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首页> 外文期刊>Journal of Experimental Botany >Water deficits and heat shock effects on photosynthesis of a transgenic Arabidopsis thaliana constitutively expressing ABP9, a bZIP transcription factor
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Water deficits and heat shock effects on photosynthesis of a transgenic Arabidopsis thaliana constitutively expressing ABP9, a bZIP transcription factor

机译:水分亏缺和热休克对组成型表达bZIP转录因子ABP9的转基因拟南芥光合作用的影响

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摘要

The effects of water deficits (WD), heat shock (HS), and both (HSWD) on photosynthetic carbon- and light-use efficiencies together with leaf ABA content, pigment composition and expressions of stress- and light harvesting-responsive genes were investigated in ABP9 [ABA-responsive-element (ABRE) binding protein 9] transgenic Arabidopsis (5P2). WD, HS, and HSWD significantly decreased photosynthetic rate (A) and stomatal conductance (gs) in wild-type plants (WT). A and gs of 5P2 transgenic plants were slightly reduced by a single stress and were hardly modified by HSWD. Although A and electron transport rate (ETR) in 5P2 plants were depressed under optimal growth conditions (control) in relation to WT, they were enhanced under HS and HSWD. These results indicate that ABP9 transgenic plants are less susceptible to stress than the WT. In addition, the increased ABA contents in both WT and 5P2 plants in response to WD and/or HS stresses suggest that declines in A and gs might have been due to ABA-induced stomatal closure. Moreover, compared with WT, 5P2 plants exhibited higher ABA content, instantaneous water use efficiency (IWUE), Chl a/b, NPQ, and lower Chl/carotenoid ratios. Finally, altered expression of stress-regulated or light harvesting-responsive genes was observed. Collectively, our results indicate that constitutive expression of ABP9 improves the photosynthetic capacity of plants under stress by adjusting photosynthetic pigment composition, dissipating excess light energy, and elevating carbon-use efficiency as well as increasing ABA content, IWUE, and expression of stress-defensive genes, suggesting an important role of ABP9 in the regulation of plant photosynthesis under stress.
机译:研究了水分亏缺(WD),热休克(HS)和两者(HSWD)对光合碳和光利用效率以及叶片ABA含量,色素成分以及胁迫和光收集响应基因表达的影响。在ABP9 [ABA反应元件(ABRE)结合蛋白9]转基因拟南芥(5P2)。 WD,HS和HSWD显着降低了野生型植物(WT)的光合速率(A)和气孔导度(g s )。 5P2转基因植物的A和g s 在单一胁迫下略有减少,而HSWD几乎不能对其进行修饰。尽管在相对于WT的最佳生长条件下(对照),5P2植物的A和电子传输速率(ETR)受到抑制,但在HS和HSWD下它们却增强了。这些结果表明,ABP9转基因植物比野生型不易受胁迫。另外,WT和/或HS胁迫下WT和5P2植物中ABA含量的增加表明A和g s 的下降可能是由于ABA诱导的气孔关闭所致。此外,与WT相比,5P2植物表现出更高的ABA含量,瞬时水分利用效率(IWUE),Chla / b,NPQ和较低的Chl /类胡萝卜素比率。最后,观察到应激调节或光收集应答基因的表达改变。总体而言,我们的结果表明,ABP9的本构表达可通过调节光合色素成分,耗散多余的光能,提高碳利用效率以及增加ABA含量,IWUE和抗逆性表达来提高胁迫下植物的光合能力。基因,表明ABP9在胁迫下调节植物光合作用中的重要作用。

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  • 来源
    《Journal of Experimental Botany》 |2008年第4期|p.839-848|共10页
  • 作者单位

    1Biotechnology Research Institute, National Key Facility for Crop Gene Resources and Genetic Improvement, Chinese Academy of Agricultural Sciences, No. 12 Zhongguancun South Street, Beijing100081, China 2Department of Genetics and Biotechnology, Faculty of Agricultural Sciences, University of Aarhus, Forsøgsvej 1, DK-4200 Slagelse, Denmark 3Key Laboratory of Crop Growth Regulation of Ministry of Agriculture, Nanjing Agricultural University, Nanjing 210095, China 4Department of Agricultural Sciences, Faculty of Life Sciences, University of Copenhagen, DK-2630 Taastrup, Denmark;

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