Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated management of drought scenarios and monitoring of plants throughout their lifecycles. A robot moving between plants growing in 15-L pots monitors the plant water status and phenotypes the leaf or whole-plant morphology. From these measurements, we can compute more complex traits, such as leaf expansion (LE) or transpiration rate (TR) in response to water deficit. Here, we illustrate the capabilities of the platform with two practical cases in sunflower (Helianthus annuus): a genetic and genomic study of the response of yield-related traits to drought, and a modeling study using measured parameters as inputs for a crop simulation. For the genet...
High-throughput phenotyping platforms (HTPPs) provide novel opportunities to more effectively dissec...
Identifying the connections between molecular and physiological processes underlying the diversity o...
High-throughput phenotyping platforms (HTPPs) provide novel opportunities to more effectively dissec...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
This article presents experimental data describing the physiology and morphology of sunflower plants...
International audienceIdentifying the connections between molecular and physiological processes unde...
Current limited water availability due to climate changes results in severe drought stress and desic...
Characterization of plant morphological and physiological responses is a limiting step to breed crop...
<div><p>Identifying the connections between molecular and physiological processes underlying the div...
High-throughput phenotyping platforms (HTPPs) provide novel opportunities to more effectively dissec...
High-throughput phenotyping platforms (HTPPs) provide novel opportunities to more effectively dissec...
Identifying the connections between molecular and physiological processes underlying the diversity o...
High-throughput phenotyping platforms (HTPPs) provide novel opportunities to more effectively dissec...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
Heliaphen is an outdoor platform designed for high-throughput phenotyping. It allows the automated m...
This article presents experimental data describing the physiology and morphology of sunflower plants...
International audienceIdentifying the connections between molecular and physiological processes unde...
Current limited water availability due to climate changes results in severe drought stress and desic...
Characterization of plant morphological and physiological responses is a limiting step to breed crop...
<div><p>Identifying the connections between molecular and physiological processes underlying the div...
High-throughput phenotyping platforms (HTPPs) provide novel opportunities to more effectively dissec...
High-throughput phenotyping platforms (HTPPs) provide novel opportunities to more effectively dissec...
Identifying the connections between molecular and physiological processes underlying the diversity o...
High-throughput phenotyping platforms (HTPPs) provide novel opportunities to more effectively dissec...