Miscanthus is renowned for its excellent water-use efficiency and good adaptability to a wide range of environmental conditions, making it suitable for cultivation on marginal soils. Drought is a major cause of this marginality, and its occurrence is becoming more frequent and prolonged due to climatic change. Developing drought tolerant genotypes of miscanthus would ensure the maintenance of economically viable yields on lands prone to periodic water-deficiency. To better understand the underlying response and tolerance mechanisms, pre-screen for better survivability at plot setup on marginal lands, and identifying early biomarkers of stress, we explored the genetic diversity present in Miscanthus sinensis under applied drought. Young plan...
Abstract Drought is a serious threat worldwide and has a significant impact on agricultural producti...
Drought tolerance in Miscanthus sinensis is a desirable trait because of its potential use to develo...
Control of drought stress in plant is not only very complex, but is also highly influenced by other ...
Background: Miscanthus is a commercial lignocellulosic biomass crop owing to its high biomass produc...
Miscanthus is a commercial lignocellulosic biomass crop owing to its high biomass productivity, resi...
High yielding perennial biomass crops of the species Miscanthus are widely recognized as one of the ...
Miscanthus, a high-yielding, warm-season C4 grass, shows promise as a potential bioenergy crop in te...
Miscanthus, a high-yielding, warm-season C-4 grass, shows promise as a potential bioenergy crop in t...
<p>Miscanthus has a high potential as a biomass feedstock for biofuel production. Drought tolerance ...
Although hybrids of the perennial rhizomatous grass Miscanthus give high yields under irrigation, th...
High yielding perennial biomass crops of the species Miscanthus are widely recognized as one of the ...
Background and Aims Water deficit and salinity stresses are often experienced by plants concurrently...
In the last decade, our understanding of the processes underlying plant response to drought, at the ...
Miscanthus is a high yielding perennial grass capable of high biomass yields with low inputs. Traits...
Plants are often exposed to unfavorable environmental conditions, for instance abiotic stresses, whi...
Abstract Drought is a serious threat worldwide and has a significant impact on agricultural producti...
Drought tolerance in Miscanthus sinensis is a desirable trait because of its potential use to develo...
Control of drought stress in plant is not only very complex, but is also highly influenced by other ...
Background: Miscanthus is a commercial lignocellulosic biomass crop owing to its high biomass produc...
Miscanthus is a commercial lignocellulosic biomass crop owing to its high biomass productivity, resi...
High yielding perennial biomass crops of the species Miscanthus are widely recognized as one of the ...
Miscanthus, a high-yielding, warm-season C4 grass, shows promise as a potential bioenergy crop in te...
Miscanthus, a high-yielding, warm-season C-4 grass, shows promise as a potential bioenergy crop in t...
<p>Miscanthus has a high potential as a biomass feedstock for biofuel production. Drought tolerance ...
Although hybrids of the perennial rhizomatous grass Miscanthus give high yields under irrigation, th...
High yielding perennial biomass crops of the species Miscanthus are widely recognized as one of the ...
Background and Aims Water deficit and salinity stresses are often experienced by plants concurrently...
In the last decade, our understanding of the processes underlying plant response to drought, at the ...
Miscanthus is a high yielding perennial grass capable of high biomass yields with low inputs. Traits...
Plants are often exposed to unfavorable environmental conditions, for instance abiotic stresses, whi...
Abstract Drought is a serious threat worldwide and has a significant impact on agricultural producti...
Drought tolerance in Miscanthus sinensis is a desirable trait because of its potential use to develo...
Control of drought stress in plant is not only very complex, but is also highly influenced by other ...