The combination of low-cost, red–green–blue (RGB) image analysis and machine learning to screen for barley plant resistance to net blotch

F Leiva, R Dhakal, K Himanen, R Ortiz, A Chawade - Plants, 2024 - mdpi.com
Challenges of climate change and growth population are exacerbated by noticeable
environmental changes, which can increase the range of plant diseases, for instance, net …

Breaking the field phenoty** bottleneck in maize with autonomous robots

J DeBruin, T Aref, ST Tolosa, R Hensley, H Underwood… - 2024 - researchsquare.com
Understanding phenotypic plasticity in maize (Zea maysL.) is a current grand challenge for
continued crop improvement. Measuring the interactive effects of genetics, environmental …

Advances in Plant Phenoty** for Climate-Resilient Oilseeds Breeding

R Pasala, KK Jangid, A Gangurde, S Shinde… - … Climate Resilient and …, 2025 - Springer
The effect of climate change on agriculture is pronounced, as it frequently manifests through
a cascade of extreme weather phenomena, encompassing severe droughts, devastating …

High-Throughput Phenoty** Enabled Rice Improvement

BS Harshitha, A Naveen, HA Bhargavi… - Climate-Smart Rice …, 2024 - Springer
Rice is an important cereal crop that feeds over 50% of the global population, making its
production significant for global food security. High-throughput phenoty** (HTP) has …

[PDF][PDF] Bright Sky Publications TM New Delhi

A Chacko, P Singh, PP Kumar, HA Trivedi, S Bijarania - 2023 - researchgate.net
Genetic improvement of crop plants with desirable traits is an urgent need to tackle and
troubleshoot the challenges of climate change and global food security. Screening …