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来自经En-1诱变的拟南芥群体的基因敲除突变体产生苯丙烷类生物合成表型。

Knock-out mutants from an En-1 mutagenized Arabidopsis thaliana population generate phenylpropanoid biosynthesis phenotypes.

作者信息

Wisman E, Hartmann U, Sagasser M, Baumann E, Palme K, Hahlbrock K, Saedler H, Weisshaar B

机构信息

Max-Planck-Institut für Züchtungsforschung, Carl-von-Linné-Weg 10, D-50829 Köln, Germany.

出版信息

Proc Natl Acad Sci U S A. 1998 Oct 13;95(21):12432-7. doi: 10.1073/pnas.95.21.12432.

Abstract

A collection of 8,000 Arabidopsis thaliana plants carrying 48,000 insertions of the maize transposable element En-1 has been generated. This population was used for reverse genetic analyses to identify insertions in individual gene loci. By using a PCR-based screening protocol, insertions were found in 55 genes. En-1 showed no preference for transcribed or untranscribed regions nor for a particular orientation relative to the gene of interest. In several cases, En-1 was inserted within a few kilobases upstream or downstream of the gene. En-1 was mobilized from such positions into the respective gene to cause gene disruption. Knock-out alleles of genes involved in flavonoid biosynthesis were generated. One mutant line contained an En-1 insertion in the flavonol synthase gene (FLS) and showed drastically reduced levels of kaempferol. Allelism tests with other lines containing En-1 insertions in the flavanone 3-hydroxylase gene (F3H) demonstrated that TRANSPARENT TESTA 6 (TT6) encodes flavanone 3-hydroxylase. The f3h and fls null mutants complete the set of A. thaliana lines defective in early steps of the flavonoid pathway. These experiments demonstrate the efficiency of the screening method and gene disruption strategy used for assigning functions to genes defined only by sequence.

摘要

已构建了一个包含8000株拟南芥植株的群体,这些植株带有48000个玉米转座因子En-1的插入。该群体用于反向遗传学分析,以鉴定单个基因座中的插入情况。通过基于PCR的筛选方案,在55个基因中发现了插入。En-1对转录或未转录区域均无偏好,相对于目标基因也没有特定的方向偏好。在几种情况下,En-1插入到基因上游或下游几千碱基内。En-1从这些位置转移到相应基因中导致基因破坏。产生了参与类黄酮生物合成的基因的敲除等位基因。一个突变系在黄酮醇合酶基因(FLS)中含有一个En-1插入,并且山奈酚水平大幅降低。与在黄烷酮3-羟化酶基因(F3H)中含有En-1插入的其他品系进行的等位性测试表明,透明种皮6(TT6)编码黄烷酮3-羟化酶。f3h和fls无效突变体完善了拟南芥中在类黄酮途径早期步骤存在缺陷的品系集合。这些实验证明了用于为仅由序列定义的基因赋予功能的筛选方法和基因破坏策略的有效性。

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Phenylpropanoid biosynthesis and its regulation.苯丙烷类生物合成及其调控。
Curr Opin Plant Biol. 1998 Jun;1(3):251-7. doi: 10.1016/s1369-5266(98)80113-1.

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