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细胞外核苷酸和脱氨酶调节拟南芥气孔开度。

Extracellular nucleotides and apyrases regulate stomatal aperture in Arabidopsis.

机构信息

Section of Molecular, Cell, and Developmental Biology, University of Texas, Austin, Texas 78712, USA.

出版信息

Plant Physiol. 2011 Aug;156(4):1740-53. doi: 10.1104/pp.111.174466. Epub 2011 Jun 2.

Abstract

This study investigates the role of extracellular nucleotides and apyrase enzymes in regulating stomatal aperture. Prior data indicate that the expression of two apyrases in Arabidopsis (Arabidopsis thaliana), APY1 and APY2, is strongly correlated with cell growth and secretory activity. Both are expressed strongly in guard cell protoplasts, as determined by reverse transcription-polymerase chain reaction and immunoblot analyses. Promoter activity assays for APY1 and APY2 show that expression of both apyrases correlates with conditions that favor stomatal opening. Correspondingly, immunoblot data indicate that APY expression in guard cell protoplasts rises quickly when these cells are moved from darkness into light. Both short-term inhibition of ectoapyrase activity by polyclonal antibodies and long-term suppression of APY1 and APY2 transcript levels significantly disrupt normal stomatal behavior in light. Stomatal aperture shows a biphasic response to applied adenosine 5'-[γ-thio]triphosphate (ATPγS) or adenosine 5'-[β-thio] diphosphate, with lower concentrations inducing stomatal opening and higher concentrations inducing closure. Equivalent concentrations of adenosine 5'-O-thiomonophosphate have no effect on aperture. Two mammalian purinoceptor inhibitors block ATPγS- and adenosine 5'-[β-thio] diphosphate-induced opening and closing and also partially block the ability of abscisic acid to induce stomatal closure and of light to induce stomatal opening. Treatment of epidermal peels with ATPγS induces increased levels of nitric oxide and reactive oxygen species, and genetically suppressing the synthesis of these agents blocks the effects of nucleotides on stomatal aperture. A luciferase assay indicates that treatments that induce either the closing or opening of stomates also induce the release of ATP from guard cells. These data favor the novel conclusion that ectoapyrases and extracellular nucleotides play key roles in regulating stomatal functions.

摘要

本研究探讨了细胞外核苷酸和脱氨酶酶在调节气孔孔径中的作用。先前的数据表明,拟南芥(Arabidopsis thaliana)中两种脱氨酶(APY1 和 APY2)的表达与细胞生长和分泌活性密切相关。通过逆转录-聚合酶链反应和免疫印迹分析,发现这两种脱氨酶在保卫细胞原生质体中表达强烈。APY1 和 APY2 的启动子活性测定表明,两种脱氨酶的表达与有利于气孔开放的条件相关。相应地,免疫印迹数据表明,当这些细胞从黑暗转移到光下时,保卫细胞原生质体中的 APY 表达迅速上升。多克隆抗体短期抑制细胞外脱氨酶活性以及长期抑制 APY1 和 APY2 转录本水平,都会显著破坏光下正常的气孔行为。气孔孔径对应用腺苷 5'-[γ-硫]三磷酸(ATPγS)或腺苷 5'-[β-硫]二磷酸的反应呈双相性,较低浓度诱导气孔开放,较高浓度诱导关闭。等效浓度的腺苷 5'-O-硫代单磷酸对孔径没有影响。两种哺乳动物嘌呤受体抑制剂可阻断 ATPγS 和腺苷 5'-[β-硫]二磷酸诱导的开放和关闭,并且部分阻断脱落酸诱导的气孔关闭和光诱导的气孔开放的能力。用 ATPγS 处理表皮薄片会诱导一氧化氮和活性氧物质水平升高,并且遗传抑制这些物质的合成会阻断核苷酸对气孔孔径的影响。荧光素酶测定表明,诱导气孔关闭或开放的处理也会诱导保卫细胞释放 ATP。这些数据支持了一个新颖的结论,即细胞外脱氨酶和细胞外核苷酸在调节气孔功能方面发挥着关键作用。

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引用本文的文献

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Stomatal responses to humidity and temperature in darkness.黑暗中湿度和温度对气孔的响应。
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