◽  
Vol 9 ◽  
Author(s):  
Chin-Sung Chang ◽  
Shin Young Kwon ◽  
Hui Kim

The digitisation of historical collections aims to increase global access to scientific artifacts, especially those from currently inaccessible areas. Historical collections from North Korea deposited at foreign herbaria play a fundamental role in biodiversity transformation patterns. However, the biodiversity pattern distribution in this region remains poorly understood given the severe gaps in available geographic species distribution records. Access to a dominant proportion of primary biodiversity data remains difficult for the broader scientific and environmental community. The digitisation of foreign collectors’ botanical collections of around 60,000 specimens from the Korean Peninsula before World War II is ongoing. In this paper, we aim to fill this gap by developing the first comprehensive, open-access database of biodiversity records for the Korean Peninsula. This paper provides a quantitative and general description of the specimens that Urbain Jean Faurie, Emile Joseph Taquet and Ernest Henry Wilson have collected and are kept in several herbaria. An open-access database of biodiversity records provides a simple guide to georeferencing historical collections. The first set describes E. H. Wilson’s collection of woody plants collected in the Korean Peninsula and preserved at the Harvard University Herbaria (A). This set includes 1,087 records collected from 1917 to 1918. The other collections contain specimens collected by E. J. Taquet (4,727 specimens from Quelpaert (Jeju), 1907–1914) and U. J. Faurie (3,659 specimens from North Korea and Quelpaert, 1901, 1906 and 1907). For each specimen, we recorded the species name, locality indication, collection date, collector, ecology and revision label. This set contains more than 9,400 specimens, with 22% of vascular plants from North Korea and 66% from Quelpaert (Jeju) Island. In these collections, we included some images that correspond to the specimens in this dataset.


2021 ◽  
Author(s):  
Hui Kim ◽  
Chin-Sung Chang ◽  
Shin Young Kwon

The digitization of historical collections aims to increase global access to scientific artifacts, especially those from currently inaccessible areas. Historical collections from North Korea deposited at foreign herbaria play a fundamental role in biodiversity transformation patterns. However, the biodiversity pattern distribution in this region remains poorly understood given the severe gaps in available geographic species distribution records. Access to a dominant proportion of primary biodiversity data remains difficult for the broader scientific and environmental community. The digitization of foreign collectors’ botanical collections of around 60,000 specimens from the Korean Peninsula before World War II is ongoing. In this paper, we aim to fill this gap by developing the first comprehensive, open-access database of biodiversity records for the Korean Peninsula. This paper provides a quantitative and general description of the specimens that Urbain Jean Faurie, Emile Joseph Taquet, and Ernest Henry Wilson kept in several herbaria. An open-access database of biodiversity records provides a simple guide to georeferencing historical collections. The first dataset described E. H. Wilson’s collection of woody plants in the Korean Peninsula preserved at the Harvard University Herbaria (A). This includes 1,087 records collected from 1917 to 1918. The other collections contained specimens by E. J. Taquet (4,727 specimens from Quelpaert, 1907–1914) and U. J. Faurie (3,659 specimens from North Korea and Quelpaert, 1901, 1906, and 1907). For each specimen, we recorded the species name, locality indication, collection date, collector, ecology, and revision label. This dataset contained more than 9,400 specimens, with 22% of vascular plants from North Korea and 66% from Quelpaert (Jeju) island. In these collections, we included some images that correspond to the specimens in this dataset.


2021 ◽  
Vol 8 ◽  
Author(s):  
Thomas Brussel ◽  
Simon Christopher Brewer

Paleoecological investigations using the pollen-plant functional trait linkage are increasing in value as new insights to past ecological function and dynamics are revealed. These retrospective approaches link pollen sequences to plant functional trait measurements to reveal long-term changes in ecosystem properties that are difficult to resolve using traditional paleoecological methods. Despite these methodological improvements and the newfound perspectives, there has yet to be thorough testing of whether transforming pollen to ecological function tracks functional trait distributions in geographic space. We assess this in North America by linking surface pollen samples to measurements of three functional traits that represent major axes of plant ecological strategy. Pollen-derived estimates of function were first used to investigate occupied trait space at different scales. These estimates were used to reconstruct the latitudinal functional diversity gradient of North America, and results were compared to the continent’s functional diversity gradient estimated from tree assemblages and gradients based on pollen richness and evenness. Results indicated that the patterns in pollen-based function sufficiently track ecological function in trait and geographic space and the macroecological biodiversity pattern was reconstructed, although there were minor differences between the slopes of the functional diversity and each of the pollen index gradients. Taken together, the outcomes of our investigation indicate reliability in extending the pollen-plant functional trait linkage into deeper time, at least for examining North American functional dynamics.


2019 ◽  
Vol 9 (20) ◽  
pp. 11672-11683 ◽  
Author(s):  
Xiongjun Liu ◽  
Jiajun Qin ◽  
Yang Xu ◽  
Min Zhou ◽  
Xiaoping Wu ◽  
...  

2019 ◽  
Vol 149 (1) ◽  
Author(s):  
Frederik Van de Perre ◽  
Herwig Leirs ◽  
Erik Verheyen

One of the most widely recognized patterns in ecology is the increase in species richness from poles to tropics. Literature suggests that the Congolian lowland rainforest does not follow this pattern: the Central Congolian forest (CCLF), south of the Congo River, is thought to harbor fewer vertebrate species and endemics than the Northeastern (NELF) and Northwestern lowland rainforests (NWLF) north of the Congo River. We used data from the Global Biodiversity Information Facility (GBIF) database on terrestrial vertebrates (mammals, birds, and reptiles), to test whether differences in sampling effort caused the irregular biodiversity pattern in this region. Our results show that even though the diversity within the Congolian lowland rainforests remains to be fully mapped, current differences in richness are unlikely to be caused by undersampling alone. We argue that the lower vertebrate richness in the CCLF is due to both its relatively small size and isolated position: Forest cover fluctuated throughout the history of the Congo Basin due to climatic variability, reducing speciation and increasing extinction, while immigration towards the CCLF is limited due to the barrier effect of the Congo River. The implications of these findings are discussed in the context of both fundamental ecology and conservation management.


2019 ◽  
Vol 113 (1) ◽  
pp. 121
Author(s):  
Shaziya GULL ◽  
Tariq AHMAD ◽  
Ajaz RASOOL

Walnut industry, one of the economically important industries of Kashmir is under multitude of stresses like changing weather patterns, international competition, insect pest damage and diseases. Pest damage by various insect species is by for the main cause of walnut damage, thus limiting its production. In this backdrop, the aim of the present study was to check the insect pest diversity and its nature and extent of damage to walnuts. Sampling was done fortnightly in three districts of Central Kashmir <em>viz., </em>Srinagar, Budgam, Ganderbal from June 2014 to November 2015. Quantitative estimation of individual species was made by using various diversity indices and each site varied in species diversity, richness and evenness. A total of nine sites were selected from three different districts and the insects collected belonged to 3 orders, 7 families and 10 species. Order Hemiptera was highly damaging in comparison to Coleoptera and Lepidoptera while in Hemiptera, maximum damage was done by <em>Chromaphis juglandicola </em>(Kaltenbach, 1843) and the least by <em>Apodiphus pilipes </em>(Horvath,1889).<em> </em>The study provides a baseline data for assessing the biodiversity pattern and damaging potential of walnut pests so as to develop holistic integrated pest management programme.


2017 ◽  
Vol 82 ◽  
pp. 574-586 ◽  
Author(s):  
Federico Morelli ◽  
Frederic Jiguet ◽  
Rodolphe Sabatier ◽  
Camille Dross ◽  
Karine Princé ◽  
...  

2016 ◽  
Vol 36 (18) ◽  
Author(s):  
王超 WANG Chao ◽  
李新辉 LI Xinhui ◽  
赖子尼 LAI Zini ◽  
刘乾甫 LIU Qianfu

2016 ◽  
Author(s):  
Wing Tung Ruby Chiu ◽  
◽  
Moriaki Yasuhara ◽  
Thomas M. Cronin ◽  
Gene Hunt ◽  
...  

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