Environmental variables drive plant species composition and distribution in the moist temperate forests of Northwestern Himalaya, Pakistan
By assessing plant species composition and distribution in biodiversity hotspots influenced by environmental gradients, we greatly advance our understanding of the local plant community and how environmental factors are affecting these communities. This is a proxy for determining how climate change...
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Published in | PloS one Vol. 17; no. 2; p. e0260687 |
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Main Authors | , , , , , , , , , , , |
Format | Journal Article |
Language | English |
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United States
Public Library of Science
24.02.2022
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Abstract | By assessing plant species composition and distribution in biodiversity hotspots influenced by environmental gradients, we greatly advance our understanding of the local plant community and how environmental factors are affecting these communities. This is a proxy for determining how climate change influences plant communities in mountainous regions ("space-for-time" substitution). We evaluated plant species composition and distribution, and how and which environmental variables drive the plant communities in moist temperate zone of Manoor valley of Northwestern Himalaya, Pakistan. During four consecutive years (2015–2018), we sampled 30 sampling sites, measuring 21 environmental variables, and recording all plant species present in an altitudinal variable range of 1932–3168 m.a.s.l. We used different multivariate analyses to identify potential plant communities, and to evaluate the relative importance of each environmental variable in the species composition and distribution. Finally, we also evaluated diversity patterns, by comparing diversity indices and beta diversity processes. We found that (i) the moist temperate zone in this region can be divided in four different major plant communities; (ii) each plant community has a specific set of environmental drivers; (iii) there is a significant variation in plant species composition between communities, in which six species contributed most to the plant composition dissimilarity; (iv) there is a significant difference of the four diversity indices between communities; and (v) community structure is twice more influenced by the spatial turnover of species than by the species loss. Overall, we showed that altitudinal gradients offer an important range of different environmental variables, highlighting the existence of micro-climates that drive the structure and composition of plant species in each micro-region. Each plant community along the altitudinal gradient is influenced by a set of environmental variables, which lead to the presence of indicator species in each micro-region. |
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AbstractList | By assessing plant species composition and distribution in biodiversity hotspots influenced by environmental gradients, we greatly advance our understanding of the local plant community and how environmental factors are affecting these communities. This is a proxy for determining how climate change influences plant communities in mountainous regions ("space-for-time" substitution). We evaluated plant species composition and distribution, and how and which environmental variables drive the plant communities in moist temperate zone of Manoor valley of Northwestern Himalaya, Pakistan. During four consecutive years (2015–2018), we sampled 30 sampling sites, measuring 21 environmental variables, and recording all plant species present in an altitudinal variable range of 1932–3168 m.a.s.l. We used different multivariate analyses to identify potential plant communities, and to evaluate the relative importance of each environmental variable in the species composition and distribution. Finally, we also evaluated diversity patterns, by comparing diversity indices and beta diversity processes. We found that (i) the moist temperate zone in this region can be divided in four different major plant communities; (ii) each plant community has a specific set of environmental drivers; (iii) there is a significant variation in plant species composition between communities, in which six species contributed most to the plant composition dissimilarity; (iv) there is a significant difference of the four diversity indices between communities; and (v) community structure is twice more influenced by the spatial turnover of species than by the species loss. Overall, we showed that altitudinal gradients offer an important range of different environmental variables, highlighting the existence of micro-climates that drive the structure and composition of plant species in each micro-region. Each plant community along the altitudinal gradient is influenced by a set of environmental variables, which lead to the presence of indicator species in each micro-region. By assessing plant species composition and distribution in biodiversity hotspots influenced by environmental gradients, we greatly advance our understanding of the local plant community and how environmental factors are affecting these communities. This is a proxy for determining how climate change influences plant communities in mountainous regions ("space-for-time" substitution). We evaluated plant species composition and distribution, and how and which environmental variables drive the plant communities in moist temperate zone of Manoor valley of Northwestern Himalaya, Pakistan. During four consecutive years (2015-2018), we sampled 30 sampling sites, measuring 21 environmental variables, and recording all plant species present in an altitudinal variable range of 1932-3168 m.a.s.l. We used different multivariate analyses to identify potential plant communities, and to evaluate the relative importance of each environmental variable in the species composition and distribution. Finally, we also evaluated diversity patterns, by comparing diversity indices and beta diversity processes. We found that (i) the moist temperate zone in this region can be divided in four different major plant communities; (ii) each plant community has a specific set of environmental drivers; (iii) there is a significant variation in plant species composition between communities, in which six species contributed most to the plant composition dissimilarity; (iv) there is a significant difference of the four diversity indices between communities; and (v) community structure is twice more influenced by the spatial turnover of species than by the species loss. Overall, we showed that altitudinal gradients offer an important range of different environmental variables, highlighting the existence of micro-climates that drive the structure and composition of plant species in each micro-region. Each plant community along the altitudinal gradient is influenced by a set of environmental variables, which lead to the presence of indicator species in each micro-region.By assessing plant species composition and distribution in biodiversity hotspots influenced by environmental gradients, we greatly advance our understanding of the local plant community and how environmental factors are affecting these communities. This is a proxy for determining how climate change influences plant communities in mountainous regions ("space-for-time" substitution). We evaluated plant species composition and distribution, and how and which environmental variables drive the plant communities in moist temperate zone of Manoor valley of Northwestern Himalaya, Pakistan. During four consecutive years (2015-2018), we sampled 30 sampling sites, measuring 21 environmental variables, and recording all plant species present in an altitudinal variable range of 1932-3168 m.a.s.l. We used different multivariate analyses to identify potential plant communities, and to evaluate the relative importance of each environmental variable in the species composition and distribution. Finally, we also evaluated diversity patterns, by comparing diversity indices and beta diversity processes. We found that (i) the moist temperate zone in this region can be divided in four different major plant communities; (ii) each plant community has a specific set of environmental drivers; (iii) there is a significant variation in plant species composition between communities, in which six species contributed most to the plant composition dissimilarity; (iv) there is a significant difference of the four diversity indices between communities; and (v) community structure is twice more influenced by the spatial turnover of species than by the species loss. Overall, we showed that altitudinal gradients offer an important range of different environmental variables, highlighting the existence of micro-climates that drive the structure and composition of plant species in each micro-region. Each plant community along the altitudinal gradient is influenced by a set of environmental variables, which lead to the presence of indicator species in each micro-region. |
Audience | Academic |
Author | Haq, Shiekh Marifatul Iqbal, Zafar Hart, Robbie E. Afzal, Aftab Abd_Allah, Elsayed Fathi Kausar, Rukhsana Rahman, Inayat Ur Ijaz, Farhana Calixto, Eduardo S. Alqarawi, Abdulaziz A. Hashem, Abeer Al-Arjani, Al-Bandari Fahad |
AuthorAffiliation | 6 Botany and Microbiology Department, College of Science, King Saud University, Riyadh, Saudi Arabia 8 Department of Botany, University of Kashmir, Hazratbal, Srinagar, Jammu & Kashmir, India 2 William L. Brown Center, Missouri Botanical Garden, St. Louis, MO, United States of America 7 Department of Environmental Sciences, International Islamic University, Islamabad, Pakistan 3 Entomology and Nematology Department, University of Florida, Gainesville, FL, United States of America 4 Department of Biology, University of Missouri St. Louis (UMSL), Saint Louis, MO, United States of America Sikkim University, INDIA 5 Department of Plant Production, College of Food and Agriculture Science, King Saud University, Riyadh, Saudi Arabia 1 Department of Botany, Hazara University, Mansehra, Khyber Pakhtunkhwa, Pakistan |
AuthorAffiliation_xml | – name: Sikkim University, INDIA – name: 4 Department of Biology, University of Missouri St. Louis (UMSL), Saint Louis, MO, United States of America – name: 1 Department of Botany, Hazara University, Mansehra, Khyber Pakhtunkhwa, Pakistan – name: 3 Entomology and Nematology Department, University of Florida, Gainesville, FL, United States of America – name: 5 Department of Plant Production, College of Food and Agriculture Science, King Saud University, Riyadh, Saudi Arabia – name: 2 William L. Brown Center, Missouri Botanical Garden, St. Louis, MO, United States of America – name: 7 Department of Environmental Sciences, International Islamic University, Islamabad, Pakistan – name: 8 Department of Botany, University of Kashmir, Hazratbal, Srinagar, Jammu & Kashmir, India – name: 6 Botany and Microbiology Department, College of Science, King Saud University, Riyadh, Saudi Arabia |
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BackLink | https://www.ncbi.nlm.nih.gov/pubmed/35202409$$D View this record in MEDLINE/PubMed |
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SubjectTerms | Altitude Biodiversity Biodiversity hot spots Biological diversity Botanical research Botany Climate Climate Change Climate change influences Community structure Composition Distribution Diversity indices Ecosystem Environment Environmental aspects Environmental factors Environmental gradient Evaluation Flowers & plants Forests Forests and forestry Geographical distribution Indicator species Microclimate Mountain regions Mountains Natural history Pakistan Plant communities Plant Physiological Phenomena Plant populations Plant sciences Plant species Plants Species composition Species Specificity Temperate climates Temperate forests Temperature Vegetation |
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Title | Environmental variables drive plant species composition and distribution in the moist temperate forests of Northwestern Himalaya, Pakistan |
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