The RNase PD2 gene of almond (Prunus dulcis) represents an evolutionarily distinct class of S-like RNase genes.

R C Ma, M M Oliveira
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引用次数: 35

Abstract

A cDNA for an S-like RNase (RNase PD2) has been isolated from a pistil cDNA library of Prunus dulcis cv. Ferragnés. The cDNA encodes an acidic protein of 226 amino acid residues with a molecular weight of 25 kDa. A potential N-glycosylation site is present at the N-terminus in RNase PD2. A signal peptide of 23 amino acid residues and a transmembrane domain are predicted. The two active-site histidines present in enzymes of the T2/S RNase superfamily were detected in RNase PD2. Its amino acid sequence shows 71.2% similarity to RNSI of Arabidopsis and RNase T2 of chickpea, respectively. Northern blotting and RT-PCR analyses indicate that PD2 is expressed predominantly in petals, pistils of open flowers and leaves of the almond tree. Analyses of shoots cultured in vitro suggested that the expression of RNase PD2 is associated with phosphate starvation. Southern analysis detected two sequences related to RNase PD2 in the P. dulcis genome. RFLP analysis showed that S-like RNase genes are polymorphic in different almond cultivars. The PD2 gene sequence was amplified by PCR and two introns were shown to interrupt the coding region. Based on sequence analysis, we have defined three classes of S-like RNase genes, with the PD2 RNase gene representing a distinct class. The significance of the structural divergence of S-like RNase genes is further discussed.

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杏仁(Prunus dulcis) RNase PD2基因是一类进化上独特的s样RNase基因。
从桃李雌蕊cDNA文库中分离到一个s样RNase (RNase PD2) cDNA。Ferragnes。该cDNA编码一个由226个氨基酸残基组成的酸性蛋白,分子量为25 kDa。在RNase PD2的n端存在一个潜在的n -糖基化位点。预测了一个由23个氨基酸残基组成的信号肽和一个跨膜结构域。在RNase PD2中检测到T2/S RNase超家族中存在的两种活性位点组氨酸。其氨基酸序列与拟南芥RNSI和鹰嘴豆RNase T2的相似性分别为71.2%。Northern blotting和RT-PCR分析表明,PD2主要表达于杏树的花瓣、雌蕊和叶片中。体外培养芽的分析表明,RNase PD2的表达与磷酸盐饥饿有关。Southern分析在杜鹃基因组中检测到两个与RNase PD2相关的序列。RFLP分析表明,S-like RNase基因在不同杏仁品种中具有多态性。PCR扩增了PD2基因序列,发现两个内含子阻断了编码区。基于序列分析,我们定义了3类S-like RNase基因,其中PD2 RNase基因代表了一个独特的类别。进一步讨论了s样RNase基因结构分化的意义。
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