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导致拟南芥茎发育停滞的温度敏感突变

Temperature-sensitive mutations that arrest Arabidopsis shoot development.

作者信息

Pickett F B, Champagne M M, Meeks-Wagner D R

机构信息

Institute of Molecular Biology, University of Oregon, Eugene 97403, USA.

出版信息

Development. 1996 Dec;122(12):3799-807. doi: 10.1242/dev.122.12.3799.

DOI:10.1242/dev.122.12.3799
PMID:9012501
Abstract

To identify genes involved in meristem function we have designed a screen for temperature-sensitive mutations that cause a conditional arrest of early shoot development in Arabidopsis. We describe the characterization of three mutations, arrested development (add) 1, 2 and 3. At the restrictive temperature the add1 and add2 mutations disrupt apical meristem function as assayed by leaf initiation. Furthermore, add1 and add2 plants exhibit defects in leaf morphogenesis following upshift from permissive to restrictive temperature. This result suggests that proximity to a functional meristem is required for the completion of normal leaf morphogenesis. The add3 mutation does not have a dramatic effect on the production of leaves by the apical meristem; however, add3 prevents the expansion of leaf blades at high temperature. Thus, in this mutant the temperature-dependent arrest of epicotyl development is due to a failure of normal leaf development rather than new leaf initiation. While all add mutants have a reduced rate of root growth in comparison to wild-type plants, the mutants do not display a temperature-dependent arrest of root development. All add mutants display some developmental defects at low temperature, suggesting that these mutations affect genes involved in inherently temperature-sensitive developmental processes.

摘要

为了鉴定参与分生组织功能的基因,我们设计了一个筛选温度敏感突变体的方法,该突变体会导致拟南芥早期茎发育的条件性停滞。我们描述了三个突变体——发育停滞(add)1、2和3的特征。在限制温度下,add1和add2突变会破坏顶端分生组织的功能,这通过叶片起始来测定。此外,add1和add2植株在从允许温度上调到限制温度后,叶片形态发生出现缺陷。这一结果表明,正常叶片形态发生的完成需要靠近功能性分生组织。add3突变对顶端分生组织产生叶片的过程没有显著影响;然而,add3会阻止叶片在高温下的扩展。因此,在这个突变体中,上胚轴发育的温度依赖性停滞是由于正常叶片发育失败而非新叶起始失败。虽然与野生型植株相比,所有add突变体的根生长速率都降低了,但这些突变体并未表现出根发育的温度依赖性停滞。所有add突变体在低温下都表现出一些发育缺陷,这表明这些突变影响了参与固有温度敏感发育过程的基因。

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