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镁螯合酶I亚基1和镁原卟啉IX甲基转移酶影响拟南芥的气孔孔径。

Mg-chelatase I subunit 1 and Mg-protoporphyrin IX methyltransferase affect the stomatal aperture in Arabidopsis thaliana.

作者信息

Tomiyama Masakazu, Inoue Shin-Ichiro, Tsuzuki Tomo, Soda Midori, Morimoto Sayuri, Okigaki Yukiko, Ohishi Takaya, Mochizuki Nobuyoshi, Takahashi Koji, Kinoshita Toshinori

机构信息

Division of Biological Science, Graduate School of Science, Nagoya University, Chikusa, Nagoya, 464-8602, Japan.

出版信息

J Plant Res. 2014 Jul;127(4):553-63. doi: 10.1007/s10265-014-0636-0. Epub 2014 May 20.

Abstract

To elucidate the molecular mechanisms of stomatal opening and closure, we performed a genetic screen using infrared thermography to isolate stomatal aperture mutants. We identified a mutant designated low temperature with open-stomata 1 (lost1), which exhibited reduced leaf temperature, wider stomatal aperture, and a pale green phenotype. Map-based analysis of the LOST1 locus revealed that the lost1 mutant resulted from a missense mutation in the Mg-chelatase I subunit 1 (CHLI1) gene, which encodes a subunit of the Mg-chelatase complex involved in chlorophyll synthesis. Transformation of the wild-type CHLI1 gene into lost1 complemented all lost1 phenotypes. Stomata in lost1 exhibited a partial ABA-insensitive phenotype similar to that of rtl1, a Mg-chelatase H subunit missense mutant. The Mg-protoporphyrin IX methyltransferase (CHLM) gene encodes a subsequent enzyme in the chlorophyll synthesis pathway. We examined stomatal movement in a CHLM knockdown mutant, chlm, and found that it also exhibited an ABA-insensitive phenotype. However, lost1 and chlm seedlings all showed normal expression of ABA-induced genes, such as RAB18 and RD29B, in response to ABA. These results suggest that the chlorophyll synthesis enzymes, Mg-chelatase complex and CHLM, specifically affect ABA signaling in the control of stomatal aperture and have no effect on ABA-induced gene expression.

摘要

为了阐明气孔开闭的分子机制,我们利用红外热成像技术进行了遗传筛选,以分离气孔孔径突变体。我们鉴定出一个名为低温下气孔开放1(lost1)的突变体,它表现出叶片温度降低、气孔孔径变宽和浅绿色表型。对LOST1基因座进行基于图谱的分析表明,lost1突变体是由镁螯合酶I亚基1(CHLI1)基因的错义突变导致的,该基因编码参与叶绿素合成的镁螯合酶复合物的一个亚基。将野生型CHLI1基因导入lost1中,互补了所有lost1的表型。lost1中的气孔表现出与rtl1(一种镁螯合酶H亚基错义突变体)相似的部分脱落酸不敏感表型。镁原卟啉IX甲基转移酶(CHLM)基因编码叶绿素合成途径中的一种后续酶。我们检测了CHLM基因敲除突变体chlm中的气孔运动,发现它也表现出脱落酸不敏感表型。然而,lost1和chlm幼苗在响应脱落酸时,均显示出脱落酸诱导基因如RAB18和RD29B的正常表达。这些结果表明,叶绿素合成酶、镁螯合酶复合物和CHLM在气孔孔径控制中特异性地影响脱落酸信号传导,而对脱落酸诱导的基因表达没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81bf/4683165/71e9c1fa9fb2/10265_2014_636_Fig1_HTML.jpg

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