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拟南芥加速细胞死亡基因ACD1参与脱镁叶绿酸a的氧化作用:抑制脱镁叶绿酸a加氧酶活性不会导致拟南芥出现“持绿”表型。

The Arabidopsis-accelerated cell death gene ACD1 is involved in oxygenation of pheophorbide a: inhibition of the pheophorbide a oxygenase activity does not lead to the "stay-green" phenotype in Arabidopsis.

作者信息

Tanaka Ryouichi, Hirashima Masumi, Satoh Soichirou, Tanaka Ayumi

机构信息

Institute of Low Temperature Science, Hokkaido University, and Core Research of Science and Technology (CREST), Japan Science and Technology Corporation (JST), Kita-ku, N19 W8, Sapporo, 060-0819 Japan.

出版信息

Plant Cell Physiol. 2003 Dec;44(12):1266-74. doi: 10.1093/pcp/pcg172.

Abstract

Oxygenation of pheophorbide a is a key step in chlorophyll breakdown. Several biochemical studies have implicated that this step was catalyzed by an iron-containing and ferredoxin-dependent monooxygenase, pheophorbide a oxygenase (PaO). It has been proposed that inhibition of its activity arrests the chlorophyll breakdown and leads to the "stay-green" phenotype. We searched the Arabidopsis genome for a possible PaO-encoding gene and hypothesized that it has homology to known iron-containing Rieske-type monooxygenase sequences. We identified three such open reading frames, Tic55, ACD1 and ACD1-like. We produced transgenic Arabidopsis plants which expressed antisense RNA as a method to inhibit the expression of these genes. The appearance of these antisense plants were indistinguishable from that of the wild type under illumination. However, after they were kept under darkness for 5 d and again illuminated, the leaves of the antisense ACD1 plants (AsACD1) were bleached. Leaves of AsACD1 accumulated 387 nmol (g FW)(-1) pheophorbide a which corresponded to 60% of chlorophyll a degraded. The rate of decrease in chlorophyll a was not influenced in senesced AsACD1 leaves. These results demonstrated that ACD1 is involved in PaO activity, and its inhibition led to photooxidative destruction of the cell instead of the "stay-green" phenotype.

摘要

脱镁叶绿酸a的氧化是叶绿素降解的关键步骤。多项生化研究表明,这一步骤由一种含铁且依赖铁氧还蛋白的单加氧酶——脱镁叶绿酸a加氧酶(PaO)催化。有人提出,抑制其活性会阻止叶绿素降解,并导致“保持绿色”表型。我们在拟南芥基因组中搜索可能编码PaO的基因,并推测它与已知的含铁 Rieske 型单加氧酶序列具有同源性。我们鉴定出了三个这样的开放阅读框,即Tic55、ACD1和ACD1-like。我们培育了表达反义RNA的转基因拟南芥植株,以此作为抑制这些基因表达的方法。在光照条件下,这些反义植株的外观与野生型并无差异。然而,在黑暗中放置5天后再次光照,反义ACD1植株(AsACD1)的叶片变白。AsACD1叶片积累了387 nmol(g FW)-1的脱镁叶绿酸a,相当于降解的叶绿素a的60%。衰老的AsACD1叶片中叶绿素a的下降速率并未受到影响。这些结果表明,ACD1参与了PaO活性,其抑制导致细胞发生光氧化破坏,而非“保持绿色”表型。

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