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R2R3-MYB蛋白AtMYB61参与det3突变体表型的异位木质化和暗形态建成成分。

Involvement of the R2R3-MYB, AtMYB61, in the ectopic lignification and dark-photomorphogenic components of the det3 mutant phenotype.

作者信息

Newman Lisa J, Perazza Daniel E, Juda Lusanda, Campbell Malcolm M

机构信息

Department of Plant Sciences, South Parks Road, University of Oxford, Oxford OX1 3RB, UK.

出版信息

Plant J. 2004 Jan;37(2):239-50. doi: 10.1046/j.1365-313x.2003.01953.x.

Abstract

Overexpression of a pine MYB, PtMYB4, in Arabidopsis caused ectopic lignin deposition and allowed the plants to undergo photomorphogenesis even when they were grown in the dark. The phenotype caused by PtMYB4 overexpression was reminiscent of the previously characterised dark-photomorphogenic mutant, de-etiolated 3 (det3); consequently, we tested the hypothesis that MYB misexpression may explain aspects of the det3 phenotype. We show here that AtMYB61, a member of the Arabidopsis R2R3-MYB family, is misexpressed in the det3 mutant. Semi-quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) experiments suggested that AtMYB61 was misexpressed in a det3 background relative to wild-type plants. Examination of AtMYB61 promoter activity in a det3 background showed that the spatial control of AtMYB61 expression was lost. In order to determine if such misexpression could explain the mutant phenotype, AtMYB61 was overexpressed in wild-type Arabidopsis plants. Transgenic plants that overexpressed AtMYB61 had the same ectopic lignification and dark-photomorphogenic phenotype as that of the det3 mutant. In order to test if AtMYB61 was necessary for these aspects of the det3 phenotype, AtMYB61 expression was downregulated in det3 plants in both antisense and sense suppression experiments. Suppression of AtMYB61 in a det3 mutant background restored all mutant phenotypes of the det3 mutant associated with development in the dark. Taken together, these results suggest that AtMYB61 misexpression was both sufficient and necessary to explain the ectopic lignification and dark-photomorphogenic phenotypes of the det3 mutant.

摘要

在拟南芥中过量表达松树的MYB(PtMYB4)会导致异位木质素沉积,并且即使植物在黑暗中生长也能进行光形态建成。PtMYB4过量表达所导致的表型让人联想到之前鉴定的暗形态建成突变体——去黄化3(det3);因此,我们检验了MYB表达错误可能解释det3表型某些方面的假说。我们在此表明,拟南芥R2R3-MYB家族成员AtMYB61在det3突变体中表达错误。半定量逆转录聚合酶链反应(RT-PCR)实验表明,相对于野生型植物,AtMYB61在det3背景中表达错误。对det3背景下AtMYB61启动子活性的检测表明,AtMYB61表达的空间控制丧失。为了确定这种表达错误是否能解释突变体表型,在野生型拟南芥植物中过量表达AtMYB61。过量表达AtMYB61的转基因植物具有与det3突变体相同的异位木质化和暗形态建成表型。为了检验AtMYB61对于det3表型的这些方面是否必要,在反义抑制和正义抑制实验中下调det3植物中AtMYB61的表达。在det3突变体背景中抑制AtMYB61可恢复det3突变体与黑暗中发育相关的所有突变表型。综上所述,这些结果表明AtMYB61表达错误对于解释det3突变体的异位木质化和暗形态建成表型既是充分的也是必要的。

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