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水稻幼苗叶片对二氧化碳浓度升高的蛋白质组学响应

Proteomic response of rice seedling leaves to elevated CO2 levels.

作者信息

Bokhari Saleem A, Wan Xiang-Yuan, Yang Yi-Wei, Zhou Lu, Tang Wan-Li, Liu Jin-Yuan

机构信息

Laboratory of Molecular Biology and Protein Science Laboratory of the Ministry of Education, Department of Biological Sciences and Biotechnology, Tsinghua University, Beijing 100084, China.

出版信息

J Proteome Res. 2007 Dec;6(12):4624-33. doi: 10.1021/pr070524z. Epub 2007 Nov 8.

DOI:10.1021/pr070524z
PMID:17988085
Abstract

Previous investigations of plant responses to higher CO 2 levels were mostly based on physiological measurements and biochemical assays. In this study, a proteomic approach was employed to investigate plant response to higher CO 2 levels using rice as a model. Ten-day-old seedlings were progressively exposed to 760 ppm, 1140 ppm, and 1520 ppm CO 2 concentrations for 24 h each. The net photosynthesis rate ( P n), stomatal conductance ( G s), transpiration rate ( E), and intercellular to ambient CO 2 concentration ratio ( C i/ C a) were measured. P n, G s, and E showed a maximum increase at 1140 ppm CO 2, but further exposure to 1520 ppm for 24 h resulted in down regulation of these. Proteins extracted from leaves were subjected to 2-DE analysis, and 57 spots showing differential expression patterns, as detected by profile analysis, were identified by MALDI-TOF/TOF-MS. Most of the proteins belonged to photosynthesis, carbon metabolism, and energy pathways. Several molecular chaperones and ascorbate peroxidase were also found to respond to higher CO 2 levels. Concomitant with the down regulation of P n and G s, the levels of enzymes of the regeneration phase of the Calvin cycle were decreased. Correlations between the protein profiles and the photosynthetic measurements at the three CO 2 levels were explored.

摘要

以往关于植物对高二氧化碳水平响应的研究大多基于生理测量和生化分析。在本研究中,采用蛋白质组学方法,以水稻为模型研究植物对高二氧化碳水平的响应。将10日龄的幼苗分别逐步暴露于760 ppm、1140 ppm和1520 ppm的二氧化碳浓度下,各处理24小时。测定了净光合速率(Pn)、气孔导度(Gs)、蒸腾速率(E)以及胞间二氧化碳浓度与外界二氧化碳浓度之比(Ci/Ca)。Pn、Gs和E在二氧化碳浓度为1140 ppm时增幅最大,但进一步暴露于1520 ppm 24小时会导致这些指标下调。从叶片中提取的蛋白质进行双向电泳分析,通过图谱分析检测到57个显示差异表达模式的斑点,并用基质辅助激光解吸电离飞行时间串联质谱(MALDI-TOF/TOF-MS)进行鉴定。大多数蛋白质属于光合作用、碳代谢和能量途径。还发现几种分子伴侣和抗坏血酸过氧化物酶对高二氧化碳水平有响应。随着Pn和Gs的下调,卡尔文循环再生阶段的酶水平降低。探讨了三种二氧化碳水平下蛋白质图谱与光合测量之间的相关性。

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