首页> 美国卫生研究院文献>Biotechnology for Biofuels >AtCesA8-driven OsSUS3 expression leads to largely enhanced biomass saccharification and lodging resistance by distinctively altering lignocellulose features in rice
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AtCesA8-driven OsSUS3 expression leads to largely enhanced biomass saccharification and lodging resistance by distinctively altering lignocellulose features in rice

机译:AtCesA8驱动的OsSUS3表达通过显着改变水稻中的木质纤维素特征导致生物量糖化和抗倒伏性大大增强

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摘要

BackgroundBiomass recalcitrance and plant lodging are two complex traits that tightly associate with plant cell wall structure and features. Although genetic modification of plant cell walls can potentially reduce recalcitrance for enhancing biomass saccharification, it remains a challenge to maintain a normal growth with enhanced biomass yield and lodging resistance in transgenic plants. Sucrose synthase (SUS) is a key enzyme to regulate carbon partitioning by providing UDP-glucose as substrate for cellulose and other polysaccharide biosynthesis. Although SUS transgenic plants have reportedly exhibited improvement on the cellulose and starch based traits, little is yet reported about SUS impacts on both biomass saccharification and lodging resistance. In this study, we selected the transgenic rice plants that expressed OsSUS3 genes when driven by the AtCesA8 promoter specific for promoting secondary cell wall cellulose synthesis in Arabidopsis. We examined biomass saccharification and lodging resistance in the transgenic plants and detected their cell wall structures and wall polymer features.
机译:背景生物量顽固性和植物倒伏是与植物细胞壁结构和特征紧密相关的两个复杂性状。尽管对植物细胞壁进行遗传修饰可以潜在地降低顽固性,以增强生物质的糖化作用,但在转基因植物中保持正常的生长并提高生物质的产量和抗倒伏性仍然是一个挑战。蔗糖合酶(SUS)是通过提供UDP-葡萄糖作为纤维素和其他多糖生物合成的底物来调节碳分配的关键酶。尽管据报道SUS转基因植物对纤维素和淀粉基性状表现出了改善,但是关于SUS对生物质糖化和抗倒伏性的影响的报道很少。在这项研究中,我们选择了由AtCesA8启动子驱动时表达OsSUS3基因的转基因水稻植株,该启动子对拟南芥中的次级细胞壁纤维素合成具有特异性。我们检查了转基因植物中的生物质糖化和抗倒伏性,并检测了它们的细胞壁结构和壁聚合物特征。

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