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首页> 外文期刊>Plant Biotechnology Journal >Gluten quality of bread wheat is associated with activity of RabD GTPases
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Gluten quality of bread wheat is associated with activity of RabD GTPases

机译:面包小麦的面筋品质与RabD GTPases的活性有关

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In the developing endosperm of bread wheat ( Triticum aestivum ), seed storage proteins are produced on the rough endoplasmic reticulum (ER) and transported to protein bodies, specialized vacuoles for the storage of protein. The functionally important gluten proteins of wheat are transported by two distinct routes to the protein bodies where they are stored: vesicles that bud directly off the ER and transport through the Golgi. However, little is known about the processing of glutenin and gliadin proteins during these steps or the possible impact on their properties. In plants, the RabD GTPases mediate ER?¢????to?¢????Golgi vesicle transport. Available sequence information for Rab GTPases in Arabidopsis , rice, Brachypodium and bread wheat was compiled and compared to identify wheat RabD orthologs. Partial genetic sequences were assembled using the first draft of the Chinese Spring wheat genome. A suitable candidate gene from the RabD clade ( TaRabD2a ) was chosen for down?¢????regulation by RNA interference (RNAi), and an RNAi construct was used to transform wheat plants. All four available RabD genes were shown by qRT?¢????PCR to be down?¢????regulated in the transgenic developing endosperm. The transgenic grain was found to produce flour with significantly altered processing properties when measured by farinograph and extensograph. SE?¢????HPLC found that a smaller proportion of HMW?¢????GS and large proportion of LMW?¢????GS are incorporated into the glutenin macropolymer in the transgenic dough. Lower protein content but a similar protein profile on SDS?¢????PAGE was seen in the transgenic grain.
机译:在发展中的面包小麦胚乳(Triticum aestivum)中,种子贮藏蛋白在粗糙的内质网(ER)上产生,并运输到蛋白质体,专门的液泡中以贮藏蛋白质。小麦具有重要功能的面筋蛋白通过两种截然不同的途径转运至蛋白质体,并在其中进行存储:直接从内质网萌芽并通过高尔基体运输的囊泡。但是,关于这些步骤中谷蛋白和麦醇溶蛋白的加工过程及其对它们性质的可能影响知之甚少。在植物中,RabD GTPases介导ERβ高尔基囊泡运输。汇编并比较了拟南芥,水稻,短枝小麦和面包小麦中Rab GTPases的可用序列信息,并鉴定了小麦RabD直系同源物。部分遗传序列使用中国春小麦基因组的第一稿进行组装。从RabD进化枝(TaRabD2a)中选择合适的候选基因用于通过RNA干扰(RNAi)进行下调调控,并使用RNAi构建体转化小麦植株。通过qRTΔβPCR显示所有四个可用的RabD基因在转基因发育的胚乳中被降低。当通过粉质仪和延伸仪测量时,发现转基因谷物产生具有显着改变的加工性能的面粉。 SE-HPLC测定发现,在转基因面团中的谷蛋白大分子聚合物中掺入了较小比例的HMW GS GS和较大比例的LMW GS GS。在转基因谷物中观察到较低的蛋白质含量,但在SDS-ΔPAGE上具有相似的蛋白质谱。

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