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茄科中非特异性脂质转移蛋白(nsLtp)家族的发现、鉴定和比较分析。

Discovery, identification and comparative analysis of non-specific lipid transfer protein (nsLtp) family in Solanaceae.

机构信息

Key Laboratory of Genome Sciences and Information, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100029, China.

出版信息

Genomics Proteomics Bioinformatics. 2010 Dec;8(4):229-37. doi: 10.1016/S1672-0229(10)60024-1.

Abstract

Plant non-specific lipid transfer proteins (nsLtps) have been reported to be involved in plant defense activity against bacterial and fungal pathogens. In this study, we identified 135 (122 putative and 13 previously identified) Solanaceae nsLtps, which are clustered into 8 different groups. By comparing with Boutrot's nsLtp classification, we classified these eight groups into five types (I, II, IV, IX and X). We compared Solanaceae nsLtps with Arabi-dopsis and Gramineae nsLtps and found that (1) Types I, II and IV are shared by Solanaceae, Gramineae and Arabidopsis; (2) Types III, V, VI and VIII are shared by Gramineae and Arabidopsis but not detected in Solanaceae so far; (3) Type VII is only found in Gramineae whereas type IX is present only in Arabidopsis and Solanaceae; (4) Type X is a new type that accounts for 52.59% Solanaceae nsLtps in our data, and has not been reported in any other plant so far. We further built and compared the three-dimensional structures of the eight groups, and found that the major functional diversification within the nsLtp family could be predated to the monocot/dicot divergence, and many gene duplications and sequence variations had happened in the nsLtp family after the monocot/dicot divergence, especially in Solanaceae.

摘要

植物非特异性脂质转移蛋白(nsLtps)已被报道参与植物对细菌和真菌病原体的防御活动。在这项研究中,我们鉴定了 135 种(122 种假定和 13 种已鉴定)茄科 nsLtps,它们分为 8 个不同的组。通过与 Boutrot 的 nsLtp 分类进行比较,我们将这 8 个组分为 5 种类型(I、II、IV、IX 和 X)。我们比较了茄科、拟南芥和禾本科 nsLtps,发现:(1)I、II 和 IV 型在茄科、禾本科和拟南芥中共享;(2)III、V、VI 和 VIII 型在禾本科和拟南芥中共享,但在茄科中尚未检测到;(3)VII 型仅在禾本科中发现,而 IX 型仅存在于拟南芥和茄科中;(4)X 型是一种新类型,占我们数据中茄科 nsLtps 的 52.59%,迄今为止尚未在任何其他植物中报道过。我们进一步构建和比较了这 8 组的三维结构,发现 nsLtp 家族内的主要功能多样化可以追溯到单子叶植物/双子叶植物的分化,并且在单子叶植物/双子叶植物分化后,nsLtp 家族发生了许多基因复制和序列变异,特别是在茄科中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b2e/5054125/4eeb1612d62b/gr1.jpg

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