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本文引用的文献

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Biochemistry and molecular biology of lignification.木质化的生物化学与分子生物学
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Changes in stem lignins (monomer composition and crosslinking) and peroxidase are related with the maintenance of leaf photosynthetic integrity during Verticillium wilt in Capsicum annuum.辣椒黄萎病期间,茎木质素(单体组成和交联)和过氧化物酶的变化与叶片光合完整性的维持有关。
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Soybean Stem Lignin Concentration Relates to Resistance to Sclerotinia sclerotiorum.大豆茎木质素浓度与对核盘菌的抗性相关。
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The Ve-mediated resistance response of the tomato to Verticillium dahliae involves H2O2, peroxidase and lignins and drives PAL gene expression.番茄对黄萎病菌的 Ve 介导抗性反应涉及 H2O2、过氧化物酶和木质素,并驱动 PAL 基因表达。
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The origin and evolution of lignin biosynthesis.木质素生物合成的起源和演化。
New Phytol. 2010 Jul;187(2):273-285. doi: 10.1111/j.1469-8137.2010.03327.x.
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The phenylpropanoid pathway and plant defence-a genomics perspective.苯丙烷代谢途径与植物防御——从基因组学角度看。
Mol Plant Pathol. 2002 Sep 1;3(5):371-90. doi: 10.1046/j.1364-3703.2002.00131.x.
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Sclerotinia sclerotiorum (Lib.) de Bary: biology and molecular traits of a cosmopolitan pathogen.核盘菌(Lib.)de Bary:一种世界性病原体的生物学和分子特征。
Mol Plant Pathol. 2006 Jan 1;7(1):1-16. doi: 10.1111/j.1364-3703.2005.00316.x.
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Cinnamyl alcohol dehydrogenases-C and D, key enzymes in lignin biosynthesis, play an essential role in disease resistance in Arabidopsis.肉桂醇脱氢酶 C 和 D 是木质素生物合成的关键酶,在拟南芥的抗病性中发挥着重要作用。
Mol Plant Pathol. 2010 Jan;11(1):83-92. doi: 10.1111/j.1364-3703.2009.00578.x.
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Patterns of differential gene expression in Brassica napus cultivars infected with Sclerotinia sclerotiorum.感染核盘菌的甘蓝型油菜品种中的差异基因表达模式。
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10
Internal resistance in winter oilseed rape inhibits systemic spread of the vascular pathogen Verticillium longisporum.冬季油菜的内在抗性抑制维管束病原体长孢黄萎病菌的系统传播。
Phytopathology. 2009 Jul;99(7):802-11. doi: 10.1094/PHYTO-99-7-0802.

苯丙烷类生物合成与荠蓝对核盘菌抗性的关系。

Monolignol biosynthesis is associated with resistance to Sclerotinia sclerotiorum in Camelina sativa.

机构信息

Agriculture and Agri-Food Canada, Saskatoon Research Centre, Saskatoon, SK, Canada, S7N 0X2.

出版信息

Mol Plant Pathol. 2012 Oct;13(8):887-99. doi: 10.1111/j.1364-3703.2012.00798.x. Epub 2012 Apr 8.

DOI:10.1111/j.1364-3703.2012.00798.x
PMID:22487550
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6638904/
Abstract

The ascomycete Sclerotinia sclerotiorum is a necrotrophic plant pathogen with an extremely broad host range. It causes stem rot in Camelina sativa, a crucifer with great potential as an alternative oilseed crop. Lignification is a common phenomenon in the expression of resistance against necrotrophs, but the molecular mechanisms underlying this defence response are poorly understood. We present histochemical, gene expression and biochemical data investigating the role of monolignols in the resistance of C. sativa to S. sclerotiorum. Comparative studies with resistant and susceptible lines of C. sativa revealed substantial differences in constitutive transcript levels and gene regulation patterns for members of the gene family encoding cinnamoyl-CoA reductase (CCR), the first enzyme specifically committed to the synthesis of lignin monomers. These differences were associated with anatomical and metabolic factors. While the induction of CsCCR2 expression after inoculation with S. sclerotiorum was associated with the deposition of lignin mainly derived from guaiacyl monomers, high constitutive levels of CsCCR4 paralleled a high syringyl lignin content in healthy stems of resistant plants. The results provide evidence that plant cell wall strengthening plays a role in the resistance of C. sativa to S. sclerotiorum, and that both constitutive and inducible defence mechanisms contribute to reduced symptom development in resistant germplasm. This study provides the first characterization of quantitative resistance in C. sativa to S. sclerotiorum.

摘要

子囊菌核盘菌是一种具有极广寄主范围的植物坏死性病原菌。它会引起荠蓝的茎腐病,荠蓝是一种具有巨大潜力的替代油料作物。木质化是对坏死性病原菌抗性表达的常见现象,但这种防御反应的分子机制还了解甚少。我们提供了组织化学、基因表达和生化数据,研究了藜蓝中单宁醇在对核盘菌抗性中的作用。对藜蓝的抗性和敏感性品系进行的比较研究表明,编码肉桂酰辅酶 A 还原酶(CCR)的基因家族成员的组成型转录水平和基因调控模式存在显著差异,CCR 是专门负责合成木质素单体的第一个酶。这些差异与解剖学和代谢因素有关。虽然接种核盘菌后 CsCCR2 的表达诱导与主要来源于愈创木基单体的木质素沉积有关,但 CsCCR4 的高组成型水平与抗性植物健康茎中的高丁香基木质素含量平行。研究结果表明,植物细胞壁的强化在荠蓝对核盘菌的抗性中起作用,并且组成型和诱导型防御机制都有助于减少抗性种质中症状的发展。本研究首次对荠蓝对核盘菌的定量抗性进行了特征描述。