Journal ArticleDOI
Lipid- and calcium-signaling regulation of HsfA2c-mediated heat tolerance in tall fescue
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Results suggest the transcriptional regulation of HsfA2c -mediated heat tolerance involving lipid and calcium signaling pathways in tall fescue.About:
This article is published in Environmental and Experimental Botany.The article was published on 2017-04-01. It has received 18 citations till now. The article focuses on the topics: Heat shock protein & Hsp70.read more
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Plant growth-regulating molecules as thermoprotectants: functional relevance and prospects for improving heat tolerance in food crops.
Lomeshwar Sharma,Manu Priya,Neeru Kaushal,Kalpna Bhandhari,Shikha Chaudhary,Om Parkash Dhankher,P. V. Vara Prasad,Kadambot H. M. Siddique,Harsh Nayyar +8 more
TL;DR: The involvement of various plant growth regulating molecules (hormones, polyamines, osmoprotectants, antioxidants, and other signaling molecules) in thermotolerance, through diverse cellular mechanisms that protect cells under heat stress is described.
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Multidimensional Role of Silicon to Activate Resilient Plant Growth and to Mitigate Abiotic Stress
Rakeeb Ahmad Mir,Basharat Ahmad Bhat,Henan Yousuf,Sheikh Tajamul Islam,Ali Raza,Masood Ahmad Rizvi,Sidra Charagh,Mohammed Albaqami,Parvaze A. Sofi,Sajad Majeed Zargar +9 more
TL;DR: In this article , the role of silicon in enhancing the phytohormone metabolism and its role in maintaining the physiological and biochemical well-being of crop plants during diverse abiotic stresses is elaborated.
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Overexpression of CsCaM3 Improves High Temperature Tolerance in Cucumber.
TL;DR: Overexpression of CsCaM3 in cucumber plants has the potential to improve their heat tolerance and protect against oxidative damage and photosynthesis system damage by regulating the expression of HT-responsive genes in plants, including chlorophyll catabolism-related genes under HT stress.
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Mechanisms of Environmental Stress Tolerance in Turfgrass
TL;DR: The regulation mechanism of turfgrass’s response to abiotic and biotic stresses was further understood and the specific or broad-spectrum related genes that may improve stress tolerance remain to be further identified.
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Silicon-mediated heat tolerance in higher plants: A mechanistic outlook.
Gopal Saha,Mohammad Golam Mostofa,Mohammad Golam Mostofa,Md. Mezanur Rahman,Lam-Son Phan Tran,Lam-Son Phan Tran +5 more
TL;DR: In this article, the authors made efforts to understand the mechanistic aspects of heat-induced responses and damages in plants, and possible molecular dynamics of Si-induced heat tolerance in plants.
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Analysis of relative gene expression data using real-time quantitative pcr and the 2(-delta delta c(t)) method
TL;DR: The 2-Delta Delta C(T) method as mentioned in this paper was proposed to analyze the relative changes in gene expression from real-time quantitative PCR experiments, and it has been shown to be useful in the analysis of realtime, quantitative PCR data.
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Copper enzymes in isolated chloroplasts. polyphenoloxidase in beta vulgaris
TL;DR: Evidence that a copper enzyme, polyphenoloxidase (otherwise known as tyrosinase or catecholase), is localized in the chloroplasts of spinach beet (chard), Beta vu?garis is presented.
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Role of plant heat-shock proteins and molecular chaperones in the abiotic stress response
TL;DR: The significance of Hsps and chaperones in abiotic stress responses in plants is summarized, and the co-operation among their different classes and their interactions with other stress-induced components are discussed.