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拟南芥中参与无义介导的mRNA降解的UPF1 RNA解旋酶与种子大小控制有关,对生长至关重要。

Arabidopsis UPF1 RNA helicase for nonsense-mediated mRNA decay is involved in seed size control and is essential for growth.

作者信息

Yoine Masato, Nishii Terumi, Nakamura Kenzo

机构信息

Laboratory of Biochemistry, Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya, 464-8601 Japan.

出版信息

Plant Cell Physiol. 2006 May;47(5):572-80. doi: 10.1093/pcp/pcj035. Epub 2006 Mar 15.

DOI:10.1093/pcp/pcj035
PMID:16540482
Abstract

UPF1 RNA helicase plays a central role in nonsense-mediated mRNA decay (NMD), which specifically recognizes aberrant mRNAs containing premature termination codons and targets them for degradation. Although NMD factors are highly conserved among eukaryotes, little is known about the role of NMD in plant growth and development. The lba1 mutant of Arabidopsis thaliana with a Gly(851)-->Glu missense mutation in AtUPF1 yielded seeds that were on average 22% longer in the long axis and 35% heavier than the wild-type Col seeds. Expression of the wild-type AtUPF1 in this mutant reduced the seeds to a normal size. During early stages of seed development, globular to torpedo stages of the embryos were contained within seed sacs that were larger in lba1 than in Col. Furthermore, the distance between seeds in siliques was greater in lba1 than in Col, suggesting that the lba1 mutation may affect ovule development. Self-pollinated atupf1-3(+/-) plants heterozygous for AtUPF1 disrupted by T-DNA insertion developed atupf1-3(-/-) seeds with a size and shape similar to those of Col seeds. However, the atupf1-3(-/-) seedlings stopped growing after radicle emergence from the seed coat, and this seedling lethality was rescued by expressing the wild-type AtUPF1. These results suggest that the lba1 mutation in AtUPF1 maternally affects seed development and that AtUPF1 is essential for seedling growth.

摘要

UPF1 RNA解旋酶在无义介导的mRNA降解(NMD)过程中发挥核心作用,该过程能特异性识别含有提前终止密码子的异常mRNA并将其靶向降解。尽管NMD因子在真核生物中高度保守,但关于NMD在植物生长发育中的作用却知之甚少。拟南芥的lba1突变体在AtUPF1中存在Gly(851)-->Glu错义突变,其产生的种子长轴平均比野生型Col种子长22%,重量重35%。在该突变体中表达野生型AtUPF1可使种子恢复正常大小。在种子发育的早期阶段,胚胎从球形期到鱼雷期都包裹在种子囊中,lba1中的种子囊比Col中的更大。此外,lba1中角果内种子间的距离比Col中的更大,这表明lba1突变可能影响胚珠发育。AtUPF1被T-DNA插入破坏的atupf1-3(+/-)植物进行自花授粉,产生的atupf1-3(-/-)种子的大小和形状与Col种子相似。然而,atupf1-3(-/-)幼苗在胚根从种皮中长出后停止生长,而通过表达野生型AtUPF1可挽救这种幼苗致死现象。这些结果表明,AtUPF1中的lba1突变对种子发育有母体影响,且AtUPF1对幼苗生长至关重要。

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