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首页> 外文期刊>Plant, Cell & Environment >Ice recrystallization inhibition proteins (IRIPs) and freeze tolerance in the cryophilic Antarctic hair grass Deschampsia antarctica E. Desv.
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Ice recrystallization inhibition proteins (IRIPs) and freeze tolerance in the cryophilic Antarctic hair grass Deschampsia antarctica E. Desv.

机译:在低温的南极毛草Deschampsia antarctica E. Desv。中,冰重结晶抑制蛋白(IRIPs)和抗冻性。

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Antarctic hair grass (Deschampsia antarctica E. Desv.), the only grass indigenous to Antarctica, has well-developed freezing tolerance, strongly induced by cold acclimation. Here, we show that in response to low temperatures, D. antarctica expresses potent recrystallization inhibition (RI) activity that, inhibits the growth of small ice crystals into potentially damaging large ones, is proteinaceous and localized to the apoplasm. A gene family from D. antarctica encoding putative homologs of an ice recrystallization inhibition protein (IRIP) has been isolated and characterized. IRIPs are apoplastically targeted proteins with two potential ice-binding motifs: 1-9 leucine-rich repeats (LRRs) and c. 16 'IRIP' repeats. IRIP genes appear to be confined to the grass subfamily Pooideae and their products, exhibit sequence similarity to phytosulphokine receptors and are predicted to adopt conformations with two ice-binding surfaces. D. antarctica IRIP (DaIRIP) transcript levels are greatly enhanced in leaf tissue following cold acclimation. Transgenic Arabidopsis thaliana expressing a DaIRIP has novel RI activity, and purified DaIRIP, when added back to extracts of leaves from non-acclimated D. antarctica, can reconstitute the activity found in acclimated plants. We propose that IRIP-mediated RI activity may contribute to the cryotolerance of D. antarctica, and thus to its unique ability to have colonized Antarctica.
机译:南极毛草(Deschampsia antarctica E. Desv。)是南极唯一的原生草,具有很强的耐寒性,受冷适应强烈诱导。在这里,我们表明响应低温,南极D.表达强大的重结晶抑制(RI)活性,抑制小冰晶的生长成为潜在的损害大冰晶,是蛋白质的,并定位于无质子体。已经分离和鉴定了来自南极D.的一个编码冰重结晶抑制蛋白(IRIP)的假定同源物的基因家族。 IRIPs是具有两个潜在的冰结合基序的质外性靶向蛋白:1-9富含亮氨酸的重复序列(LRR)和c。 16个“ IRIP”重复。 IRIP基因似乎仅限于禾本科亚科Pooideae及其产品,与植物硫磷素受体具有相似的序列,并预计将采用具有两个冰结合表面的构象。冷驯化后,叶片组织中的南极洲D. IRIP(DaIRIP)转录水平大大提高。表达DaIRIP的转基因拟南芥具有新的RI活性,纯化的DaIRIP当加回到未驯化的南极洲龙虾的叶子提取物中时,可以重建在驯化的植物中发现的活性。我们建议IRIP介导的RI活性可能有助于南极D.的低温耐受性,并因此有助于其定殖南极洲的独特能力。

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