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不规则毛状体分支2(ITB2)编码一种假定的氨基磷脂转位酶,该酶调节拟南芥中毛状体分支的伸长。

IRREGULAR TRICHOME BRANCH 2 (ITB2) encodes a putative aminophospholipid translocase that regulates trichome branch elongation in Arabidopsis.

作者信息

Zhang Xiaoguo, Oppenheimer David G

机构信息

Department of Biology, University of Florida Genetics Institute, University of Florida, Gainesville, FL 32611-8526, USA.

出版信息

Plant J. 2009 Oct;60(2):195-206. doi: 10.1111/j.1365-313X.2009.03954.x. Epub 2009 Jul 16.

Abstract

The P4 ATPase family in Arabidopsis consists of 12 members that encode putative aminophospholipid translocases (ALA1-12). Until recently, no mutations in these genes have been shown to cause a visible phenotype, although reduced expression of ALA1 in transgenic plants expressing an antisense construct has been shown to result in reduced plant size when plants were grown under cold conditions. During a genetic screen for mutations that affect trichome shape, we isolated several alleles of the irregular trichome branch 2 (itb2) mutation. Subsequent positional cloning of this locus showed that ITB2 encoded ALA3. Phenotypic and genetic analyses of multiple itb2 alleles, including the T-DNA insertion alleles, showed that the loss of ITB2/ALA3 function leads to aberrant trichome expansion, reduced primary root growth and longer root hairs. We also found that itb2/ala3 mutant pollen does not grow as well as wild-type pollen, leading to severe segregation distortion. Our results suggest that aminophospholipid translocases play an important role in the polar growth of plant cells, which is consistent with the proposed role of ALA3 in membrane trafficking. Furthermore, itb2/ala3 mutants provide a convenient visible phenotype for further genetic analysis of the ALA family in Arabidopsis.

摘要

拟南芥中的P4 ATP酶家族由12个成员组成,这些成员编码推定的氨基磷脂转运酶(ALA1 - 12)。直到最近,这些基因中还没有突变被证明会导致可见的表型,尽管在表达反义构建体的转基因植物中,ALA1表达降低已被证明在低温条件下生长时会导致植株变小。在对影响毛状体形状的突变进行遗传筛选过程中,我们分离出了不规则毛状体分支2(itb2)突变的几个等位基因。该位点随后的定位克隆表明,ITB2编码ALA3。对多个itb2等位基因(包括T - DNA插入等位基因)的表型和遗传分析表明,ITB2/ALA3功能丧失会导致毛状体异常扩展、主根生长减少和根毛变长。我们还发现,itb2/ala3突变体花粉的生长不如野生型花粉,导致严重的分离畸变。我们的结果表明,氨基磷脂转运酶在植物细胞的极性生长中起重要作用,这与ALA3在膜运输中的推测作用一致。此外,itb2/ala3突变体为拟南芥中ALA家族的进一步遗传分析提供了一个方便的可见表型。

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