中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Photosynthetic carbon and nitrogen metabolism and the relationship between their metabolites and lipid peroxidation in dwarf bamboo (Fargesia rufa Yi) during drought and subsequent recovery

文献类型:期刊论文

作者Liu, CG (Liu, Chenggang)[ 1,2 ] ; Wang, YJ (Wang, Yanjie)[ 1,2,3 ] ; Pan, KW (Pan, Kaiwen)[ 1,2 ] ; Jin, YQ (Jin, Yanqiang)[ 4 ] ; Liang, J (Liang, Jin)[ 1,2 ] ; Li, W (Li, Wei)[ 1,2 ] ; Zhang, L (Zhang, Lin)[ 1,2 ]
刊名TREES-STRUCTURE AND FUNCTION
出版日期2015
卷号29期号:6页码:1633-1647
中文摘要Differential regulations of C and N metabolism in dwarf bamboo improve the capacity of osmotic adjustment, and also their metabolites may play an important role for protection against membrane lipid peroxidation under drought, thus accelerating recovery after rewatering. 

Dwarf bamboo (Fargesia rufa Yi), is a staple food for the endangered giant panda, but little is known about the impact of drought on bamboo species and its recovery mechanism. This study investigated the response of carbon (C) and nitrogen (N) metabolism to drought and subsequent recovery, and the relationship of their metabolites with lipid peroxidation. Photochemistry was reversibly down-regulated after drought, but a longer recovery time is needed. The accelerated degradation of starch due to a rapid increase in amylase activity resulted in higher soluble sugar only in severe drought-stressed plants after 30 days of drought. Sucrose content was not affected by drought because of the relative increases in activities of invertase, sucrose synthase, and sucrose phosphate synthase. As nitrate concentration increased in parallel with nitrate reductase activity, ammonium (NH4 (+)) production was enhanced by drought. Also, activated glutamine synthetase/glutamate synthase cycle stimulated NH4 (+) assimilation, while hydrolysis of soluble proteins was accelerated, resulting in accumulation of amino acids. After rewatering, re-balancing of C metabolism has gradually begun, but a stronger N metabolism was still observed. The notable positive correlations between MDA and the contents of starch and proline after 15 days of drought as well as between MDA and the contents of soluble sugar, NSC and proline after 30 days of drought were displayed. We conclude that dwarf bamboo may not only differently regulate its C and N metabolism to improve the capacity of osmotic adjustment but also employ its different metabolites protect against membrane lipid peroxidation under different intensities and duration of drought, thus accelerating its recovery after rewatering.
公开日期2015-12-29
源URL[http://ir.xtbg.org.cn/handle/353005/9582]  
专题西双版纳热带植物园_2012年后新成立研究组
推荐引用方式
GB/T 7714
Liu, CG ,Wang, YJ ,Pan, KW ,et al. Photosynthetic carbon and nitrogen metabolism and the relationship between their metabolites and lipid peroxidation in dwarf bamboo (Fargesia rufa Yi) during drought and subsequent recovery[J]. TREES-STRUCTURE AND FUNCTION,2015,29(6):1633-1647.
APA Liu, CG .,Wang, YJ .,Pan, KW .,Jin, YQ .,Liang, J .,...&Zhang, L .(2015).Photosynthetic carbon and nitrogen metabolism and the relationship between their metabolites and lipid peroxidation in dwarf bamboo (Fargesia rufa Yi) during drought and subsequent recovery.TREES-STRUCTURE AND FUNCTION,29(6),1633-1647.
MLA Liu, CG ,et al."Photosynthetic carbon and nitrogen metabolism and the relationship between their metabolites and lipid peroxidation in dwarf bamboo (Fargesia rufa Yi) during drought and subsequent recovery".TREES-STRUCTURE AND FUNCTION 29.6(2015):1633-1647.

入库方式: OAI收割

来源:西双版纳热带植物园

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