首页> 外文期刊>The New Phytologist >Suppression of a single BAHD gene in Setaria viridis causes large, stable decreases in cell wall feruloylation and increases biomass digestibility
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Suppression of a single BAHD gene in Setaria viridis causes large, stable decreases in cell wall feruloylation and increases biomass digestibility

机译:抑制Setaria Viridis中的单一BAHD基因导致细胞壁过滤剂的大,稳定降低,并增加生物质消化率

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Feruloylation of arabinoxylan (AX) in grass cell walls is a key determinant of recalcitrance to enzyme attack, making it a target for improvement of grass crops, and of interest in grass evolution. Definitive evidence on the genes responsible is lacking so we studied a candidate gene that we identified within the BAHD acyl-CoA transferase family. We used RNA interference (RNAi) silencing of orthologs in the model grasses Setaria viridis (SvBAHD01) and Brachypodium distachyon (BdBAHD01) and determined effects on AX feruloylation. Silencing of SvBAHD01 in Setaria resulted in a c. 60% decrease in AX feruloylation in stems consistently across four generations. Silencing of BdBAHD01 in Brachypodium stems decreased feruloylation much less, possibly due to higher expression of functionally redundant genes. Setaria SvBAHD01RNAi plants showed: no decrease in total lignin, approximately doubled arabinose acylated by p-coumarate, changes in two-dimensional NMR spectra of unfractionated cell walls consistent with biochemical estimates, no effect on total biomass production and an increase in biomass saccharification efficiency of 40-60%. We provide the first strong evidence for a key role of the BAHD01 gene in AX feruloylation and demonstrate that it is a promising target for improvement of grass crops for biofuel, biorefining and animal nutrition applications.
机译:阿拉伯氧基(Ax)在草细胞壁中的前亚甲酰胺是酶攻击克克克氏血管的关键决定因素,使其成为改善草作物的目标,以及在草地演化中感兴趣的目标。对负责的基因的明确证据缺乏,因此我们研究了我们在BAHD酰基-CoA转移酶系列内鉴定的候选基因。我们使用了模型草跖(SVBAHD01)和BroChypodium distachyon(BDBAHD01)中的orthologs的RNA干扰(RNAi)沉默,并确定了对斧头的效果。 Sutaria的SVBAHD01沉默导致C.四代人始终如一的茎酮酮的斧头过低60%。脱叶薄膜茎的BDBAHD01的沉默减少了不太可能导致功能冗余基因的表达更高。 Setaria SVBAHD01RNAI植物显示:总木质素中没有减少,对P-作用酰化的阿拉伯糖大约一倍加倍,未分叉的细胞壁的二维NMR光谱与生化估计一致,对总生物质产生的影响和生物量糖化效率的影响40-60%。我们提供了第一种强大的证据表明BAHD01基因在轴Feruuloxation中的关键作用,并证明它是改善生物燃料,生物化和动物营养应用的草作的有希望的目标。

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