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转基因玉米(Zea mays)中糖苷水解酶家族 10 木聚糖酶的全球和谷物特异性积累。

Global and grain-specific accumulation of glycoside hydrolase family 10 xylanases in transgenic maize (Zea mays).

机构信息

Agrivida, Inc., Medford, MA, USA.

出版信息

Plant Biotechnol J. 2011 Dec;9(9):1100-8. doi: 10.1111/j.1467-7652.2011.00632.x. Epub 2011 Jun 20.

DOI:10.1111/j.1467-7652.2011.00632.x
PMID:21689368
Abstract

In planta expression of cell wall degrading enzymes is a promising approach for developing optimized biomass feedstocks that enable low-cost cellulosic biofuels production. Transgenic plants could serve as either an enzyme source for the hydrolysis of pretreated biomass or as the primary biomass feedstock in an autohydrolysis process. In this study, two xylanase genes, Bacillus sp. NG-27 bsx and Clostridium stercorarium xynB, were expressed in maize (Zea mays) under the control of two different promoters. Severe phenotypic effects were associated with xylanase accumulation in maize, including stunted plants and sterile grains. Global expression of these xylanases from the rice ubiquitin 3 promoter (rubi3) resulted in enzyme accumulation of approximately 0.01 mg enzyme per gram dry weight, or approximately 0.1% of total soluble protein (TSP). Grain-specific expression of these enzymes from the rice glutelin 4 promoter (GluB-4) resulted in higher-level accumulation of active enzyme, with BSX and XynB accumulating up to 4.0% TSP and 16.4% TSP, respectively, in shriveled grains from selected T0 plants. These results demonstrate the potential utility of the GluB-4 promoter for biotechnological applications. The phenotypic effects of xylanase expression in maize presented here demonstrate the difficulties of hemicellulase expression in an important crop for cellulosic biofuels production. Potential alternate approaches to achieve xylanase accumulation in planta without the accompanying negative phenotypes are discussed.

摘要

在植物体内表达细胞壁降解酶是开发优化生物质原料的一种很有前途的方法,这种方法可以实现低成本的纤维素生物燃料生产。转基因植物可以作为预处理生物质水解的酶源,也可以作为自水解过程中的主要生物质原料。在这项研究中,两种木聚糖酶基因,即芽孢杆菌 NG-27 bsx 和梭菌 xynB,在玉米(Zea mays)中受两种不同启动子的控制进行表达。木聚糖酶在玉米中的积累与严重的表型效应有关,包括植株矮小和不育籽粒。这些木聚糖酶来自水稻泛素 3 启动子(rubi3)的全球表达导致酶的积累约为每克干重 0.01 毫克酶,或约占总可溶性蛋白(TSP)的 0.1%。这些酶来自水稻谷蛋白 4 启动子(GluB-4)的籽粒特异性表达导致活性酶的更高水平积累,BSX 和 XynB 分别在来自选定 T0 植物的皱缩籽粒中积累了高达 4.0% TSP 和 16.4% TSP。这些结果表明 GluB-4 启动子在生物技术应用中的潜在用途。本文中木聚糖酶在玉米中的表达所表现出的表型效应表明,在用于生产纤维素生物燃料的重要作物中表达半纤维素酶存在困难。本文还讨论了在不伴随负表型的情况下在植物体内实现木聚糖酶积累的潜在替代方法。

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