Soybean yield formation physiology–a foundation for precision breeding based improvement

JT Vogel, W Liu, P Olhoft, SJ Crafts-Brandner… - Frontiers in plant …, 2021 - frontiersin.org
The continued improvement of crop yield is a fundamental driver in agriculture and is the
goal of both plant breeders and researchers. Plant breeders have been remarkably …

Unoccupied aerial systems imagery for phenotyping in cotton, maize, soybean, and wheat breeding

AW Herr, A Adak, ME Carroll, D Elango, S Kar… - Crop …, 2023 - Wiley Online Library
High‐throughput phenotyping (HTP) with unoccupied aerial systems (UAS), consisting of
unoccupied aerial vehicles (UAV; or drones) and sensor (s), is an increasingly promising …

Integrating high-throughput phenotyping and statistical genomic methods to genetically improve longitudinal traits in crops

FF Moreira, HR Oliveira, JJ Volenec… - Frontiers in Plant …, 2020 - frontiersin.org
The rapid development of remote sensing in agronomic research allows the dynamic nature
of longitudinal traits to be adequately described, which may enhance the genetic …

Prospectus of genomic selection and phenomics in cereal, legume and oilseed breeding programs

KS Sandhu, LF Merrick, S Sankaran, Z Zhang… - Frontiers in …, 2022 - frontiersin.org
The last decade witnessed an unprecedented increase in the adoption of genomic selection
(GS) and phenomics tools in plant breeding programs, especially in major cereal crops. GS …

Improving the efficiency of soybean breeding with high-throughput canopy phenotyping

FF Moreira, AA Hearst, KA Cherkauer, KM Rainey - Plant Methods, 2019 - Springer
Background In the early stages of plant breeding programs high-quality phenotypes are still
a constraint to improve genetic gain. New field-based high-throughput phenotyping (HTP) …

Association between unmanned aerial vehicle high‐throughput canopy phenotyping and soybean yield

CR Casagrande, GC Sant'ana, AR Meda… - Agronomy …, 2022 - Wiley Online Library
Identifying agronomic traits correlated to grain yield can be very useful for soybean [Glycine
max (L.) Merr.] breeding, especially if these traits can be measured through unmanned …

Canopy coverage phenotyping and field spatial variability adjustment as an efficient selection tool in soybean breeding

DM Escamilla, M Huang, L McHale, D Wang… - Crop …, 2023 - Wiley Online Library
Accurate estimation of grain yield potential in soybean [Glycine max (L.) Merr.] progeny rows
(PRs) by measuring yield itself is challenging due to the small number of seeds available. To …

Optimization of temporal UAS‐based imagery analysis to estimate plant maturity date for soybean breeding

L Volpato, A Dobbels, A Borem… - The Plant Phenome …, 2021 - Wiley Online Library
Estimating the date of maturity of soybean breeding field plots is necessary for breeding line
characterization and for informing yield comparisons among varieties. The main drawback of …

Comparing artificial‐intelligence techniques with state‐of‐the‐art parametric prediction models for predicting soybean traits

S Ray, D Jarquin, R Howard - The Plant Genome, 2023 - Wiley Online Library
Abstract Soybean [Glycine max (L.) Merr.] is a significant source of protein and oil and is also
widely used as animal feed. Thus, developing lines that are superior in terms of yield …

Branch angle and leaflet shape are associated with canopy coverage in soybean

KS Virdi, S Sreekanta, A Dobbels, A Haaning… - The Plant …, 2023 - Wiley Online Library
Early canopy coverage is a desirable trait that is a major determinant of yield in soybean
(Glycine max). Variation in traits comprising shoot architecture can influence canopy …