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Na+ transporter HKT1;2 reduces flower Na+ content and considerably mitigates the decline in tomato fruit yields under saline conditions

机译:Na + Transporter HKT1; 2减少了花Na +含量,大大减轻了盐条件下番茄果原产量的下降

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摘要

Genes encoding HKT1-like Na+ transporters play a key role in the salinity tolerance mechanism in Arabidopsis and other plant species by retrieving Na+ from the xylem of different organs and tissues. In this study, we investigated the role of two HKT1;2 allelic variants in tomato salt tolerance in relation to vegetative growth and fruit yield in plants subjected to salt treatment in a commercial greenhouse under real production conditions. We used two near-isogenic lines (NILs), homozygous for either the Solanum lycopersicum (NIL17) or S. cheesmaniae (NIL14) allele, at HKT1;2 loci and their respective RNAi-Sl/ScHKT1;2 lines. The results obtained show that both ScHKT1;2- and SIHKTI;2-silenced lines display hypersensitivity to salinity associated with an altered leaf Na+/K+ ratio, thus confirming that HKT1;2 plays an important role in Na+ homeostasis and salinity tolerance in tomato. Both silenced lines also showed Na+ over-accumulation and a slight, but significant, reduction in K+ content in the flower tissues of salt-treated plants and consequently a higher Na+/K+ ratio as compared to the respective unsilenced lines. This altered Na+/K+ ratio in flower tissues is associated with a sharp reduction in fruit yield, measured as total fresh weight and number of fruits, in both silenced lines under salinity conditions. Our findings demonstrate that Na+ transporter HKT1;2 protects the flower against Na+ toxicity and mitigates the reduction in tomato fruit yield under salinity conditions.
机译:编码HKT1样Na +转运蛋白的基因在拟南芥和其他植物物种中,通过检索不同器官和组织的木形+的盐度和其他植物物种的关键作用。在这项研究中,我们研究了两种HKT1; 2个等位基因变体在商业温室中植物生长和植物中植物的植物生长和水果产量,在商业温室中的实际生产条件下的植物。我们使用了两条近似同学线(NIL),纯合的Solanum Lycopersicum(NIL17)或S. Cheesmaniae(NIL14)等位基因,在HKT1; 2个基因座及其各自的RNAi-SL / SCKT1; 2线。得到的结果表明,SCHKT1; 2-和SIHKTI; 2-沉默的线显示与改变的叶Na + / k +比相关的盐度过敏,从而证实HKT1; 2在番茄中发挥着重要作用和盐度耐盐度耐受性。两个沉默的线也显示出盐处理植物的花组织中的Na +过累积和轻微但显着的,但显着的,但是k +含量的k +含量,因此与相应的无限线相比较高的Na + / k +比。在花组织中的这种改变的Na + / K +比与盐度条件下的沉默线中的果实产量的急剧降低有关。我们的研究结果表明,Na + Transporter HKT1; 2保护花免受Na +毒性,并减轻盐度条件下的番茄果原产量的降低。

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