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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Cloning and functional analysis of the VcCXIP4 and VcYSL6 genes as Cd-regulating genes in blueberry
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Cloning and functional analysis of the VcCXIP4 and VcYSL6 genes as Cd-regulating genes in blueberry

机译:vccxip4和Vcysl6基因的克隆和功能分析作为蓝莓中的CD调节基因

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摘要

Blueberries (Vaccinium ssp.) show relatively high resistance to pollution and have been reported to successfully colonize acid and heavy metal-contaminated soils. Blueberries were subjected to cadmium stress using a simulated pot-culture method. The intact CDS regions of VcCXIP4 and VcYSL6 were obtained, VcCXIP4 was located in the nucleus, while VcYSL6 was located in the chloroplast. Both genes were constructed into a modified plant expression vector pCambia1301 for tobacco transformation with agrobacterium infection methods. Results showed that VcCXIP4 did not function alone in regulating cadmium (Cd) transport. Cd content of Cd in the leaves of VcYSL6 transgenic tobacco by 15.57% under high Cd concentration. Both, VcCXIP4 and VcYSL6 genes were up-regulated under Cd stress. Blueberry primarily accumulated excess Cd in the root, but Cd content in the fruit was almost independent of Cd content in the soil. Further, the effect of soil Cd content on fruit Cd content was not significant. VcCXIP4 is likely to interact with other proteins to regulate excess Cd in blueberry, while VcYSL6 is a Cd transporter required for excess Cd detoxification in blueberry.
机译:蓝莓(SSP疫苗。)显示出对污染的耐受性相对高,并据报道成功地殖民和重金属污染的土壤。使用模拟罐培养方法对蓝莓进行镉胁迫。获得Vccxip4和Vcysl6的完整CDS区域,Vccxip4位于细胞核中,而Vcysl6位于叶绿体中。将两种基因构建成用于用农杆菌感染方法的烟草转化的改性植物表达载体pcambia1301。结果表明,VCCXIP4在调节镉(CD)运输方面没有单独起作用。高CD浓度下,VCYSL6转基因烟叶中CD的CD含量为15.57%。 vccxip4和vcysl6基因均在Cd胁迫下上调。蓝莓主要在根中累积过量的CD,但果实中的CD含量几乎与土壤中的CD含量无关。此外,土壤CD含量对水果CD含量的影响并不显着。 VCCXIP4可能与其他蛋白质相互作用以调节蓝莓中的过量CD,而VCYSL6是蓝莓中过量CD解毒所需的CD转运蛋白。

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