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至今,GenScript的服務及產品已被Cell, Nature, Science, PNAS等1300多家生物醫藥類雜志引用近萬次,處于行業領先水平。NIH、哈佛、耶魯、斯坦福、普林斯頓、杜克大學等約400家全球著名機構使用GenScript的基因合成、多肽服務、抗體服務和蛋白服務等成功地發表科研成果,再次證明GenScript 有能力幫助業內科學家Make research easy.

Targeted metatranscriptomics of compost-derived consortia reveals a GH11 exerting an unusual exo-1,4-β-xylanase activity.

Biotechnol Biofuels. 2017; 
Mello BL, Alessi AM, Ria?o-Pachón DM,, deAzevedo ER, Guimar?es FEG, Espirito Santo MC, McQueen-Mason S, Bruce NC, Polikarpov I.
Products/Services Used Details Operation
Codon Optimization com/CodonOpt) and synthesized (GenScript, Jiangsu, China) after the predicted signal peptide and transmem- brane helix was removed. Get A Quote

摘要

Using globally abundant crop residues as a carbon source for energy generation and renewable chemicals production stand out as a promising solution to reduce current dependency on fossil fuels. In nature, such as in compost habitats, microbial communities efficiently degrade the available plant biomass using a diverse set of synergistic enzymes. However, deconstruction of lignocellulose remains a challenge for industry due to recalcitrant nature of the substrate and the inefficiency of the enzyme systems available, making the economic production of lignocellulosic biofuels difficult. Metatranscriptomic studies of microbial communities can unveil the metabolic functions employed by lignocellulolytic consortia an... More

關鍵詞

Bioethanol; Compost; Lignocellulose; Metatranscriptomics; Microbial community; Xylanase
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