Suppr超能文献

油菜黄萎病菌在甘蓝型油菜木质部汁液中的生长与品种抗性无关,但受植株衰老促进。

Growth of Verticillium longisporum in Xylem Sap of Brassica napus is Independent from Cultivar Resistance but Promoted by Plant Aging.

作者信息

Lopisso Daniel Teshome, Knüfer Jessica, Koopmann Birger, von Tiedemann Andreas

机构信息

Department of Crop Sciences, Division of Plant Pathology and Crop Protection, Georg August University, Grisebachstr. 6, 37077 Göttingen, Germany.

出版信息

Phytopathology. 2017 Sep;107(9):1047-1054. doi: 10.1094/PHYTO-02-17-0043-R. Epub 2017 Jul 26.

Abstract

As Verticillium stem striping of oilseed rape (OSR), a vascular disease caused by Verticillium longisporum, is extending into new geographic regions and no control with fungicides exists, the demand for understanding mechanisms of quantitative resistance increases. Because V. longisporum is strictly limited to the xylem and resistance is expressed in the systemic stage post root invasion, we investigated a potential antifungal role of soluble constituents and nutritional conditions in xylem sap as determinants of cultivar resistance of OSR to V. longisporum. Assessment of biometric and molecular genetic parameters applied to describe V. longisporum resistance (net area under disease progress curve, stunting, stem thickness, plant biomass, and V. longisporum DNA content) showed consistent susceptibility of cultivar 'Falcon' in contrast to two resistant genotypes, 'SEM' and 'Aviso'. Spectrophotometric analysis revealed a consistently stronger in vitro growth of V. longisporum in xylem sap extracted from OSR compared with the water control. Further comparisons of fungal growth in xylem sap of different cultivars revealed the absence of constitutive or V. longisporum induced antifungal activity in the xylem sap of resistant versus susceptible genotypes. The similar growth of V. longisporum in xylem sap, irrespective of cultivar, infection with V. longisporum and xylem sap filtration, was correlated with about equal amounts of total soluble proteins in xylem sap from these treatments. Interestingly, compared with younger plants, xylem sap from older plants induced significantly stronger fungal growth. Growth enhancement of V. longisporum in xylem sap of aging plants was reflected by increased contents of carbohydrates, which was consistent in mock or V. longisporum-infected plants and independent from cultivar resistance. The improved nutritional conditions in the xylem of more mature plants may explain the late appearance of disease symptoms, which are observed only in late maturity stages of plants in the field. While falsifying the presence of antifungal activity in xylem sap of resistant cultivars, this study strengthens previous findings that indicated a significant role of physical cell wall bound resistance factors involved in quantitative, cultivar-related resistance of B. napus to V. longisporum.

摘要

由于油菜黄萎病菌引起的油菜黄萎病(一种维管束病害)正在蔓延至新的地理区域,且目前尚无杀菌剂能够有效防治该病,因此对于了解数量抗性机制的需求日益增加。由于长孢黄萎病菌严格局限于木质部,且抗性在根部侵染后的系统阶段表现出来,我们研究了木质部汁液中的可溶性成分和营养条件作为油菜对长孢黄萎病菌品种抗性决定因素的潜在抗真菌作用。应用生物统计学和分子遗传学参数来描述对长孢黄萎病菌的抗性(病情进展曲线下的净面积、矮化、茎粗、植株生物量和长孢黄萎病菌DNA含量),结果表明,与两个抗性基因型“SEM”和“Aviso”相比,“Falcon”品种表现出一致的易感性。分光光度分析显示,与水对照相比,从油菜中提取的木质部汁液中长孢黄萎病菌的体外生长始终更强。对不同品种木质部汁液中真菌生长的进一步比较表明,抗性和易感基因型的木质部汁液中均不存在组成型或长孢黄萎病菌诱导的抗真菌活性。无论品种、长孢黄萎病菌感染情况和木质部汁液过滤情况如何,长孢黄萎病菌在木质部汁液中的生长相似,这与这些处理的木质部汁液中总可溶性蛋白含量大致相等有关。有趣的是,与较年轻的植株相比,较老植株的木质部汁液诱导的真菌生长明显更强。衰老植株木质部汁液中长孢黄萎病菌的生长增强反映在碳水化合物含量的增加上,这在模拟接种或长孢黄萎病菌感染的植株中是一致的,且与品种抗性无关。更成熟植株木质部中改善的营养条件可能解释了病害症状出现较晚的现象,这种现象仅在田间植株的晚熟阶段才会观察到。虽然本研究否定了抗性品种木质部汁液中存在抗真菌活性的观点,但强化了先前的研究结果,即表明物理细胞壁结合抗性因子在甘蓝型油菜对长孢黄萎病菌的数量、品种相关抗性中起重要作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验