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Determination the Usefulness of AhHMA4p1::AhHMA4 Expression in Biofortification Strategies

机译:确定AhHMA4p1 :: AhHMA4表达在生物强化策略中的有用性

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AhHM44 from Arabidopsis thaliana encodes Zn/Cd export protein that controls Zn/Cd translocation to shoots. The focus of this manuscript is the evaluation of AhHMA4 expression in tomato for mineral biofortification (more Zn and less Cd in shoots and fruits). Hydroponic and soil-based experiments were performed. Transgenic and wild-type plants were grown on two dilution levels of Knop's medium (1/10, 1/2) with or without Cd, to determine if mineral composition affects the pattern of root/shoot partitioning of both metals due to AhHMA4 expression. Facilitation of Zn translocation to shoots of 19-day-old transgenic tomato was noted only when plants were grown in the more diluted medium. Moreover, the expression pattern of Zn-Cd-Fe cross-homeostasis genes (LeIRTI, LeChln, LeNRAMP1) was changed in transgenics in a medium composition-dependent fashion. In plants grown in soil (with/without Cd) up to maturity, expression of AhHMA4 resulted in more efficient translocation of Zn to shoots and restriction of Cd. These results indicate the usefulness of AhHMA4 expression to improve the growth of tomato on low-Zn soil, also contaminated with Cd.
机译:拟南芥的AhHM44编码控制Zn / Cd易位至枝条的Zn / Cd出口蛋白。该手稿的重点是评估AhHMA4在番茄中的矿物质生物强化作用(芽和果实中的锌含量较高,镉含量较低)。进行了水培和土壤实验。转基因植物和野生型植物在含或不含Cd的两种稀释水平的Knop培养基(1/10,1/2)上生长,以确定矿物质组成是否会由于AhHMA4表达而影响两种金属的根/枝分配模式。仅当植物在稀释度更高的培养基中生长时,才注意到促进Zn易位至19天龄转基因番茄的芽。此外,Zn-Cd-Fe交叉稳态基因(LeIRTI,LeChln,LeNRAMP1)的表达模式在转基因中以依赖培养基的方式改变。在土壤(含或不含Cd)中生长直至成熟的植物中,AhHMA4的表达可导致Zn更有效地转移到芽上,并限制Cd。这些结果表明,AhHMA4表达对于改善也被Cd污染的低锌土壤上番茄的生长有用。

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