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首页> 外文期刊>Journal of Experimental Botany >Evolution and functional differentiation of recently diverged phytochelatin synthase genes from Arundo donax L.
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Evolution and functional differentiation of recently diverged phytochelatin synthase genes from Arundo donax L.

机译:芳烃唐氏蓬松料植物素合成酶基因的进化与功能分化。

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Phytochelatin synthases (PCSs) play pivotal roles in the detoxification of heavy metals and metalloids in plants; however, little information on the evolution of recently duplicated PCS genes in plant species is available. Here we characterize the evolution and functional differentiation of three PCS genes from the giant reed (Arundo donax L.), a biomass/bioenergy crop with remarkable resistance to cadmium and other heavy metals. Phylogenetic reconstruction with PCS genes from fully sequenced monocotyledonous genomes indicated that the three A. donax PCSs, namely AdPCS1-3, form a monophyletic clade. The AdPCS1-3 genes were expressed at low levels in many A. donax organs and displayed different levels of cadmium-responsive expression in roots. Overexpression of AdPCS1-3 in Arabidopsis thaliana and yeast reproduced the phenotype of functional PCS genes. Mass spectrometry analyses confirmed that AdPCS1-3 are all functional enzymes, but with significant differences in the amount of the phytochelatins synthesized. Moreover, heterogeneous evolutionary rates characterized the AdPCS1-3 genes, indicative of relaxed natural selection. These results highlight the elevated functional differentiation of A. donax PCS genes from both a transcriptional and an enzymatic point of view, providing evidence of the high evolvability of PCS genes and of plant responsiveness to heavy metal stress.
机译:Phytochelatin合成酶(PCS)在植物中重金属和金属的解毒中起枢转作用;但是,有关植物物种最近重复的PCS基因的演变的少量信息。在这里,我们将三种PCS基因的演化和功能分化从巨型芦苇(Arundo Donax L.),生物质/生物能源作物中的一种抗性与镉和其他重金属的抗性显着抗性。从完全测序的单象间基因组的PCS基因与PCS基因的系统发育重建表明,三个A栓PCS,即ADPCS1-3,形成单胞型疏水板。 ADPCS1-3基因在许多A. Donax器官的低水平下表达,并在根中显示出不同水平的镉响应表达。 Adpcs1-3在拟南芥和酵母中的过度表达再现功能性PCS基因的表型。质谱分析证实,ADPCS1-3是所有功能酶,但在合成的植物盆种量的量差异有显着差异。此外,异质进化率表征了ADPCS1-3基因,指示轻松的自然选择。这些结果突出了A. Donax PCS基因的升高功能分化来自转录和酶的观点,提供了PCS基因的高进化性和对重金属应力的植物反应性的证据。

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