Photosynthesis is a key target to improve crop production in many species including soybean [Glycine max (L.) Merr.]. A challenge is that phenotyping photosynthetic traits by traditional approaches is slow and destructive. There is proof-of-concept for leaf hyperspectral reflectance as a rapid method to model photosynthetic traits. However, the crucial step of demonstrating that hyperspectral approaches can be used to advance understanding of the genetic architecture of photosynthetic traits is untested. To address this challenge, we used full-range (500-2,400 nm) leaf reflectance spectroscopy to build partial least squares regression models to estimate leaf traits, including the rate-limiting processes of photosynthesis, maximum Rubisco ca...
Photosynthesis is currently measured using time-laborious and/or destructive methods which slows res...
To support the growing human population, plant phenotyping technologies must innovate to rapidly int...
To support the growing human population, plant phenotyping technologies must innovate to rapidly int...
Photosynthesis is a key target to improve crop production in many species including soybean [Glycine...
One proposed key strategy for increasing potential crop stability and yield centers on exploitation ...
One proposed key strategy for increasing potential crop stability and yield centers on exploitation ...
Main conclusion: By combining hyperspectral signatures of peanut and soybean, we predicted V and J w...
Spectroscopy is becoming an increasingly powerful tool to alleviate the challenges of traditional me...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] The Photochemical Reflectance...
Enhancement of leaf photosynthetic capacity can lead to greater biomass productivity in crop plants....
Traditional gas exchange measurements are cumbersome, which makes it difficult to capture variation ...
Traditional gas exchange measurements are cumbersome, which makes it difficult to capture variation ...
Sorghum, a genetically diverse C(4) cereal, is an ideal model to study natural variation in photosyn...
Sorghum, a genetically diverse C(4) cereal, is an ideal model to study natural variation in photosyn...
Photosynthesis (A) and intrinsic water use efficiency (WUE) are physiological traits directly influe...
Photosynthesis is currently measured using time-laborious and/or destructive methods which slows res...
To support the growing human population, plant phenotyping technologies must innovate to rapidly int...
To support the growing human population, plant phenotyping technologies must innovate to rapidly int...
Photosynthesis is a key target to improve crop production in many species including soybean [Glycine...
One proposed key strategy for increasing potential crop stability and yield centers on exploitation ...
One proposed key strategy for increasing potential crop stability and yield centers on exploitation ...
Main conclusion: By combining hyperspectral signatures of peanut and soybean, we predicted V and J w...
Spectroscopy is becoming an increasingly powerful tool to alleviate the challenges of traditional me...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] The Photochemical Reflectance...
Enhancement of leaf photosynthetic capacity can lead to greater biomass productivity in crop plants....
Traditional gas exchange measurements are cumbersome, which makes it difficult to capture variation ...
Traditional gas exchange measurements are cumbersome, which makes it difficult to capture variation ...
Sorghum, a genetically diverse C(4) cereal, is an ideal model to study natural variation in photosyn...
Sorghum, a genetically diverse C(4) cereal, is an ideal model to study natural variation in photosyn...
Photosynthesis (A) and intrinsic water use efficiency (WUE) are physiological traits directly influe...
Photosynthesis is currently measured using time-laborious and/or destructive methods which slows res...
To support the growing human population, plant phenotyping technologies must innovate to rapidly int...
To support the growing human population, plant phenotyping technologies must innovate to rapidly int...