Various attempts have been made to understand the traits and genes associated with heat stress tolerance in wheat ( triticum aestivum l.) in the field and under controlled conditions. Plants have evolved overlapping but distinct cellular responses to different aspects of high temperature stress. Here, we phenotyped the response of 184 genotypes of wheat to heat stress using aerial imagery and physiological dataset.
By integrating imaging techniques like near infrared, far infrared, thermal and hyper spectral imaging techniques with machine learning algorithms, high throughput phenotyping enhances the accuracy and efficiency of plant characters measurements. Various attempts have been made to understand the traits and genes associated with heat stress tolerance in wheat (triticum aestivum l.) in the field and under controlled conditions.