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In planta Transformed Cumin (Cuminum cyminum L.) Plants Overexpressing the SbNHX1 Gene Showed Enhanced Salt Endurance

机译:在植物转化的孜然(Cumum cyminum L.)植物中过表达SbNHX1基因显示增强的耐盐性

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摘要

Cumin is an annual, herbaceous, medicinal, aromatic, spice glycophyte that contains diverse applications as a food and flavoring additive, and therapeutic agents. An efficient, less time consuming, Agrobacterium-mediated, a tissue culture-independent in planta genetic transformation method was established for the first time using cumin seeds. The SbNHX1 gene, cloned from an extreme halophyte Salicornia brachiata was transformed in cumin using optimized in planta transformation method. The SbNHX1 gene encodes a vacuolar Na+/H+ antiporter and is involved in the compartmentalization of excess Na+ ions into the vacuole and maintenance of ion homeostasis Transgenic cumin plants were confirmed by PCR using gene (SbNHX1, uidA and hptII) specific primers. The single gene integration event and overexpression of the gene were confirmed by Southern hybridization and competitive RT-PCR, respectively. Transgenic lines L3 and L13 showed high expression of the SbNHX1 gene compared to L6 whereas moderate expression was detected in L5 and L10 transgenic lines. Transgenic lines (L3, L5, L10 and L13), overexpressing the SbNHX1 gene, showed higher photosynthetic pigments (chlorophyll a, b and carotenoid), and lower electrolytic leakage, lipid peroxidation (MDA content) and proline content as compared to wild type plants under salinity stress. Though transgenic lines were also affected by salinity stress but performed better compared to WT plants. The ectopic expression of the SbNHX1 gene confirmed enhanced salinity stress tolerance in cumin as compared to wild type plants under stress condition. The present study is the first report of engineering salt tolerance in cumin, so far and the plant may be utilized for the cultivation in saline areas.
机译:孜然是一种一年生的,草本的,药用的,芳香的,香料的糖类植物,具有多种用途,可作为食品和调味剂以及治疗剂。首次使用小茴香种子建立了一种高效,耗时少,农杆菌介导,不依赖组织培养的植物遗传转化方法。使用植物转化法优化的方法,将孜然转化自极端盐生植物盐枝芥的SbNHX1基因。 SbNHX1基因编码液泡Na + / H + 反向转运蛋白,并参与将过量的Na + 离子划入液泡并维持液泡的状态。离子稳态利用基因(SbNHX1,uidA和hptII)特异性引物通过PCR确认了转基因孜然植物。通过Southern杂交和竞争RT-PCR分别证实了单基因整合事件和基因的过表达。与L6相比,转基因品系L3和L13显示SbNHX1基因的高表达,而在L5和L10转基因品系中检测到中等表达。与野生型植物相比,过表达SbNHX1基因的转基因品系(L3,L5,L10和L13)显示出更高的光合色素(叶绿素a,b和类胡萝卜素),并且电解泄漏,脂质过氧化(MDA含量)和脯氨酸含量较低。在盐度压力下。尽管转基因品系也受盐胁迫的影响,但与野生型植物相比表现更好。与野生植物在胁迫条件下相比,SbNHX1基因的异位表达证实了孜然盐分胁迫耐受性增强。本研究是关于孜然的工程耐盐性的第一份报告,到目前为止,该植物可用于盐碱地区的栽培。

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