Purple acid phosphatases: roles in phosphate utilization and new emerging functions

J Bhadouria, J Giri - Plant Cell Reports, 2022 - Springer
Plants strive for phosphorus (P), which is an essential mineral for their life. Since P
availability is limiting in most of the world's soils, plants have evolved with a complex …

[HTML][HTML] The Arabidopsis transcriptome responds specifically and dynamically to high light stress

J Huang, X Zhao, J Chory - Cell Reports, 2019 - cell.com
The dynamic and specific transcriptome for high light (HL) stress in plants is poorly
understood because heat has confounded previous studies. Here, we perform an in-depth …

[HTML][HTML] The soybean purple acid phosphatase GmPAP14 predominantly enhances external phytate utilization in plants

Y Kong, X Li, B Wang, W Li, H Du… - Frontiers in Plant Science, 2018 - frontiersin.org
Induction and secretion of acid phosphatases (APases) is considered to be an important
strategy for improving plant growth under conditions of low inorganic phosphate (Pi). Purple …

Hydrogen sulfide delays leaf yellowing of stored water spinach (Ipomoea aquatica) during dark-induced senescence by delaying chlorophyll breakdown, maintaining …

H Hu, D Liu, P Li, W Shen - Postharvest Biology and Technology, 2015 - Elsevier
During dark-induced senescence at 12–14° C, changes of endogenous hydrogen sulfide (H
2 S) metabolism, chlorophyll degradation, energy status, and antioxidant capacity of …

Two pivotal RNA editing sites in the mitochondrial atp1 mRNA are required for ATP synthase to produce sufficient ATP for cotton fiber cell elongation

P He, G Xiao, H Liu, L Zhang, L Zhao, M Tang… - New Phytologist, 2018 - JSTOR
RNA editing is a post-transcriptional maturation process affecting organelle transcripts in
land plants. However, the molecular functions and physiological roles of RNA editing are still …

[HTML][HTML] Impacts of high ATP supply from chloroplasts and mitochondria on the leaf metabolism of Arabidopsis thaliana

C Liang, Y Zhang, S Cheng, S Osorio, Y Sun… - Frontiers in plant …, 2015 - frontiersin.org
Chloroplasts and mitochondria are the major ATP producing organelles in plant leaves.
Arabidopsis thaliana purple acid phosphatase 2 (AtPAP2) is a phosphatase dually targeted …

Purple acid phosphatase2 stimulates a futile cycle of lipid synthesis and degradation, and mitigates the negative growth effects of triacylglycerol accumulation in …

Y Cai, Z Zhai, J Blanford, H Liu, H Shi… - New …, 2022 - Wiley Online Library
Storage lipids (mostly triacylglycerols, TAGs) serve as an important energy and carbon
reserve in plants, and hyperaccumulation of TAG in vegetative tissues can have negative …

[HTML][HTML] Heterologous expression of AtPAP2 in transgenic potato influences carbon metabolism and tuber development

Y Zhang, F Sun, J Fettke, MA Schöttler, L Ramsden… - FEBS letters, 2014 - Elsevier
Abstract Changes in carbon flow and sink/source activities can affect floral, architectural, and
reproductive traits of plants. In potato, overexpression (OE) of the purple acid phosphatase 2 …

Exaggerated root respiration accounts for growth retardation in a starchless mutant of Arabidopsis thaliana

K Brauner, I Hörmiller, T Nägele, AG Heyer - The Plant Journal, 2014 - Wiley Online Library
The knock‐out mutation of plastidial phosphoglucomutase (pgm) causes a starchless
phenotype in A rabidopsis thaliana, and results in a severe growth reduction of plants …

[HTML][HTML] FdC1 and leaf-type ferredoxins channel electrons from photosystem I to different downstream electron acceptors

X Guan, S Chen, CP Voon, KB Wong… - Frontiers in Plant …, 2018 - frontiersin.org
Plant-type ferredoxins in Arabidopsis transfer electrons from the photosystem I to multiple
redox-driven enzymes involved in the assimilation of carbon, nitrogen, and sulfur. Leaf-type …