Functional analysis of PsG6PDH, a cytosolic glucose-6-phosphate dehydrogenase gene from Populus suaveolens, and its contribution to cold tolerance improvement in tobacco plants

2013 ◽  
Vol 35 (9) ◽  
pp. 1509-1518 ◽  
Author(s):  
Yuanzhen Lin ◽  
Shanzhi Lin ◽  
Hai Guo ◽  
Zhiyi Zhang ◽  
Xiaoyang Chen
2005 ◽  
Vol 7 (1) ◽  
pp. 1-6 ◽  
Author(s):  
Yuan-zhen Lin ◽  
Shan-zhi Lin ◽  
Wei Zhang ◽  
Qian Zhang ◽  
Zhi-yi Zhang ◽  
...  

2001 ◽  
pp. 210
Author(s):  
Widanto Hardjowasito ◽  
Bambang Pardjianto ◽  
Loeki E. Fitri ◽  
Mardhani Ys ◽  
Loekito R. M. ◽  
...  

2020 ◽  
Vol 21 (19) ◽  
pp. 7322
Author(s):  
Yunting Zhang ◽  
Mengwen Luo ◽  
Lijuan Cheng ◽  
Yuanxiu Lin ◽  
Qing Chen ◽  
...  

Glucose-6-phosphate dehydrogenase (G6PDH) plays an important role in plant stress responses. Here, five FaG6PDH sequences were obtained in strawberry, designated as FaG6PDH-CY, FaG6PDH-P1, FaG6PDH-P1.1, FaG6PDH-P2 and FaG6PDH-P0, which were divided into cytosolic (CY) and plastidic (P) isoforms based on the bioinformatic analysis. The respective FaG6PDH genes had distinct expression patterns in all tissues and at different stages of fruit development. Notably, FaG6PDH-CY was the most highly expressed gene among five FaG6PDH members, indicating it encoded the major G6PDH isoform throughout the plant. FaG6PDH positively regulated cold tolerance in strawberry. Inhibition of its activity gave rise to greater cold-induced injury in plant. The FaG6PDH-CY transcript had a significant increase under cold stress, similar to the G6PDH enzyme activity, suggesting a principal participant in response to cold stress. Further study showed that the low-temperature responsiveness (LTR) element in FaG6PDH-CY promoter can promote the gene expression when plant encountered cold stimuli. Besides, FaG6PDH-CY was involved in regulating cold-induced activation of antioxidant enzyme genes (FaSOD, FaCAT, FaAPX and FaGR) and RBOH-dependent ROS generation. The elevated FaG6PDH-CY enhanced ROS-scavenging capability of antioxidant enzymes to suppress ROS excessive accumulation and relieved the oxidative damage, eventually improving the strawberry resistance to cold stress.


Genomics ◽  
1995 ◽  
Vol 26 (3) ◽  
pp. 587-591 ◽  
Author(s):  
Philip J. Mason ◽  
David J. Stevens ◽  
Lucio Luzzatto ◽  
Sydney Brenner ◽  
Samuel Aparicio

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