AS Hsiao - International Journal of Molecular Sciences, 2024 - mdpi.com
Global climate change has caused severe abiotic and biotic stresses, affecting plant growth and food security. The mechanical understanding of plant stress responses is critical for …
S Ghanmi, MA Smith, I Zaidi, M Drira, SP Graether… - Phytochemistry, 2023 - Elsevier
Dehydrins form the group II LEA protein family and are known to play multiple roles in plant stress tolerance and enzyme protection. They harbor a variable number of conserved lysine …
X Li, X Cao, J Li, Q Niu, Y Mo, L Xiao - Frontiers in Plant Science, 2022 - frontiersin.org
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. Numerous studies enlightened that the plant-specific C2H2-type zinc-finger …
Intrinsically disordered late embryogenesis abundant (LEA) proteins play a central role in the tolerance of plants and other organisms to dehydration brought upon, for example, by …
Dehydrins (Dhns) are a group of intrinsically disordered land plant proteins that are closely associated with tolerance of dehydrative stress. Dhns are recognized and classified by the …
G Upadhyaya, V Sethi… - Advancement of Melatonin …, 2024 - taylorfrancis.com
Melatonin, an emerging phytohormone, has been assigned vital roles in regulating growth and stress responses in plants. While its role in abiotic and biotic stress has been well …