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利用荧光差异显示技术对拟南芥黄化幼苗中光敏色素调节基因进行大规模筛选鉴定。

Identification by large-scale screening of phytochrome-regulated genes in etiolated seedlings of Arabidopsis using a fluorescent differential display technique.

作者信息

Kuno N, Muramatsu T, Hamazato F, Furuya M

机构信息

Hitachi Advanced Research Laboratory, Hatoyama, Saitama 350-0395, Japan.

出版信息

Plant Physiol. 2000 Jan;122(1):15-24. doi: 10.1104/pp.122.1.15.

Abstract

Phytochrome A (PhyA)-regulated genes in 6-d-old etiolated seedlings of Arabidopsis Landsberg erecta were identified by fluorescent differential display. To screen for PhyA-regulated genes, mRNA fingerprints of the wild type and the phyA-201 mutant were compared from samples prepared 4 h after far-red light irradiation. Approximately 30,000 bands of cDNA were displayed by fluorescent differential display, and 24 differentially expressed bands were observed. Sequence analysis revealed that they represent 20 distinct genes. Among them, 15 genes were confirmed as PhyA regulated by northern-blot (or reverse transcription-polymerase chain reaction) analysis. Thirteen up-regulated genes included 12 known genes that encode nine photosynthetic proteins, two enzymes involved in the biosynthesis of chlorophyll, one DNA damage repair/toleration-related protein, and one unknown gene. Two down-regulated genes were identified as encoding a xyloglucan endotransglycosylase-related protein and a novel member of the ASK protein kinase family. In the phyA-201 mutant and the phyA-201phyB-1 double mutant, expression of all of these genes was photoreversibly up- or down-regulated by type II phytochromes. The results indicate that modes of photoperception differ between PhyA and PhyB, but that both types of phytochromes have overlapping effects on the photoregulation of gene expression.

摘要

通过荧光差异显示技术鉴定了拟南芥直立型兰茨贝格6日龄黄化幼苗中受光敏色素A(PhyA)调控的基因。为筛选受PhyA调控的基因,在远红光照射4小时后制备的样品中,比较了野生型和phyA - 201突变体的mRNA指纹图谱。荧光差异显示技术展示了约30,000条cDNA条带,观察到24条差异表达条带。序列分析表明,它们代表20个不同的基因。其中,15个基因经Northern杂交(或逆转录 - 聚合酶链反应)分析确认为受PhyA调控。13个上调基因包括12个已知基因,它们编码9种光合蛋白、2种参与叶绿素生物合成的酶、1种与DNA损伤修复/耐受相关的蛋白以及1个未知基因。2个下调基因被鉴定为编码木葡聚糖内转糖基酶相关蛋白和ASK蛋白激酶家族的一个新成员。在phyA - 201突变体和phyA - 201phyB - 1双突变体中,所有这些基因的表达都被II型光敏色素光可逆地上调或下调。结果表明,PhyA和PhyB的光感知模式不同,但这两种类型的光敏色素在基因表达的光调节方面具有重叠效应。

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