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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Differential expression of two lipid transfer protein genes in reproductive organs of peach (Prunus persica L. Batsch)
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Differential expression of two lipid transfer protein genes in reproductive organs of peach (Prunus persica L. Batsch)

机译:桃(Prunus persica L.Batsch)的生殖器官中两个脂质转移蛋白基因的差异表达

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摘要

Two cDNA clones (named Pp-LTP1 and Pp-LTP2) corresponding to different lipid transfer protein (LTP) genes have been isolated from peach (Prunus persica L. Batsch) epicarp and ovary, respectively. Sequence analysis revealed that the two fragments share 54% identity at nucleotide level and show common features of plant LTP genes, such as conserved cysteine residues and lipid-binding motifs. Phylogenetic analysis grouped Pp-LTP1 and Pp-LTP2 in two distinct clusters, the former with most of LTP genes sequenced in the Rosaceae family, the latter only with one almond LTP. Genomic Southern data indicated that a small LTP gene family is present in peach. Pp-LTP1 and Pp-LTP2 have been used as gene-specific probes to describe expression in flowers and fruits throughout development. In petals, sepals and stamen only Pp-LTP1 was expressed whereas transcripts of Pp-LTP2 strongly accumulated in non-pollinated and pollinated ovary with a decreasing trend in the period of four weeks after pollination. In fruits, a dramatic accumulation of Pp-LTP1 mRNA was detected in epicarp at all stages of fruit development and, with the exception of the early growth stage, no Pp-LTP1 transcripts have been detected in mesocarp. When Pp-LTP2 was used as a probe in the same fruit tissues, a faint hybridisation signal was observed only in epicarp of fruitlets collected at an early growth stage. Infection with Monilia induced only a slight increase of Pp-LTP1 transcript in epicarp of pre-climacteric and climacteric fruits. These results support the hypothesis of multiple roles played by LTPs and, considering. that LTPs have been recognised as the major allergen of peach, indicate that Pp-LTP1 could be related to the allergenicity of peach.
机译:分别从桃子(Prunus persica L. Batsch)的果皮和子房中分离出了两个分别对应于不同脂质转移蛋白(LTP)基因的cDNA克隆(分别命名为Pp-LTP1和Pp-LTP2)。序列分析表明,这两个片段在核苷酸水平上具有54%的同一性,并显示植物LTP基因的共同特征,例如保守的半胱氨酸残基和脂质结合基序。系统发育分析将Pp-LTP1和Pp-LTP2分为两个不同的簇,前者具有蔷薇科家族中大多数LTP基因的序列,后者仅具有一个杏仁LTP。 Southern的基因组数据表明,桃中存在一个小的LTP基因家族。 Pp-LTP1和Pp-LTP2已被用作基因特异性探针来描述在整个发育过程中在鲜花和水果中的表达。在花瓣,萼片和雄蕊中仅表达Pp-LTP1,而Pp-LTP2的转录物在未授粉和授粉的卵巢中强烈积累,在授粉后四周内呈下降趋势。在水果中,在果实发育的所有阶段在果皮中均检测到Pp-LTP1 mRNA的大量积累,除了早期生长阶段外,在中果皮中未检测到Pp-LTP1转录本。当Pp-LTP2用作相同水果组织中的探针时,仅在早期生长阶段收集的小果的果皮中观察到微弱的杂交信号。在更年期前和更年期前的果实的果皮中,感染Monilia只会诱导Pp-LTP1转录物的轻微增加。这些结果支持了LTP扮演多种角色并进行考虑的假设。 LTP被认为是桃子的主要致敏原,表明Pp-LTP1可能与桃子的致敏性有关。

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