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鉴定和分析水稻 annexin 基因家族。

Identification and characterization of annexin gene family in rice.

机构信息

Department of Plant Science, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.

出版信息

Plant Cell Rep. 2012 May;31(5):813-25. doi: 10.1007/s00299-011-1201-0. Epub 2011 Dec 14.

Abstract

Plant annexins are Ca(2+)-dependent phospholipid-binding proteins and are encoded by multigene families. They are implicated in the regulation of plant development as well as protection from drought and other stresses. They are well characterized in Arabidopsis, however no such characterization of rice annexin gene family has been reported thus far. With the availability of the rice genome sequence information, we have identified ten members of the rice annexin gene family. At the protein level, they share 16-64% identity with predicted molecular masses ranging from 32 to 40 kDa. Phylogenetic analysis of rice annexins together with annexins from other monocots led to their classification into five different orthologous groups and share similar motif patterns in their protein sequences. Expression analysis by real-time RT-PCR revealed differential temporal and spatial regulation of these genes. The rice annexin genes are also found to be regulated in seedling stage by various abiotic stressors including salinity, drought, heat and cold. Additionally, in silico analysis of the putative upstream sequences was analyzed for the presence of stress-responsive cis-elements. These results provide a basis for further functional characterization of specific rice annexin genes at the tissue/developmental level and in response to abiotic stresses.

摘要

植物 annexins 是依赖 Ca(2+)的磷脂结合蛋白,由多基因家族编码。它们参与植物发育的调节以及对干旱和其他胁迫的保护。在拟南芥中,它们的特征得到了很好的描述,但迄今为止,尚未有关于水稻 annexin 基因家族的此类描述。随着水稻基因组序列信息的可用,我们已经鉴定出水稻 annexin 基因家族的十个成员。在蛋白质水平上,它们与预测的分子量在 32 到 40 kDa 之间的分子具有 16-64%的同一性。对水稻 annexin 与其他单子叶植物 annexin 的系统发育分析导致它们被分类为五个不同的直系同源群,并在其蛋白质序列中具有相似的基序模式。通过实时 RT-PCR 的表达分析显示,这些基因在不同的时间和空间上受到调节。水稻 annexin 基因也被发现受到各种非生物胁迫的调节,包括盐度、干旱、热和冷。此外,还对假定的上游序列进行了生物信息学分析,以研究应激响应顺式元件的存在。这些结果为进一步在组织/发育水平和对非生物胁迫的响应上对特定的水稻 annexin 基因进行功能特征分析提供了基础。

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