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来自亚麻的一个铁锈诱导基因(fis1)参与脯氨酸分解代谢。

A rust-inducible gene from flax (fis1) is involved in proline catabolism.

作者信息

Mitchell Heidi J, Ayliffe Michael A, Rashid Khalid Y, Pryor Anthony J

机构信息

CSIRO Division of Plant Industry, Box 1600, Canberra, ACT 2601, Australia.

出版信息

Planta. 2006 Jan;223(2):213-22. doi: 10.1007/s00425-005-0079-x. Epub 2005 Aug 4.

Abstract

A gene fis1 from flax (Linum usitatissimum), which is induced in mesophyll cells at the site of rust (Melampsora lini) infection, is also expressed in vascular tissue, particularly in floral structures of healthy plants. This paper reports that the promoter controlling this expression is contained within 282 bp 5' to the coding region and that fis1 gene induction is specifically by the rust pathogen and not by other fungal pathogens or by wounding. The fis1 gene has 73% homology with an Arabidopsis gene which encodes delta-1-pyrroline-5-carboxylate dehydrogenase (P5CDH) which is a part of the proline degradation pathway. Transgenic flax plants that either over-express fis1 or show reduced fis1 expression due to RNA-mediated gene silencing have an unaltered morphology. However, plants with reduced fis1 expression have markedly increased sensitivity to exogenous proline and show alteration in epidermal cell morphology, callose deposition and the production of hydrogen peroxide during proline-induced death. These lines, which show a biologically significant level of fis1 suppression, have an unaltered reaction to either virulent or avirulent rust infections, as do fis1 over-expression lines. These data indicate that the fis1 gene plays a role in proline metabolism and most likely encodes for a P5CDH enzyme. However, the precise role of fis1 and P5C catabolism in the development of rust disease remains unclear.

摘要

来自亚麻(Linum usitatissimum)的fis1基因,在锈菌(Melampsora lini)感染部位的叶肉细胞中被诱导表达,在维管组织中也有表达,特别是在健康植株的花结构中。本文报道,控制这种表达的启动子位于编码区上游282 bp范围内,且fis1基因的诱导是由锈菌病原体特异性引起的,而非其他真菌病原体或创伤。fis1基因与拟南芥中一个编码δ-1-吡咯啉-5-羧酸脱氢酶(P5CDH)的基因有73%的同源性,该酶是脯氨酸降解途径的一部分。过表达fis1或因RNA介导的基因沉默而fis1表达降低的转基因亚麻植株,其形态未发生改变。然而,fis1表达降低的植株对外源脯氨酸的敏感性显著增加,并且在脯氨酸诱导的死亡过程中,表皮细胞形态、胼胝质沉积和过氧化氢的产生均发生改变。这些显示出生物学上显著水平的fis1抑制的株系,对毒性或无毒锈菌感染的反应与fis1过表达株系一样未发生改变。这些数据表明,fis1基因在脯氨酸代谢中起作用,很可能编码一种P5CDH酶。然而,fis1和P5C分解代谢在锈病发展中的精确作用仍不清楚。

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