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拟南芥中甾醇δ还原酶基因的损伤会因油菜素甾醇生物合成受阻而导致植株矮小。

Lesions in the sterol delta reductase gene of Arabidopsis cause dwarfism due to a block in brassinosteroid biosynthesis.

作者信息

Choe S, Tanaka A, Noguchi T, Fujioka S, Takatsuto S, Ross A S, Tax F E, Yoshida S, Feldmann K A

机构信息

Department of Plant Sciences, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Plant J. 2000 Mar;21(5):431-43. doi: 10.1046/j.1365-313x.2000.00693.x.

Abstract

The brassinosteroid (BR) biosynthetic pathway, and the sterol pathway which is prerequisite to the BR pathway, are rapidly being characterized because of the availability of a large number of characteristic dwarf mutants in Arabidopsis. Here we show that the Arabidopsis dwarf5 mutants are disrupted in a sterol Delta7 reduction step. dwf5 plants display the characteristic dwarf phenotype typical of other BR mutants. This phenotype includes small, round, dark-green leaves, and short stems, pedicels, and petioles. Metabolite tracing with 13C-labeled precursors in dwf5 verified a deficiency in a sterol Delta7 reductase activity. All six independent alleles contain loss-of-function mutations in the sterol Delta7 reductase gene. These include a putative mRNA instability mutation in dwf5-1, 3' and 5' splice-site mutations in dwf5-2 and dwf5-6, respectively, premature stop codons in dwf5-3 (R400Z) and dwf5-5 (R409Z), and a mis-sense mutation in dwf5-4 (D257N). The dwf5 plant could be restored to wild type by ectopic overexpression of the wild-type copy of the gene. Both the Arabidopsis dwf5 phenotype and the human Smith-Lemli-Opitz syndrome are caused by loss-of-function mutations in a sterol Delta7 reductase gene, indicating that it is required for the proper growth and development of these two organisms.

摘要

由于拟南芥中存在大量具有特征性的矮化突变体,油菜素内酯(BR)生物合成途径以及作为BR途径前提条件的甾醇途径正迅速得到表征。在此我们表明,拟南芥dwarf5突变体在甾醇Δ7还原步骤中发生了破坏。dwf5植株表现出其他BR突变体典型的特征性矮化表型。这种表型包括小而圆的深绿色叶片以及短茎、花梗和叶柄。用13C标记的前体对dwf5进行代谢物追踪,证实了甾醇Δ7还原酶活性存在缺陷。所有六个独立等位基因在甾醇Δ7还原酶基因中均含有功能丧失突变。这些突变包括dwf5 - 1中的一个假定的mRNA不稳定突变、dwf5 - 2和dwf5 - 6中分别的3'和5'剪接位点突变、dwf5 - 3(R400Z)和dwf5 - 5(R409Z)中的过早终止密码子,以及dwf5 - 4(D257N)中的一个错义突变。通过异位过表达该基因的野生型拷贝,dwf5植株可恢复为野生型。拟南芥dwf5表型和人类史密斯 - 勒米 - 奥皮茨综合征均由甾醇Δ7还原酶基因中的功能丧失突变引起,这表明该基因对于这两种生物体的正常生长和发育是必需的。

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