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CAX1 Vacuolar Antiporter Overexpression in Potato Results in Calcium Deficiency in Leaves and Tubers by Sequestering Calcium as Calcium Oxalate

机译:螯合钙为草酸钙可导致马铃薯中CAX1气泡逆转运蛋白过表达导致叶片和块茎钙缺乏

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Recent studies show that overexpression of a short version of the cation exchanger 1 gene (sCAX1) can cause Casup2+/sup deficiency symptoms in tomato (Solanum lycopersicum L.). However, the Casup2+/sup deficiency in relation to the overexpression of this gene has not been investigated in potato (Solanum tuberosum L.). The objective of our study was to investigate the production of known Casup2+/sup deficiency symptoms in potato in relation to the overexpression of sCAX1. Plantlets of S. tuberosum cultivar ‘Atlantic’ overexpressing the sCAX1 gene were produced using Agrobacterium tumefaciens. Transgenic plants grown with normal amounts of Casup2+/sup under in vitro or greenhouse conditions showed known Casup2+/sup deficiency symptoms in potato plants such as shoot tips damage and leaf margin necrosis, as well as tuber internal defects (hollow heart). Growing the transgenic plants with higher amounts of Casup2+/sup in the media or soil nutrient solution mitigated these symptoms. These results support the notion that both shoot tip necrosis and hollow heart are associated with Casup2+/sup deficiency. There was abundance of calcium oxalate (CaCsub2/subOsub4/sub) crystals present only in the transgenic plants suggesting that these plants sequester Casup2+/sup in the form of CaCsub2/subOsub4/sub in the vacuoles of transgenic plants, reducing Casup2+/sup in the other pools. Since both shoot tip necrosis and hollow heart are known to be associated with poor cell wall health, our results suggest that CAX1 is a regulator of Casup2+/sup in the cell wall. In support of this concept, we found reduced cell wall biomass in the transgenic plants compared with the wild type.
机译:最近的研究表明,短版本的阳离子交换蛋白1基因(sCAX1)的过表达可以引起番茄(Solanum lycopersicum L.)Ca 2 + 缺乏症状。但是,尚未在马铃薯(Solanum tuberosum L.)中研究与该基因的过表达有关的Ca 2 + 缺乏。我们研究的目的是调查与sCAX1过表达有关的马铃薯中已知的Ca 2 + 症状的产生。使用根癌土壤杆菌生产过表达sCAX1基因的马铃薯S. tuberosum'Atlantic'。在体外或温室条件下以正常量的Ca 2 + 生长的转基因植物在马铃薯植株中表现出已知的Ca 2 + 缺乏症状,例如茎尖损伤和叶缘坏死,以及块茎内部缺陷(空心)。在培养基或土壤营养液中种植含有较高Ca 2 + 的转基因植物可以缓解这些症状。这些结果支持了茎尖坏死和空心心脏均与Ca 2 + 缺乏有关的观点。仅在转基因植物中存在大量草酸钙(CaC 2 O 4 )晶体,这表明这些植物在Ca2 +中螯合了Ca 2 + 。 CaC 2 O 4 的形式在转基因植物的液泡中,减少了其他池中的Ca 2 + 。由于已知梢梢坏死和空心心脏均与细胞壁健康不良有关,因此我们的结果表明,CAX1是细胞壁中Ca 2 + 的调节剂。为了支持这一概念,我们发现与野生型相比,转基因植物的细胞壁生物量减少了。

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