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首页> 外文期刊>Plant Biotechnology Journal >Effect of suppression of arabinoxylan synthetic genes in wheat endosperm on chain length of arabinoxylan and extract viscosity
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Effect of suppression of arabinoxylan synthetic genes in wheat endosperm on chain length of arabinoxylan and extract viscosity

机译:小麦胚乳中阿拉伯木聚糖合成基因的抑制对阿拉伯木聚糖链长和提取黏度的影响

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摘要

Arabinoxylan (AX) is the dominant component within wheat ( Triticum aestivum L.) endosperm cell walls, accounting for 70% of the polysaccharide. The viscosity of aqueous extracts from wheat grain is a key trait influencing the processing for various end uses, and this is largely determined by the properties of endosperm AX. We have previously shown dramatic effects on endosperm AX in transgenic wheat by down?¢????regulating either TaGT43_2 or TaGT47_2 genes (orthologues to IRX9 and IRX10 in Arabidopsis, respectively) implicated in AX chain extension and the TaXAT1 gene responsible for monosubstitution by 3?¢????linked arabinose. Here, we use these transgenic lines to investigate the relationship between amounts of AX in soluble and insoluble fractions, the chain?¢????length distribution of these measured by intrinsic viscosity and the overall effect on extract viscosity. In transgenic lines expressing either the TaGT43_2 or TaGT47_2 RNAi transgenes, the intrinsic viscosities of water?¢????extractable (WE?¢????AX) and of a water?¢????insoluble alkaline?¢????extracted fraction (AE?¢????AX) were decreased by between 10% and 50% compared to control lines. In TaXAT1 RNAi lines, there was a 15% decrease in intrinsic viscosity of WE?¢????AX but no consistent effect on that of AE?¢????AX. All transgenic lines showed decreases in extract viscosity with larger effects in TaGT43_2 and TaGT47_2 RNAi lines (by up to sixfold) than in TaXAT1 RNAi lines (by twofold). These effects were explained by the decreases in amount and chain length of WE?¢????AX, with decreases in amount having the greater influence. Extract viscosity from wheat grain can therefore be greatly decreased by suppression of single gene targets.
机译:阿拉伯木聚糖(AX)是小麦(Triticum aestivum L.)胚乳细胞壁中的主要成分,占多糖的70%。小麦籽粒水提取物的粘度是影响各种最终用途加工的关键特性,而这在很大程度上取决于胚乳AX的特性。我们以前通过下调TaGT43_2或TaGT47_2基因(分别与拟南芥属中IRX9和IRX10的同源基因)下调AX延伸和负责单取代的TaXAT1基因,对转基因小麦中的胚乳AX产生了显着影响。 3-连接阿拉伯糖。在这里,我们使用这些转基因品系研究可溶和不可溶级分中AX的量,通过固有粘度测量的这些链的链长,长度和对提取物粘度的总体影响之间的关系。在表达TaGT43_2或TaGT47_2 RNAi转基因的转基因品系中,水的固有粘度是可萃取的(WE AX AX)和水是不可溶的碱性碱。与对照品系相比,Δε提取率(AEΔAXAX)降低了10%至5​​0%。在TaXAT1 RNAi品系中,WE AX AX的特性粘度降低了15%,但对AE AX AX的特性粘度没有一致的影响。所有转基因品系均显示出提取物粘度降低,在TaGT43_2和TaGT47_2 RNAi品系中(最多提高了两倍)比在TaXAT1 RNAi品系中提高了两倍(最大)。这些效应可以通过减少WE 3 -AX AX的数量和链长来解释,数量的减少具有更大的影响。因此,可以通过抑制单个基因靶来大大降低小麦籽粒的提取物粘度。

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