Identification and functional analysis of calcium sensor calmodulins from heavy metal hyperaccumulator Noccaea caerulescens

L Han, X Wu, K Hou, H Zhang, X Liang… - Functional Plant …, 2023 - CSIRO Publishing
Noccaea caerulescens (J. Presl & C. Presl) FK Mey. is a heavy metal hyperaccumulator
exhibiting extreme tolerance to various environmental stresses. To date, the functional role …

Calmodulin and calmodulin-like Ca2+ binding proteins as molecular players of abiotic stress response in plants

M Raina, AV Kisku, S Joon, S Kumar… - … Transport Elements in …, 2021 - Elsevier
Plants exhibit diverse mechanisms to combat an array of environmental stress factors. These
comprise intricate but well-regulated signaling pathways. Cytosolic free calcium (Ca+ 2) is …

[HTML][HTML] Isolation and expression analysis of CsCML genes in response to abiotic stresses in the tea plant (Camellia sinensis)

Q Ma, Q Zhou, C Chen, Q Cui, Y Zhao, K Wang… - Scientific reports, 2019 - nature.com
Calmodulin-like (CML) proteins are a class of important Ca2+ sensors in plants, which play
vital roles in regulating plant growth and development and response to abiotic stress. Tea …

Calcineurin B-like protein ZmCBL8-1 promotes salt stress resistance in Arabidopsis

R Wang, P Chen, M Han, W Wang, X Hu, R He, F Tai - Planta, 2024 - Springer
Main conclusion ZmCBL8-1 enhances salt stress tolerance in maize by improving the
antioxidant system to neutralize ROS homeostasis and inducing Na+/H+ antiporter gene …

Molecular characterisation of a calmodulin gene, VcCaM1, that is differentially expressed under aluminium stress in highbush blueberry

C Inostroza‐Blancheteau, F Aquea, R Loyola… - Plant …, 2013 - Wiley Online Library
Calmodulin (CaM), a small acidic protein, is one of the best characterised Ca2+ sensors in
eukaryotes. This Ca2+‐regulated protein plays a critical role in decoding and transducing …

Tobacco plants ectopically expressing the Ammopiptanthus mongolicus AmCBL1 gene display enhanced tolerance to multiple abiotic stresses

JH Chen, Y Sun, F Sun, XL Xia, WL Yin - Plant Growth Regulation, 2011 - Springer
Ca 2+ is a critical component in signal transduction pathways that lead to stress gene
expression in higher plants and regulates a wide range of physiological processes. The …

Alfalfa (Medicago sativa L.) MsCML46 gene encoding calmodulin-like protein confers tolerance to abiotic stress in tobacco

B Du, N Chen, L Song, D Wang, H Cai, L Yao, X Li… - Plant Cell Reports, 2021 - Springer
Key message MsCML46 enhances tolerance to abiotic stresses through alleviating osmotic
stress and oxidative damage by regulating the expression of stress-related genes to …

[HTML][HTML] Towards understanding plant calcium signaling through calmodulin-like proteins: a biochemical and structural perspective

V La Verde, P Dominici, A Astegno - International Journal of Molecular …, 2018 - mdpi.com
Ca2+ ions play a key role in a wide variety of environmental responses and developmental
processes in plants, and several protein families with Ca2+-binding domains have evolved …

Genome-wide Identification and Expression Analysis of CaM/CML Gene Family in Sacred Lotus (Nelumbo nucifera)

L Gao, RN Damaris, F Yu, P Yang - Plant molecular biology reporter, 2022 - Springer
Calmodulin (CaM) and calmodulin-like (CML) proteins, a group of Ca 2+ sensors, play an
important role in a large number of different biological processes, including plant growth and …

Calmodulin-like gene MtCML40 is involved in salt tolerance by regulating MtHKTs transporters in Medicago truncatula

X Zhang, T Wang, M Liu, W Sun, WH Zhang - … and Experimental Botany, 2019 - Elsevier
Abstract Calcium (Ca 2+) is a universal messenger mediating numerous physiological
processes in responses to developmental and environmental cues in plant cells. Calmodulin …