Cell wall polysaccharide distribution in Miscanthus lutarioriparius stem using immuno-detection

文献类型: 外文期刊

第一作者: Cao, Yingping

作者: Cao, Yingping;Li, Junling;Yu, Li;Chai, Guohua;He, Guo;Hu, Ruibo;Qi, Guang;Fu, Chunxiang;Zhou, Gongke;Kong, Yingzhen

作者机构:

关键词: Biofuel;Cell wall;Glycan-directed probes;In situ immunofluorescence assay;M. lutarioriparius

期刊名称:PLANT CELL REPORTS ( 影响因子:4.57; 五年影响因子:4.463 )

ISSN: 0721-7714

年卷期: 2014 年 33 卷 4 期

页码:

收录情况: SCI

摘要: Cell wall polysaccharides' occurrences in two internodes of different development stages in M. lutarioriparius stem were analyzed and three major differences between them were identified by cell wall polysaccharide probes. Deposition and modification of cell wall polysaccharides during stem development affect biomass yield of the Miscanthus energy crop. The distribution patterns of cell wall polysaccharides in the 2nd and the 11th internodes of M. lutarioriparius stem were studied using in situ immunofluorescence assay. Crystalline cellulose and xylan were present in most of the stem tissues except phloem, where xyloglucan was the major composition of hemicellulose. The distribution of pectin polysaccharides varied in stem tissues, particularly in vascular bundle elements. Xylogalacturonan, feruloylated-1,4-beta-d-galactan and (1,3)(1,4)-beta-glucans, however, were insufficient for antibodies binding in both internodes. Furthermore, the distribution of cell wall polysaccharides was differentiated in the two internodes of M. lutarioriparius. The significant differences in the pattern of occurrence of long 1,5-alpha-l-arabinan chain, homogalacturonan and fucosylated xyloglucans epitope were detected between the two internodes. In addition, the relationships between probable functions of polysaccharides and their distribution patterns in M. lutarioriparius stem cell wall were discussed, which would be helpful to understand the growth characteristics of Miscanthus and identify potential targets for either modification or degradation.

分类号:

  • 相关文献

[1]Biofuel from Microalgae: Current Status, Opportunity and Challenge. Wang, Hui,Liu Yuhuan,Ruan, Roger,Ruan, Roger,Liu, Guangxian. 2014

[2]Oxidation of a non-phenolic lignin model compound by two Irpex lacteus manganese peroxidases: evidence for implication of carboxylate and radicals. Qin, Xing,Zhang, Xiaoyu,Qin, Xing,Sun, Xianhua,Huang, Huoqing,Bai, Yingguo,Wang, Yuan,Luo, Huiying,Yao, Bin,Su, Xiaoyun. 2017

[3]Perfect recycle and mechanistic role of hydrogen sulfate ionic liquids as additive in ethanol for efficient conversion of carbohydrates into 5-ethoxymethylfurfural. Guo, Haixin,Aida, Taku M.,Smith, Richard Lee, Jr.,Qi, Xinhua,Duereh, Alif,Hiraga, Yuya,Smith, Richard Lee, Jr..

[4]Co-downregulation of the hydroxycinnamoyl-CoA:shikimate hydroxycinnamoyl transferase and coumarate 3-hydroxylase significantly increases cellulose content in transgenic alfalfa (Medicago sativa L.). Tong, Zongyong,Li, Heng,Zhang, Rongxue,Ma, Lei,Dong, Jiangli,Wang, Tao,Tong, Zongyong,Wang, Tao.

[5]Efficient conversion of fructose into 5-ethoxymethylfurfural with hydrogen sulfate ionic liquids as co-solvent and catalyst. Guo, Haixin,Aida, Taku M.,Smith, Richard Lee, Jr.,Qi, Xinhua,Hiraga, Yuya,Smith, Richard Lee, Jr..

[6]Zymomonas mobilis: a novel platform for future biorefineries. He, Ming Xiong,Wu, Bo,Qin, Han,Tan, Fu Rong,Wang, Jing Li,Shui, Zong Xia,Dai, Li Chun,Zhu, Qi Li,Pan, Ke,Tang, Xiao Yu,Wang, Wen Guo,Hu, Qi Chun,He, Ming Xiong,Hu, Qi Chun,Ruan, Zhi Yong. 2014

[7]Estimation of un-used land potential for biofuels development in (the) People's Republic of China. Tian, Yishui,Zhao, Lixin,Meng, Haibo,Sun, Liying,Tian, Yishui,Yan, Jinyue,Yan, Jinyue.

[8]Metabolic engineering of 2-phenylethanol pathway producing fragrance chemical and reducing lignin in Arabidopsis. Qi, Guang,Wang, Dian,Yu, Li,Tang, Xianfeng,Chai, Guohua,He, Guo,Ma, Wenxuan,Li, Shengying,Fu, Chunxiang,Zhou, Gongke,Qi, Guang,Wang, Dian,Yu, Li,Tang, Xianfeng,Chai, Guohua,He, Guo,Ma, Wenxuan,Li, Shengying,Fu, Chunxiang,Zhou, Gongke,Kong, Yingzhen,Wang, Dian,Tang, Xianfeng.

[9]Genetic diversity in tetraploid switchgrass revealed by AFLP marker polymorphisms. Todd, J.,Wu, Y. Q.,Wang, Z.,Samuels, T.,Wang, Z.. 2011

[10]Overexpression of OsPIL15, a phytochromeinteracting factor- like protein gene, represses etiolated seedling growth in rice. Zhou, Jinjun,Liu, Qianqian,Wang, Yingying,Zhang, Shiyong,Cheng, Huimin,Yan, Lihua,Li, Li,Xie, Xianzhi,Zhou, Jinjun,Wang, Yingying,Zhang, Shiyong,Xie, Xianzhi,Liu, Qianqian,Xie, Xianzhi,Zhang, Fang,Chen, Fan. 2014

[11]A Cotton BURP Domain Protein Interacts With -Expansin and Their Co-Expression Promotes Plant Growth and Fruit Production. Bing Xu,Jin-Ying Gou,Fu-Guang Li,Xiao-Xia Shangguan,Bo Zhao,Chang-Qing Yang,LingJian Wang,Sheng Yuan,Chang-Jun Liu,Xiao-Ya Chen. 2013

[12]THE EFFECTS OF EXTRACELLULAR CALMODULIN ON CELL-WALL REGENERATION OF PROTOPLASTS AND CELL-DIVISION. SUN, DY,BIAN, YQ,ZHAO, BH,ZHAO, LY,YU, XM,SHENGJUN, D. 1995

[13]RNA-Seq-Based Transcriptome Profiling of Early Nitrogen Deficiency Response in Cucumber Seedlings Provides New Insight into the Putative Nitrogen Regulatory Network. Zhao, Wenchao,Yang, Xueyong,Yu, Hongjun,Jiang, Weijie,Sun, Na,Liu, Xiaoran,Liu, Xiaolin,Zhang, Xiaomeng,Wang, Yan,Gu, Xingfang,Zhao, Wenchao.

[14]High-level hemicellulosic arabinose predominately affects lignocellulose crystallinity for genetically enhancing both plant lodging resistance and biomass enzymatic digestibility in rice mutants. Li, Fengcheng,Zhang, Mingliang,Guo, Kai,Hu, Zhen,Zhang, Ran,Feng, Yongqing,Yi, Xiaoyan,Zou, Weihua,Wang, Lingqiang,Wu, Changyin,Xie, Guosheng,Peng, Liangcai,Li, Fengcheng,Zhang, Mingliang,Guo, Kai,Hu, Zhen,Zhang, Ran,Feng, Yongqing,Yi, Xiaoyan,Zou, Weihua,Wang, Lingqiang,Wu, Changyin,Xie, Guosheng,Peng, Liangcai,Li, Fengcheng,Zhang, Mingliang,Guo, Kai,Hu, Zhen,Zhang, Ran,Feng, Yongqing,Yi, Xiaoyan,Zou, Weihua,Wang, Lingqiang,Xie, Guosheng,Peng, Liangcai,Li, Fengcheng,Zhang, Mingliang,Hu, Zhen,Zhang, Ran,Feng, Yongqing,Yi, Xiaoyan,Zou, Weihua,Wang, Lingqiang,Xie, Guosheng,Peng, Liangcai,Guo, Kai,Wu, Changyin,Tian, Jinshan,Lu, Tiegang.

[15]Expansins: roles in plant growth and potential applications in crop improvement. Marowa, Prince,Ding, Anming,Kong, Yingzhen.

[16]Analysis of 2,297 expressed sequence tags (ESTs) from a cDNA library of flax (Linum ustitatissimum L.) bark tissue. Li, Xiang,Chen, Xin-Bo,Long, Song-Hua,Deng, Xin,Wang, Yu-Fu,Qiao, Rui-Qing,Qiu, Cai-Sheng,Guo, Yuan,Hao, Dong-Mei,Jia, Wan-Qi.

[17]Novel roles of hydrogen peroxide (H2O2) in regulating pectin synthesis and demethylesterification in the cell wall of rice (Oryza sativa) root tips. Xiong, Jie,Yang, Yongjie,Fu, Guanfu,Tao, Longxing,Xiong, Jie.

[18]Effects of calcium treatment and low temperature storage on cell wall polysaccharide nanostructures and quality of postharvest apricot (Prunus armeniaca). Liu, Hui,Jiao, Zhonggao,Chen, Fusheng,Lai, Shaojuan,Lai, Shaojuan,Tao, Junrui,Yang, Hongshun,Tao, Junrui,Yang, Hongshun.

[19]Lignification of Sheepgrass Internodes at Different Developmental Stages and Associated Alteration of Cell Wall Saccharification Efficiency. Wang, Jianli,Shen, Zhongbao,Sun, Dequan,Zhang, Hailing,Wang, Jianli,Ma, Lichao,Bai, Zetao,Zhang, Hailing,Cao, Yingping,Bao, Yan,Fu, Chunxiang,Ma, Lichao,Bai, Zetao,Cao, Yingping,Bao, Yan,Fu, Chunxiang,Zhong, Peng. 2017

[20]Copper accumulation and tolerance in Chrysanthemum coronarium L. and Sorghum sudanense L.. Wei, Lan,Shen, Zhenguo,Wei, Lan,Luo, Chunling,Li, Xiangdong.

作者其他论文 更多>>