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Knockdown of a laccase in Populus deltoides confers altered cell wall chemistry and increased sugar release 总被引:1,自引:0,他引:1 下载免费PDF全文
Anthony C. Bryan Sara Jawdy Lee Gunter Erica Gjersing Robert Sykes Maud A. W. Hinchee Kimberly A. Winkeler Cassandra M. Collins Nancy Engle Timothy J. Tschaplinski Xiaohan Yang Gerald A. Tuskan Wellington Muchero Jin‐Gui Chen 《Plant biotechnology journal》2016,14(10):2010-2020
Plant laccases are thought to function in the oxidation of monolignols which leads to higher order lignin formation. Only a hand‐full of laccases in plants have been functionally evaluated, and as such little is known about the breadth of their impact on cell wall chemistry or structure. Here, we describe a previously uncharacterized laccase from Populus, encoded by locus Potri.008G064000, whose reduced expression resulted in transgenic Populus trees with changes in syringyl/guaiacyl ratios as well as altered sugar release phenotypes. These phenotypes are consistent with plant biomass exhibiting reduced recalcitrance. Interestingly, the transgene effect on recalcitrance is dependent on a mild pretreatment prior to chemical extraction of sugars. Metabolite profiling suggests the transgene modulates phenolics that are associated with the cell wall structure. We propose that this particular laccase has a range of functions related to oxidation of phenolics and conjugation of flavonoids that interact with lignin in the cell wall. 相似文献
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The effects of inoculation with two metal-resistant and plant growth-promoting endophytic bacteria (Burkholderia sp. GL12 and Bacillus megaterium JL35) were evaluated on the plant growth and Cu uptake in their host Elsholtzia splendens and non-host Brassica napus plants grown in natural Cu-contaminated soil. The two strains showed a high level of ACC deaminase activities. In pot experiments, inoculation with strain GL12 significantly increased root and above-ground tissue dry weights of both plants, consequently increasing the total Cu uptake of E. splendens and Brassica napus by 132% and 48.2% respectively. Inoculation with strain JL35 was found to significantly increase not only the biomass of B. napus, consequently increasing the total Cu uptake of B. napus by 31.3%, but Cu concentration of E. splendens for above-ground tissues by 318% and roots by 69.7%, consequently increasing the total Cu uptake of E. splendens by 223%. The two strains could colonize the rhizosphere soils and root interiors of both plants. Notably, strain JL35 could colonize the shoot tissues and significantly increase the translocation factors and bioaccumulation factors of E. splendens. These results suggested that Burkholderia sp. GL12 and B. megaterium JL35 were valuable bacterial resource which had the potential in improving the efficiency of Cu phytoextraction by E. splendens and B. napus in a natural Cu-contaminated soil. 相似文献
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β-N-草酰-L-α,β-二氨基丙酸(β-N-oxalyl-L-α,β-diaminopropionic acid,β-ODAP)是山黧豆中的一种重要非蛋白氨基酸,与三七中的三七素为同一种次生代谢物,具有止血、兴奋神经、抗菌等多种生物活性。自20世纪60年代和80年代在山黧豆等豆类和三七等植物中分别发现β-ODAP以来,科研工作者建立了多种检测方法。该文对近年来国内外有关检测β-ODAP的传统分析法、高效液相色谱法(HPLC)、色谱-质谱法(GC/LC-MS)、毛细管电泳法及酶学分析法等的基本原理及应用研究进展进行了综述,这些检测方法各有所长,具体选择依实验条件和实验目的而定。其中,柱前衍生化高效液相色谱法是目前应用最广泛的方法,高成本同位素内标的LC-MS则被誉为“金标准”。但特异、快速和低成本的检测方法一直是人们的追求目标,因而进一步完善酶传感器技术是β-ODAP检测领域在将来的主要研究方向。 相似文献
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Yuan JS Yang X Lai J Lin H Cheng ZM Nonogaki H Chen F 《Functional & integrative genomics》2007,7(1):1-16
Mannans are widespread hemicellulosic polysaccharides in plant cell walls. Hydrolysis of the internal β-1,4-d-mannopyranosyl linkage in the backbone of mannans is catalyzed by endo-β-mannanase. Plant endo-β-mannanase has been well studied for its function in seed germination. Its involvement in other plant biological processes, however, remains poorly characterized or elusive. The completed genome sequences of Arabidopsis (Arabidopsis thaliana), rice (Oryza sativa), and poplar (Populus trichocarpa) provide an opportunity to conduct comparative genomic analysis of endo-β-mannanase genes in these three species. In silico sequence analysis led to the identification of eight, nine and 11 endo-β-mannanase genes in the genomes of Arabidopsis, rice, and poplar, respectively. Sequence comparisons revealed the conserved amino acids and motifs that are critical for the active site of endo-β-mannanases. Intron/exon structure analysis in conjunction with phylogenetic analysis implied that both intron gain and intron loss has played roles in the evolution of endo-β-mannanase genes. The phylogenetic analysis that included the endo-β-mannanases from plants and other organisms implied that plant endo-β-mannanases have an ancient evolutionary origin. Comprehensive expression analysis of all Arabidopsis and rice endo-β-mannanase genes showed divergent expression patterns of individual genes, suggesting that the enzymes encoded by these genes, while carrying out the same biochemical reaction, are involved in diverse biological processes. 相似文献
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Wang Guanglu Wang Mengyuan Liu Lanxi Hui Xiaohan Wang Bingyang Ma Ke Yang Xuepeng 《Biotechnology letters》2022,44(9):1051-1061
Biotechnology Letters - Glycerol kinase is the key enzyme in glycerol metabolism, and its catalytic efficiency has an important effect on glycerol utilization. Based on an analysis of the glycerol... 相似文献
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随着生物化工技术的不断发展成熟,通过改造微生物已可以实现二氧化碳、甲烷等温室气体的固定、转化和利用,而电子传递及能量供给对微生物固碳效率起着决定性的作用。本文首先分析了好氧性嗜甲烷菌、化能自养微生物等天然微生物细胞内外的直接、间接电子传递系统。在此基础上,围绕微生物固碳细胞工厂的构建,进一步介绍了基于光能、电能的人工电子供给策略及其对固碳过程中代谢通量、合成路径和供能效率的影响。最后针对微生物固碳的关键共性技术难点,简要展望了可行性的解决方案及相关应用前景。 相似文献
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Longbiao Guo Jie Qiu Zujing Han Zihong Ye Chao Chen Chuanjun Liu Xiufang Xin Chu‐Yu Ye Ying‐Ying Wang Hongqing Xie Yu Wang Jiandong Bao She Tang Jie Xu Yijie Gui Fei Fu Weidi Wang Xingchen Zhang Qianhua Zhu Xuanmin Guang Chongzhi Wang Haifeng Cui Daguang Cai Song Ge Gerald A. Tuskan Xiaohan Yang Qian Qian Sheng Yang He Jun Wang Xue‐Ping Zhou Longjiang Fan 《The Plant journal : for cell and molecular biology》2015,83(4):600-609
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Mengyuan Li Yu Yan Xinxin Zhang Yidan Zhang Xiaohan Xu Lei Zhang Liangliang Lu Jie Wang Yazhuo Zhang Qiaoling Song Chenyang Zhao 《Journal of cellular and molecular medicine》2021,25(13):6333
JAK/STAT and NFκB signalling pathways play essential roles in regulating inflammatory responses, which are important pathogenic factors of various serious immune‐related diseases, and function individually or synergistically. To find prodrugs that can treat inflammation, we performed a preliminary high‐throughput screening of 18 840 small molecular compounds and identified scaffold compound L971 which significantly inhibited JAK/STAT and NFκB driven luciferase activities. L971 could inhibit the constitutive and stimuli‐dependent activation of STAT1, STAT3 and IκBα and could significantly down‐regulate the proinflammatory gene expression in mouse peritoneal macrophages stimulated by LPS. Gene expression profiles upon L971 treatment were determined using high‐throughput RNA sequencing, and significant differentially up‐regulated and down‐regulated genes were identified by DESeq analysis. The bioinformatic studies confirmed the anti‐inflammatory effects of L971. Finally, L971 anti‐inflammatory character was further verified in LPS‐induced sepsis shock mouse model in vivo. Taken together, these data indicated that L971 could down‐regulate both JAK/STAT and NFκB signalling activities and has the potential to treat inflammatory diseases such as sepsis shock. 相似文献
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