» Articles » PMID: 39524562

Ecotypic Differentiation of Leaf Silicon Concentration in the Grass Along a Rainfall Gradient

Overview
Journal Front Plant Sci
Date 2024 Nov 11
PMID 39524562
Authors
Affiliations
Soon will be listed here.
Abstract

Ecotypic differentiation, reflected in substantial trait differences across populations, has been observed in various plant species distributed across aridity gradients. Nevertheless, ecotypic differentiation in leaf silicon concentration, known to alleviate drought stress in plants, remained hardly explored. Here, we provide a systematic test for ecotypic differentiation in leaf silicon concentration along two aridity gradients in the grass in Israel. Seed material was sampled in 15 sites along a macroclimatic aridity gradient (89 - 926 mm mean annual rainfall) and from corresponding north (moister) and south (more arid) exposed slopes (microclimatic gradient) at similar altitudes (mean north: 381 m a.s.l., mean south: 385 m a.s.l.). Plants were subsequently grown under common conditions and their leaf silicon concentration was analysed. Leaf silicon concentration increased with increasing aridity across the macroclimatic gradient, but did not differ between north and south slopes. The higher leaf silicon concentrations under more arid conditions can enhance the ability of plants to cope with more arid conditions by two mutually not exclusive mechanisms: (i) withstanding drought by reducing water loss and increasing water uptake or (ii) escaping drought by facilitating fast growth. Our study highlights that leaf silicon concentration contributes to ecotypic differentiation in annual grasses along macroclimatic aridity gradients.

References
1.
de Tombeur F, Raven J, Toussaint A, Lambers H, Cooke J, Hartley S . Why do plants silicify?. Trends Ecol Evol. 2022; 38(3):275-288. DOI: 10.1016/j.tree.2022.11.002. View

2.
Cooke J, Leishman M . Is plant ecology more siliceous than we realise?. Trends Plant Sci. 2010; 16(2):61-8. DOI: 10.1016/j.tplants.2010.10.003. View

3.
Catalan P, Muller J, Hasterok R, Jenkins G, Mur L, Langdon T . Evolution and taxonomic split of the model grass Brachypodium distachyon. Ann Bot. 2012; 109(2):385-405. PMC: 3268539. DOI: 10.1093/aob/mcr294. View

4.
Carlson J, Adams C, Holsinger K . Intraspecific variation in stomatal traits, leaf traits and physiology reflects adaptation along aridity gradients in a South African shrub. Ann Bot. 2015; 117(1):195-207. PMC: 4701147. DOI: 10.1093/aob/mcv146. View

5.
Gao H, Zhai S, Sun Z, Liu J, Tong C . Differences in biomass and silica content in typical plant communities with ecotones in the Min River estuary of southeast China. PeerJ. 2019; 7:e7218. PMC: 6657677. DOI: 10.7717/peerj.7218. View