This study aimed to determine whether rainfall regime has driven differentiation in the Australian perennial grass, Austrodanthonia caespitosa, resulting in local ecotypes possessing characters, such as deep rootedness or summer activity, that may be particularly useful in reducing deep drainage for salinity mitigation, or whether the species shows a plastic response in root growth to soil water distribution. Rainfall regime varies within a given annual rainfall because size and ditribution of rainfall event vary. This can have an important effect on soil water distribution, both spatially and temporally. This study investigates the relationship between rainfall regime and the structure of root systems in local populations of Austrodanthon...
The planting of deep-rooted pasture species, herbaceous shrubs, and trees has been widely recommende...
Background and aims The frequency of rain is predicted to change in high latitude areas with more pr...
Rainfall, vegetation characteristics and soil hydraulic properties influence deep drainage patterns ...
1. Leaf hydraulic traits characterize plant drought tolerance and responses to climate change. Yet, ...
We examined patterns of seedling root architecture, morphology and anatomy in Australian perennial p...
Aim A consistent set of root characteristics for herbaceous plants growing in water-limited environm...
Aim A consistent set of root characteristics for herbaceous plants growing in water-limited environm...
Twenty-eight natural populations of Wallaby Grasses, Austrodanthonia species, in central western New...
The objective of this study was to investigate patterns of soil water extraction and drought resista...
The objective of this study was to investigate patterns of soil water extraction and drought resista...
The objective of this study was to investigate patterns of soil water extraction and drought resista...
Plant traits are fundamental components of the ecological strategies of plants, influencing how plan...
Background and aims In Australia’s Mediterranean hyperdiverse vegetation, species that produce clus...
Aims: Variation in precipitation strongly influences plant growth, species distributions and genetic...
The planting of deep-rooted pasture species, herbaceous shrubs, and trees has been widely recommende...
The planting of deep-rooted pasture species, herbaceous shrubs, and trees has been widely recommende...
Background and aims The frequency of rain is predicted to change in high latitude areas with more pr...
Rainfall, vegetation characteristics and soil hydraulic properties influence deep drainage patterns ...
1. Leaf hydraulic traits characterize plant drought tolerance and responses to climate change. Yet, ...
We examined patterns of seedling root architecture, morphology and anatomy in Australian perennial p...
Aim A consistent set of root characteristics for herbaceous plants growing in water-limited environm...
Aim A consistent set of root characteristics for herbaceous plants growing in water-limited environm...
Twenty-eight natural populations of Wallaby Grasses, Austrodanthonia species, in central western New...
The objective of this study was to investigate patterns of soil water extraction and drought resista...
The objective of this study was to investigate patterns of soil water extraction and drought resista...
The objective of this study was to investigate patterns of soil water extraction and drought resista...
Plant traits are fundamental components of the ecological strategies of plants, influencing how plan...
Background and aims In Australia’s Mediterranean hyperdiverse vegetation, species that produce clus...
Aims: Variation in precipitation strongly influences plant growth, species distributions and genetic...
The planting of deep-rooted pasture species, herbaceous shrubs, and trees has been widely recommende...
The planting of deep-rooted pasture species, herbaceous shrubs, and trees has been widely recommende...
Background and aims The frequency of rain is predicted to change in high latitude areas with more pr...
Rainfall, vegetation characteristics and soil hydraulic properties influence deep drainage patterns ...