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拟南芥组蛋白H2A-1基因的表达与对农杆菌转化的敏感性相关。

Expression of the Arabidopsis histone H2A-1 gene correlates with susceptibility to Agrobacterium transformation.

作者信息

Yi HoChul, Mysore Kirankumar S, Gelvin Stanton B

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, IN 47907-1392, USA.

出版信息

Plant J. 2002 Nov;32(3):285-98. doi: 10.1046/j.1365-313x.2002.01425.x.

DOI:10.1046/j.1365-313x.2002.01425.x
PMID:12410808
Abstract

Transformation of plant cells by Agrobacterium tumefaciens involves both bacterial virulence proteins and host proteins. We have previously shown that the Arabidopsis thaliana gene H2A-1 (RAT5), which encodes histone H2A-1, is involved in T-DNA integration into the plant genome. Mutation of RAT5 results in a severely decreased frequency of transformation, whereas overexpression of RAT5 enhances the transformation frequency (Mysore et al., 2000b). We show here that the expression pattern of RAT5 correlates with plant root cells most susceptible to transformation. As opposed to a cyclin-GUS fusion gene whose expression is limited to meristematic tissues, the H2A-1 gene is expressed in many non-dividing cells. Under normal circumstances, the H2A-1 gene is expressed in the elongation zone of the root, the region that is most susceptible to Agrobacterium transformation. In addition, when roots are incubated on medium containing phytohormones, a concomitant shift in H2A-1 expression and transformation susceptibility to the root base is observed. Inoculation of root segments with a transfer-competent, but not a transformation-deficient Agrobacterium strain induces H2A-1 expression. Furthermore, pre-treatment of Arabidopsis root segments with phytohormones both induces H2A-1 expression and increases the frequency of Agrobacterium transformation. Our results suggest that the expression of the H2A-1 gene is both a marker for, and a predictor of, plant cells most susceptible to Agrobacterium transformation.

摘要

根癌农杆菌对植物细胞的转化涉及细菌毒性蛋白和宿主蛋白。我们之前已经表明,拟南芥基因H2A-1(RAT5)编码组蛋白H2A-1,它参与了T-DNA整合到植物基因组的过程。RAT5突变导致转化频率严重降低,而RAT5的过表达则提高了转化频率(迈索尔等人,2000b)。我们在此表明,RAT5的表达模式与最易被转化的植物根细胞相关。与细胞周期蛋白-GUS融合基因的表达仅限于分生组织不同,H2A-1基因在许多非分裂细胞中表达。在正常情况下,H2A-1基因在根的伸长区表达,该区域最易被农杆菌转化。此外,当根在含有植物激素的培养基上培养时,会观察到H2A-1表达以及对根基部的转化敏感性随之发生变化。用具有转移能力但非转化缺陷型的农杆菌菌株接种根段会诱导H2A-1表达。此外,用植物激素预处理拟南芥根段既会诱导H2A-1表达,又会提高农杆菌转化频率。我们的结果表明,H2A-1基因的表达既是最易被农杆菌转化的植物细胞的一个标记,也是一个预测指标。

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