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Yi-Nong Xu

Publications and source records attributed to Yi-Nong Xu.

2 recordsLinked to original sources

[Molecular mechanism of the decrease in phosphatidylglycerol content in tobacco leaves under phosphate deficiency stress].

Under phosphate deficiency stress, the mRNA levels of PLDalpha and PLDbeta in tobacco older leaves were higher while in rapid developing ones were lower than those in controls. In addition, changes in PG hydrolase activity were positively correlated with the alternation of transcript levels of PLDalpha and PLDbeta genes in both types of leaves. Phosphate deficiency resulted in decreases in PG content in both older and rapid developing leaves, and that the extent of decrease in older leaves was much larger than that in rapid developing ones. Phosphatidic acid (PA) is one of the main hydrolysis product of PG. Its production was restricted by adding n-butanol, an inhibitor of PA formation via PLD pathway, to the in vitro enzyme reaction mixture. These results suggest that the enhanced PG hydrolase activity is one important cause of the decrease in PG content in older leaves, and the activity of PG hydrolase is regulated at the transcriptional level.

1-Butanol↗

Effect of various temperatures on phosphatidylglycerol biosynthesis in thylakoid membranes.

Lipid unsaturation, the major factor to maintain thylakoid membrane fluidity, is affected by temperature. In this work, we analysed the molecular species composition of phosphatidylglycerol (PG) in thylakoid membranes during spinach (Spinacia oleracea) and squash (Cucurbita pepo) cotyledon growth to investigate how the growth temperature affects the PG biosynthesis. Of the 10 molecular species detected, temperature affected mainly the relative content of molecular species containing linolenic acid (18:3) and those containing palmitic acid (16:0) at the sn-1 position of glycerol backbone. Lowering the temperature induced an increase in the former and a decrease in the latter. The relative content of molecular species containing 18:3 or 16:0 at the sn-1 position of the glycerol backbone were correlated with temperature. Our results indicate that the substrate selectivity of the glycerol-3-phosphate acyltransferase (GPAT) in chloroplasts towards 16:0 or oleic acid (18:1) and the activity of fatty acid desaturases are greatly affected by temperature. In addition, changes in the relative content of PG molecular species induced by variations in growth temperature depended mainly on the substrate selectivity of GPAT.

Journal Article↗