In crop genetic improvement, the introduction of C4 plants' characteristics, known for high photosynthetic efficiency and water utilization, into C3 plants has been a significant challenge. This study investigates the effects of the desert halophyte gene from a single-cell C4 photosythetic pathway, on drought resistance and photosynthetic performance in . We used transgenic with from C4 plant with classic Kranz anatomical structure and from C3 photosynthetic cycle plants as controls. The results demonstrated that C4 photosynthetic-type could improve drought resistance in plants through stomatal closure, promoting antioxidant enzyme accumulation, and reducing reactive oxygen species (ROS) accumulation. Overexpression of was significantly more effective than in enhancing drought tolerance. Notably, overexpressed significantly improved light saturation intensity, electron transport rate (ETR), photosynthetic rate (Pn), and photoprotection ability under intense light. Furthermore, overexpression or enhanced the activity of key C4 photosynthetic enzymes, including phosphoenolpyruvate carboxylase (PEPC), pyruvate orthophosphate dikinase (PPDK) and NADP-malic enzyme (NADP-ME), and promoted photosynthetic product sugar accumulation. However, with overexpression showing no obvious improvement effect on drought and photosynthetic performance. Therefore, these results indicated that introducing C4-type into C3 plants can significantly enhance drought resistance and photosynthetic performance. However, from a single-cell C4 cycle plant exhibits more significant effect in ETR and PSII photosynthesis performance than from a classical C4 anatomical structure plant, although the underlying mechanism requires further exploration.
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http://dx.doi.org/10.3389/fpls.2024.1443691 | DOI Listing |
Molecules
January 2025
Department of Pediatric Gastroenterology and Metabolic Diseases, Poznan University of Medical Sciences, Szpitalna 27/33, 60-572 Poznan, Poland.
Background: Tartary buckwheat is a plant recognized for its resistance to various environmental stresses. Due to its valuable source of phenolic compounds, is also characterized as a medicinal plant; therefore, the aim of this study was to investigate the drought stress for the levels of phenolic compounds in the morphological parts of the plant.
Methods: This experiment was conducted in 7 L pots under laboratory conditions.
Int J Mol Sci
January 2025
Xinjiang Production & State Key Laboratory Incubation Base for Conservation and Utilization of Bio-Resource in Tarim Basin, Alar 843300, China.
The transcription factors in the ABA Response Element Binding (AREB) protein family were differentially regulated under multiple stress conditions; however, functional analyses of AREB in Oliv. had not been conducted previously. In the present study, the comprehensive identification of the gene family and the function of in response to drought stress in were elucidated.
View Article and Find Full Text PDFInt J Mol Sci
January 2025
Xinjiang Production and Construction Corps Key Laboratory of Protection and Utilization of Biological Resources in Tarim Basin, College of Life Science, Tarim University, Alar 843300, China.
This study aims to identify the function of the () gene in the kidneys of . CYP2E1 is a significant metabolic enzyme involved in the metabolism of various endogenous and exogenous compounds and is associated with the occurrence and progression of multiple diseases. Given 's ability to survive in the extremely arid , we hypothesize that CYP2E1 in its kidneys plays a crucial role in adaptability.
View Article and Find Full Text PDFBiology (Basel)
January 2025
Food Crops Research Institute, Yunnan Academy of Agricultural Sciences, Kunming 650204, China.
Drought stress constitutes a major challenge to wheat production. Melatonin plays a vital role in plants' resistance to drought stress. Nevertheless, the influence of melatonin seed coating on the drought resistance ability of wheat remains unclear.
View Article and Find Full Text PDFPlant Physiol Biochem
December 2024
College of Ecology and Environment, Chengdu University of Technology, Sichuan, 610059, China; Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, Lanzhou University, Lanzhou, 730000, China; Key Laboratory of Monitoring for Heavy Metal Pollutants, Ministry of Ecology and Environment, Hunan, 410019, China. Electronic address:
With the intensification of climate change coupled with the inadequate agricultural management in certain regions, plants face numerous challenges due to various abiotic stresses. Stress associated proteins (SAPs) are essential functional genes in plants for coping with stress. This research provides a functional analysis of OsSAP17, a protein belonging to the SAP family in rice.
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