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Manavalan, M.

Publications and source records attributed to Manavalan, M..

2 recordsLinked to original sources

Global Change Factors differentially impact Floral and Leaf Economic Traits

Background and AimsSince the Industrial Revolution, rising atmospheric CO{square}, warming, and more frequent droughts have significantly impacted ecosystems. While the response of leaf functional traits to these climate change factors have been widely studied, reproductive traits remain relatively understudied, despite their key role in the diversification and distribution of flowering plants. Here, we investigated how elevated CO{square}, warming, drought, and their interactions affect floral, leaf and seed traits in two model grassland species. We also examined how these factors influence trait coordination. MethodsTwo common grassland species, Lotus corniculatus and Crepis capillaris, were sampled from a 10-year climate manipulation experiment. We measured resource economic traits related to organ size, construction cost, and dry matter content in both leaves and flowers, along with seed size and number. Univariate and multivariate analyses were used to assess trait responses, and rank-abundance curves were employed to visualize changes in trait coordination across treatments. Key ResultsTrait responses to climate change factors varied between species. Drought emerged as the most influential factor, affecting only leaf traits in L. corniculatus, but impacting leaf, floral, and seed traits in C. capillaris. Across both species, climate change conditions increased leaf construction costs and reduced flower size. In addition, it led to larger leaves in L. corniculatus, and fewer seeds in C. capillaris. Under extreme climate change conditions, trait coordination became stronger in both species, although C. capillaris showed no coordination response specifically to drought. ConclusionOur results show that floral economic traits, like leaf traits, are responsive to individual and combined effects of climate change factors. This highlights their importance in shaping plant strategies under environmental stress and emphasizes the need to better integrate floral traits into the whole-plant economic framework.

ecology↗

Investigation into the Phenological Patterns of Trees in Socorro Plateau, Goa

Phenology is defined as the observation of biological events or life cycle phases that occur due to changes in climate and season. Primarily, phenology of all organisms is influenced by temperature fluctuations and quick climate changes which in turn regulate a variety of environmental factors. When discussing about the effects of climate change on ecosystems, phenology is especially important as many animals depend on the phenology of plants for their survival. Analysing the phenological patterns of a particular area can provide us with critical points on how ecosystems are affected by climate change. In this study, we have analysed the patterns of phenology for several trees and tried to identify any idiosyncrasies which may arise as a result of climate change and other similar factors. A total of 75 individuals belonging to 15 genera or 17 species were documented in Socorro plateau, Goa and their phenological patterns such as flowering, fruiting and leaf cover were recorded and analysed. The phenological patterns of the individual trees were compared in relation to each other such as in-between flowering and fruiting of the same species. In addition to this, the species were compared with each other in terms of their rate of flowering/fruiting to observe their inter-connected variations. Prospects for future research were identified to further promote studies in conservation biology of flora and fauna in the area and in climate change to mediate its effects.

plant biology↗