Plant photosynthesis under abiotic stresses: Damages, adaptive, and signaling mechanisms
Author:
Publisher
Elsevier BV
Subject
Plant Science,Ecology, Evolution, Behavior and Systematics
Reference183 articles.
1. Exogenous nitric oxide donor protects Artemisia annua from oxidative stress generated by boron and aluminium toxicity;Aftab;Ecotoxicol. Environ. Saf.,2012
2. Overexpression of differentially expressed AhCytb6 gene during plant-microbe interaction improves tolerance to N2 deficit and salt stress in transgenic tobacco;Alexander;Sci. Rep.,2021
3. Enhanced tolerance to light stress of transgenic Arabidopsis plants that express the codA gene for a bacterial choline oxidase;Alia Kondo;Plant Mol. Biol.,1999
4. Salt stress inhibits the repair of photodamaged photosystem II by suppressing the transcription and translation of psbA genes in Synechocystis;Allakhverdiev;Plant Physiol.,2002
5. Chlorophyll fluorescence imaging for early detection of drought and heat stress in strawberry plants;Arief;Plants,2023
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