Ice recrystallization inhibition proteins of perennial ryegrass enhance freezing tolerance

Planta(2010)

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摘要
Ice recrystallization inhibition (IRI) proteins are thought to play an important role in conferring freezing tolerance in plants. Two genes encoding IRI proteins, LpIRI - a and LpIRI - b, were isolated from a relatively cold-tolerant perennial ryegrass cv. Caddyshack. Amino acid alignments among the IRI proteins revealed the presence of conserved repetitive IRI-domain motifs (NxVxxG/NxVxG) in both proteins. Quantitative reverse transcriptase PCR (qRT-PCR) analysis indicated that LpIRI - a was up-regulated approximately 40-fold while LpIRI - b was up-regulated sevenfold after just 1 h of cold acclimation, and by 7 days of cold acclimation the transcripts had increased 8,000-fold for LpIRI - a and 1,000-fold for LpIRI - b . Overexpression of either LpIRI - a or LpIRI - b gene in Arabidopsis increased survival rates of the seedlings following a freezing test under both cold-acclimated and nonacclimated conditions. For example, without cold acclimation a −4°C treatment reduced the wild type’s survival rate to an average of 73%, but resulted in survival rates of 85–100% for four transgenic lines. With cold acclimation, a −12°C treatment reduced the wild type’s survival rate to an average of 38.7%, while it resulted in a survival rate of 51–78.5% for transgenic lines. After cold acclimation, transgenic Arabidopsis plants overexpressing either LpIRI - a or LpIRI - b gene exhibited a consistent reduction in freezing-induced ion leakage at −8, −9, and −10°C. Furthermore, the induced expression of the LpIRI-a and LpIRI-b proteins in transgenic E. coli enhanced the freezing tolerance in host cells. Our results suggest that IRI proteins play an important role in freezing tolerance in plants.
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关键词
Antifreeze protein,AFP,Ice recrystallization inhibition proteins,Lolium perenne L.,Freezing tolerance,Cold acclimation
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