首页> 美国卫生研究院文献>Plant Physiology >Phytochelatin Synthases of the Model Legume Lotus japonicus. A Small Multigene Family with Differential Response to Cadmium and Alternatively Spliced Variants
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Phytochelatin Synthases of the Model Legume Lotus japonicus. A Small Multigene Family with Differential Response to Cadmium and Alternatively Spliced Variants

机译:豆科植物日本莲花模型的植物螯合酶合酶。一个小型的多基因家族对镉和可变剪接变体的反应不同。

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摘要

The biosynthesis of phytochelatins and homophytochelatins has been studied in nodulated plants of the model legume Lotus (Lotus japonicus). In the first 6 to 24 h of treatment with cadmium (Cd), roots started to synthesize elevated amounts of both polypeptides, with a concomitant increase of glutathione and a decrease of homoglutathione, indicating the presence of active phytochelatin synthase (PCS) genes. Screening of transformation-competent artificial chromosome libraries allowed identification of a cluster of three genes, LjPCS1, LjPCS2, and LjPCS3, which were mapped at 69.0 cM on chromosome 1. The genes differ in exon-intron composition and responsiveness to Cd. Gene structures and phylogenetic analysis of the three protein products, LjPCS1-8R, LjPCS2-7N, and LjPCS3-7N, are consistent with two sequential gene duplication events during evolution of vascular plants. Two sites for alternative splicing in the primary transcripts were identified. One of them, involving intron 2 of the LjPCS2 gene, was confirmed by the finding of the two predicted mRNAs, encoding LjPCS2-7R in roots and LjPCS2-7N in nodules. The amino acid sequences of LjPCS2-7R (or LjPCS2-7N) and LjPCS3-7N share 90% identity, but have only 43% to 59% identity with respect to the typical PCS1 enzymes of Lotus and other plants. The unusual LjPCS2-7N and LjPCS3-7N proteins conferred Cd tolerance when expressed in yeast (Saccharomyces cerevisiae) cells, whereas the alternatively spliced form, LjPCS2-7R, differing only in a five-amino acid motif (GRKWK) did not. These results unveil complex regulatory mechanisms of PCS expression in legume tissues in response to heavy metals and probably to other developmental and environmental factors.
机译:已经在豆科植物莲花(Lotus japonicus)模型的根瘤植物中研究了植物螯合螯合素和同型植物螯合素的生物合成。在镉(Cd)处理的最初6至24小时内,根开始合成两种多肽的量增加,同时谷胱甘肽增加而同型谷胱甘肽减少,表明存在活性植物螯合酶合酶(PCS)基因。筛选具有转化能力的人工染色体文库,可以鉴定三个基因簇,分别位于1号染色体69.0 cM处的LjPCS1,LjPCS2和LjPCS3。这些基因在外显子-内含子组成和对Cd的反应性方面有所不同。 LjPCS1-8R,LjPCS2-7N和LjPCS3-7N这三种蛋白质产物的基因结构和系统发育分析与维管植物进化过程中的两个连续基因复制事件一致。在两个主要转录本中发现了两个剪接位点。其中之一涉及LjPCS2基因的内含子2,这是通过发现两个预测的mRNA证实的,这两个mRNA在根中编码LjPCS2-7R,在结节中编码LjPCS2-7N。 LjPCS2-7R(或LjPCS2-7N)和LjPCS3-7N的氨基酸序列具有90%的同一性,但相对于Lotus和其他植物的典型PCS1酶而言,仅具有43%至59%的同一性。当在酵母(Saccharomyces cerevisiae)细胞中表达时,异常的LjPCS2-7N和LjPCS3-7N蛋白赋予Cd耐受性,而选择性剪接的形式LjPCS2-7R仅在五个氨基酸基序(GRKWK)中不同。这些结果揭示了豆类组织中PCS表达对重金属以及可能对其他发育和环境因素的响应的复杂调控机制。

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