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拟南芥脂质转移蛋白家族基因的细胞特异性表达。

Cell-specific expression of genes of the lipid transfer protein family from Arabidopsis thaliana.

作者信息

Clark A M, Bohnert H J

机构信息

Department of Plant Sciences, University of Arizona, Tucson 85721-0036, USA.

出版信息

Plant Cell Physiol. 1999 Jan;40(1):69-76. doi: 10.1093/oxfordjournals.pcp.a029476.

DOI:10.1093/oxfordjournals.pcp.a029476
PMID:10189704
Abstract

We have characterized three cDNAs from a gene family encoding lipid transfer proteins, LTP, from Arabidopsis thaliana (Wassilewskija). In addition to the already characterized Ltp1, our analysis includes Ltp2 and Ltp3, two sequences previously known as expressed sequence tags (EST) only. The deduced amino acid sequences of the three cDNAs share 56 to 57% identity and show unique tissue- and cell-specific expression. Genes Ltp1 and LTp2 are located within approximately 1.4 kb of each other in tandem orientation. RNA hydridizations showed that all three LTP are expressed in flowering meristems, flowers and developing seeds. Ltp1 is expressed in leaves in addition. Ltp3, though not Ltp2, is also expressed in a short segment of the stem close to the flowering meristem. In contrast to the epidermis-specific Ltp1, both Ltp2 and Ltp3 are not restricted to the epidermis, but are also expressed in sub-epidermal layers of the organs in which they are found. In the upper stem segment, Ltp3 is predominantly cortical. It appears that the expression of these three cDNAs is sufficient to account for the formation of LTP in all meristematic and expanding cells of the aboveground plant. Evolutionary analysis allows the conclusion that each Ltp belongs to a different sub-family of genes. Additionally, parsimony analysis provides evidence that several copies of Ltp genes already existed in ancestors of the Brassicaceae family.

摘要

我们已对来自拟南芥(瓦西列夫斯基亚种)的一个编码脂质转移蛋白(LTP)的基因家族的三个cDNA进行了特征分析。除了已被特征分析的Ltp1外,我们的分析还包括Ltp2和Ltp3,这两个序列之前仅作为表达序列标签(EST)为人所知。这三个cDNA推导的氨基酸序列具有56%至57%的同一性,并显示出独特的组织和细胞特异性表达。基因Ltp1和Ltp2以串联方向彼此位于约1.4 kb范围内。RNA杂交显示,所有三个LTP在花分生组织、花和发育中的种子中均有表达。此外,Ltp1在叶片中也有表达。Ltp3(而非Ltp2)在靠近花分生组织的茎的一小段中也有表达。与表皮特异性的Ltp1不同,Ltp2和Ltp3并不局限于表皮,在其被发现的器官的表皮下层也有表达。在上部茎段,Ltp3主要在皮层表达。看来这三个cDNA的表达足以解释地上植物所有分生组织和正在扩展的细胞中LTP的形成。进化分析得出结论,每个Ltp属于不同的基因亚家族。此外,简约分析提供了证据,表明十字花科家族的祖先中已经存在多个Ltp基因拷贝。

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