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TamiR1123 起源于一个微型反向重复转座子 (MITE) 家族,其中一个插入到小麦 Vrn-A1a 启动子中。

TamiR1123 originated from a family of miniature inverted-repeat transposable elements (MITE) including one inserted in the Vrn-A1a promoter in wheat.

机构信息

Department of Plant and Soil Sciences, Oklahoma State University, Stillwater, OK 74078, USA.

Department of Plant and Soil Sciences, Oklahoma State University, Stillwater, OK 74078, USA.

出版信息

Plant Sci. 2014 Feb;215-216:117-23. doi: 10.1016/j.plantsci.2013.11.007. Epub 2013 Nov 16.

Abstract

More than half of spring wheat cultivars have a dominant Vrn-A1a allele that has an insertion of a miniature inverted-repeat transposable element (MITE) in its promoter. In this study, we found that the MITE present in the Vrn-A1a gene (MITE_VRN) is a nearly perfect palindrome and it can form highly stable hairpin loops when expressed as RNA. MITE_VRN also possessed sequences of a microRNA in Triticum aestivum (TamiR1123). The P(32) labeled TamiR1123 probe detected two RNA molecules on a small RNA gel blot, one expected for MITE_VRN, and the other expected for TamiR1123. These results demonstrated that MITE_VRN was expressed as RNAs and TamiR1123 was originated from the MITE_VRN family. The isogenic line TDD carrying the dominant Vrn-A1a allele with MITE_VRN showed higher TamiR1123 and Vrn-A1a transcript levels than the isogenic line TDE carrying the recessive vrn-A1a allele without MITE_VRN. TamiR1123 were greatly up-regulated by plant age but slightly down-regulated by low temperature and short days. These findings have pointed to alternative regulatory mechanisms for plant development governed by Vrn-A1a in spring wheat.

摘要

超过一半的春小麦品种具有显性 Vrn-A1a 等位基因,其启动子中插入了一个微型反向重复转座元件(MITE)。在这项研究中,我们发现 Vrn-A1a 基因(MITE_VRN)中的 MITE 是一个几乎完美的回文,当它被表达为 RNA 时,可以形成高度稳定的发夹环。MITE_VRN 还具有小麦中的 microRNA(TamiR1123)的序列。用 P(32)标记的 TamiR1123 探针在小 RNA 凝胶印迹上检测到两种 RNA 分子,一种是预期的 MITE_VRN,另一种是预期的 TamiR1123。这些结果表明 MITE_VRN 被表达为 RNA,并且 TamiR1123 源自 MITE_VRN 家族。携带具有 MITE_VRN 的显性 Vrn-A1a 等位基因的同基因系 TDD 比携带无 MITE_VRN 的隐性 vrn-A1a 等位基因的同基因系 TDE 具有更高的 TamiR1123 和 Vrn-A1a 转录水平。TamiR1123 随植物年龄的增长而显著上调,但随低温和短日照而略有下调。这些发现指出了春小麦中 Vrn-A1a 调控植物发育的替代调控机制。

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