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The Sucrose Transporter StSUT1 Localizes to Sieve Elements in Potato Tuber Phloem and Influences Tuber Physiology and Development

机译:蔗糖转运蛋白StSUT1定位于马铃薯​​块茎韧皮部中的筛分元素并影响块茎生理和发育

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摘要

The sucrose (Suc) H+-cotransporter StSUT1 from potato (Solanum tuberosum), which is essential for long-distance transport of Suc and assumed to play a role in phloem loading in mature leaves, was found to be expressed in sink tubers. To answer the question of whether SUT1 serves a function in phloem unloading in tubers, the promoter was fused to gusA and expression was analyzed in transgenic potato. SUT1 expression was unexpectedly detected not in tuber parenchyma but in the phloem of sink tubers. Immunolocalization demonstrated that StSUT1 protein was present only in sieve elements of sink tubers, cells normally involved in export of Suc from the phloem to supply developing tubers, raising the question of the role of SUT1 in tubers. SUT1 expression was inhibited by antisense in transgenic potato plants using a class I patatin promoter B33, which is primarily expressed in the phloem of developing tubers. Reduced SUT1 expression in tubers did not affect aboveground organs but led to reduced fresh weight accumulation during early stages of tuber development, indicating that in this phase SUT1 plays an important role for sugar transport. Changes in Suc- and starch-modifying enzyme activities and metabolite profiles are consistent with the developmental switch in unloading mechanisms. Altogether, the findings may suggest a role of SUT1 in retrieval of Suc from the apoplasm, thereby regulating the osmotic potential in the extracellular space, or a direct role in phloem unloading acting as a phloem exporter transferring Suc from the sieve elements into the apoplasm.
机译:发现马铃薯(Solanum tuberosum)的蔗糖(Suc)H + -cotransporter StSUT1是Suc的长距离运输所必需的,并且被认为在成熟叶片的韧皮部负载中起作用。用水槽块茎表示。为了回答SUT1是否在块茎韧皮部卸载中发挥作用,将启动子与gusA融合,并在转基因马铃薯中分析表达。意外地在块茎实质中而不是在块茎的韧皮部中检测到SUT1表达。免疫定位表明,StSUT1蛋白仅存在于块茎的筛分元件中,这些细胞通常参与Suc从韧皮部输出到供应中的块茎,从而提出了SUT1在块茎中的作用的问题。使用I类patatin启动子B33在转基因马铃薯植株中反义抑制SUT1的表达,该启动子主要在发育块茎的韧皮部表达。块茎中SUT1表达的减少不会影响地上器官,但会导致块茎发育早期的新鲜体重减少,这表明SUT1在此阶段对糖的运输起着重要作用。蔗糖和淀粉修饰酶活性和代谢产物谱的变化与卸荷机理的发展变化是一致的。总而言之,这些发现可能暗示了SUT1在从质体中检索Suc中的作用,从而调节细胞外空间中的渗透势,或者在韧皮部卸载中起直接作用,充当韧皮部输出者,将Suc从筛分元素转移到质体中。

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