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Cold-Regulated Cereal Chloroplast Late Embryogenesis Abundant-Like Proteins. Molecular Characterization and Functional Analyses

机译:冷调节的谷物叶绿体晚期胚胎发生过程中大量类似的蛋白质。分子表征和功能分析

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摘要

Cold acclimation and freezing tolerance are the result of complex interaction between low temperature, light, and photosystem II (PSII) excitation pressure. Previous results have shown that expression of the Wcs19 gene is correlated with PSII excitation pressure measured in vivo as the relative reduction state of PSII. Using cDNA library screening and data mining, we have identified three different groups of proteins, late embryogenesis abundant (LEA) 3-L1, LEA3-L2, and LEA3-L3, sharing identities with WCS19. These groups represent a new class of proteins in cereals related to group 3 LEA proteins. They share important characteristics such as a sorting signal that is predicted to target them to either the chloroplast or mitochondria and a C-terminal sequence that may be involved in oligomerization. The results of subcellular fractionation, immunolocalization by electron microscopy and the analyses of target sequences within the Wcs19 gene are consistent with the localization of WCS19 within the chloroplast stroma of wheat (Triticum aestivum) and rye (Secale cereale). Western analysis showed that the accumulation of chloroplastic LEA3-L2 proteins is correlated with the capacity of different wheat and rye cultivars to develop freezing tolerance. Arabidopsis was transformed with the Wcs19 gene and the transgenic plants showed a significant increase in their freezing tolerance. This increase was only evident in cold-acclimated plants. The putative function of this protein in the enhancement of freezing tolerance is discussed.
机译:低温,光照和光系统II(PSII)激发压力之间复杂的相互作用是冷适应和冻结耐受的结果。先前的结果表明,Wcs19基因的表达与体内测得的PSII激发压力相关,后者是PSII的相对还原状态。使用cDNA文库筛选和数据挖掘,我们已鉴定出三类不同的蛋白质,即晚期胚胎发生丰富(LEA)3-L1,LEA3-L2和LEA3-L3,它们与WCS19具有相同的身份。这些组代表了谷物中与第3组LEA蛋白相关的一类新的蛋白质。它们具有重要的特性,例如分类信号(预计将它们靶向叶绿体或线粒体)以及可能参与寡聚化的C末端序列。亚细胞分级分离,电子显微镜免疫定位和Wcs19基因内靶序列分析的结果与WCS19在小麦(Triticum aestivum)和黑麦(Secale graine)的叶绿体基质中的定位一致。 Western分析表明,叶绿体LEA3-L2蛋白的积累与不同小麦和黑麦品种的抗冻能力有关。用Wcs19基因转化拟南芥,转基因植物的抗冻性显着提高。这种增加仅在冷驯化的植物中明显。讨论了该蛋白在增强冷冻耐受性方面的推定功能。

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