Contribution of proteomic studies towards understanding plant heavy metal stress response

Z Hossain, S Komatsu - Frontiers in Plant Science, 2013 - frontiersin.org
Modulation of plant proteome composition is an inevitable process to cope with the
environmental challenges including heavy metal (HM) stress. Soil and water contaminated …

[HTML][HTML] Omics studies and systems biology perspective towards abiotic stress response in plants

JP Sahoo, L Behera, SS Sharma, J Praveena… - American Journal of …, 2020 - scirp.org
Plant abiotic stress responses are vital yield-restricting aspect in agriculture. Recent
technology in plant biology allows research of such stress responses at a molecular scale in …

Deficiency and toxicity of boron: Alterations in growth, oxidative damage and uptake by citrange orange plants

A Shah, X Wu, A Ullah, S Fahad, R Muhammad… - Ecotoxicology and …, 2017 - Elsevier
Boron (B) deficiency and toxicity are the major factors that affect plant growth and yield. The
present study revealed the effect of B deficiency and toxicity on plant growth, morphology …

iTRAQ protein profile analysis of Citrus sinensis roots in response to long-term boron-deficiency

LT Yang, YP Qi, YB Lu, P Guo, W Sang, H Feng… - Journal of …, 2013 - Elsevier
Seedlings of Citrus sinensis were fertilized with boron (B)-deficient (0 μM H 3 BO 3) or-
sufficient (10 μM H 3 BO 3) nutrient solution for 15 weeks. Thereafter, iTRAQ analysis was …

Omics technologies for abiotic stress tolerance in plants: current status and prospects

S Mehta, D James, MK Reddy - Recent approaches in omics for plant …, 2019 - Springer
Plants are widely considered as the primary source for sustaining life on earth. As plants are
sessile by nature, they are continuously exposed to many environmental stresses at various …

Proteomic analysis of Citrus sinensis roots and leaves in response to long-term magnesium-deficiency

HY Peng, YP Qi, J Lee, LT Yang, P Guo, HX Jiang… - BMC genomics, 2015 - Springer
Abstract Background Magnesium (Mg)-deficiency is frequently observed in Citrus
plantations and is responsible for the loss of productivity and poor fruit quality. Knowledge …

Effects of boron deficiency on major metabolites, key enzymes and gas exchange in leaves and roots of Citrus sinensis seedlings

YB Lu, LT Yang, Y Li, J Xu, TT Liao, YB Chen… - Tree …, 2014 - academic.oup.com
Boron (B) deficiency is a widespread problem in many crops, including Citrus. The effects of
B-deficiency on gas exchange, carbohydrates, organic acids, amino acids, total soluble …

Leaf cDNA-AFLP analysis of two citrus species differing in manganese tolerance in response to long-term manganese-toxicity

CP Zhou, YP Qi, X You, LT Yang, P Guo, X Ye… - BMC genomics, 2013 - Springer
Background Very little is known about manganese (Mn)-toxicity-responsive genes in citrus
plants. Seedlings of 'Xuegan'(Citrus sinensis) and 'Sour pummelo'(Citrus grandis) were …

Proteomics of heavy metal toxicity in plants

P Cvjetko, M Zovko, B Balen - Arhiv za higijenu rada i toksikologiju, 2014 - hrcak.srce.hr
Sažetak Plants endure a variety of abiotic and biotic stresses, all of which cause major
limitations to production. Among abiotic stressors, heavy metal contamination represents a …

Physiological and genetic responses to boron deficiency in Brassica napus: A review

D Zhang, H Zhao, L Shi, F Xu - Soil Science and Plant Nutrition, 2014 - Taylor & Francis
Boron (B) is an essential microelement for the growth and development of plants, and B
deficiency affects many biochemical and physiological processes. Brassica napus L. has a …