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RNAi suppression of xylan synthase genes in wheat starchy endosperm

机译:小麦淀粉胚乳中Xylan合酶基因的RNAi抑制

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The xylan backbone of arabinoxylan (AX), the major cell wall polysaccharide in the wheat starchy endosperm, is synthesised by xylan synthase which is a complex of three subunits encoded by the GT43_1, GT43_2 and GT47_2 genes. RNAi knock-down of either GT43_1 or all three genes (triple lines) resulted in decreased AX measured by digestion with endoxylanase (to 33 and 34.9% of the controls) and by monosaccharide analysis (to 45.9% and 47.4% of the controls) with greater effects on the amount of water-extractable AX (to 20.6 and 19.9% of the controls). Both sets of RNAi lines also had greater decreases in the amounts of substituted oligosaccharides released by digestion of AX with endoxylanase than in fragments derived only from the xylan backbone. Although the GT43_1 and triple lines had similar effects on AX they did differ in their contents of soluble sugars (increased in triple only) and on grain size (decreased in triple only). Both sets of transgenic lines had decreased grain hardness, indicating effects on cell wall mechanics. These results, and previously published studies of RNAi suppression of GT43_2 and GT47_2 and of a triple mutant of GT43_2, are consistent with the model of xylan synthase comprising three subunits one of which (GT47_2) is responsible for catalysis with the other two subunits being required for correct functioning but indicate that separate xylan synthase complexes may be responsible for the synthesis of populations of AX which differ in their structure and solubility.
机译:阿拉伯氧基(Ax)的木质骨架,小麦淀粉胚乳中的主要细胞壁多糖,由Xylan合成酶合成,这是由GT43_1,GT43_2和GT47_2基因编码的三个亚基的复合物。 GT43_1或所有三种基因的RNAI敲低导致通过用内唑烷酶(对照的33和34.9%)和单糖分析来测量的降低的斧头(对照的45.9%和47.4%)对水萃取的斧子量的更大影响(对照的20.6和19.9%)。通过在仅来自木聚糖骨架的碎片中,通过消化斧头释放的取代的寡糖的量也大于释放的取代的寡糖的量也大于。虽然GT43_1和三线对斧头的效果类似,但它们的可溶性糖的含量不同(仅限三倍增加)和晶粒尺寸(仅限三倍降低)。两组转基因系具有降低的晶粒硬度,表明对细胞壁力学的影响。这些结果和先前公布的GT43_2和GT47_2的RNAi抑制和GT43_2的三重突变体的研究与包含三个亚基(GT47_2)的Xylan合成酶的模型一致,其中(GT47_2)负责与所需的其他两个子单元催化为了正确起作用,但表明单独的木聚糖合酶配合物可以负责合成其结构和溶解度的斧头的堆积。

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