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香草品种对根腐病以及尖孢镰刀菌香草根腐专化型侵染的差异响应

Differential Responses of Vanilla Accessions to Root Rot and Colonization by Fusarium oxysporum f. sp. radicis-vanillae.

作者信息

Koyyappurath Sayuj, Conéjéro Geneviève, Dijoux Jean Bernard, Lapeyre-Montès Fabienne, Jade Katia, Chiroleu Frédéric, Gatineau Frédéric, Verdeil Jean Luc, Besse Pascale, Grisoni Michel

机构信息

UMR C53, PVBMT, CIRAD, 3P, Saint-Pierre La Réunion, France.

UMR 5004 B&PMP (INRA, CNRS, Supagro, UM), PHIV Montpellier, France.

出版信息

Front Plant Sci. 2015 Dec 18;6:1125. doi: 10.3389/fpls.2015.01125. eCollection 2015.

Abstract

Root and stem rot (RSR) disease caused by Fusarium oxysporum f. sp. radicis-vanillae (Forv) is the most damaging disease of vanilla (Vanilla planifolia and V. × tahitensis, Orchidaceae). Breeding programs aimed at developing resistant vanilla varieties are hampered by the scarcity of sources of resistance to RSR and insufficient knowledge about the histopathology of Forv. In this work we have (i) identified new genetic resources resistant to RSR including V. planifolia inbreds and vanilla relatives, (ii) thoroughly described the colonization pattern of Forv into selected vanilla accessions, confirming its necrotic non-vascular behavior in roots, and (iii) evidenced the key role played by hypodermis, and particularly lignin deposition onto hypodermal cell walls, for resistance to Forv in two highly resistant vanilla accessions. Two hundred and fifty-four vanilla accessions were evaluated in the field under natural conditions of infection and in controlled conditions using in vitro plants root-dip inoculated by the highly pathogenic isolate Fo072. For the 26 accessions evaluated in both conditions, a high correlation was observed between field evaluation and in vitro assay. The root infection process and plant response of one susceptible and two resistant accessions challenged with Fo072 were studied using wide field and multiphoton microscopy. In susceptible V. planifolia, hyphae penetrated directly into the rhizodermis in the hairy root region then invaded the cortex through the passage cells where it induced plasmolysis, but never reached the vascular region. In the case of the resistant accessions, the penetration was stopped at the hypodermal layer. Anatomical and histochemical observations coupled with spectral analysis of the hypodermis suggested the role of lignin deposition in the resistance to Forv. The thickness of lignin constitutively deposited onto outer cell walls of hypodermis was highly correlated with the level of resistance for 21 accessions tested. The accumulation of p-coumaric and sinapic acids, two phenolic precursors of lignin, was observed in the resistant plants inoculated with Fo072, but not in the susceptible one. Altogether, our analyses enlightened the mechanisms at work in RSR resistant genotypes and should enhance the development of novel breeding strategies aimed at improving the genetic control of RSR of vanilla.

摘要

由尖孢镰刀菌香草根腐专化型(Forv)引起的根腐和茎腐病(RSR)是香草(香草兰和塔希提香草,兰科)最具破坏性的病害。旨在培育抗RSR香草品种的育种计划受到RSR抗性来源稀缺以及对Forv组织病理学了解不足的阻碍。在这项工作中,我们(i)鉴定了新的抗RSR遗传资源,包括香草兰自交系和香草近缘种,(ii)详细描述了Forv在选定香草种质中的定殖模式,证实了其在根中的坏死非维管束行为,并且(iii)证明了在两个高抗香草种质中,下皮层,特别是木质素沉积在下皮层细胞壁上,对Forv抗性起关键作用。在田间自然感染条件下以及在使用高致病性分离株Fo072进行体外植株浸根接种的受控条件下,对254份香草种质进行了评估。对于在两种条件下评估的26份种质,田间评估与体外测定之间观察到高度相关性。使用宽视野和多光子显微镜研究了一株感病和两株抗病种质在受到Fo072挑战时的根部感染过程和植株反应。在感病的香草兰中,菌丝直接穿透毛根区域的根表皮,然后通过通道细胞侵入皮层,在那里诱导质壁分离,但从未到达维管束区域。在抗病种质的情况下,穿透在皮下层停止。对下皮层的解剖学和组织化学观察以及光谱分析表明木质素沉积在对Forv的抗性中起作用。对于测试的21份种质,组成型沉积在下皮层外壁上的木质素厚度与抗性水平高度相关。在接种Fo072的抗病植株中观察到对香豆酸和芥子酸这两种木质素酚类前体的积累,但在感病植株中未观察到。总之,我们的分析揭示了RSR抗性基因型中的作用机制,并应加强旨在改善香草RSR遗传控制的新型育种策略的开发。

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