首页> 外文期刊>Journal of Plant Physiology >Hormone and secondary metabolite profiling in chestnut during susceptible and resistant interactions with Phytophthora cinnamomi
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Hormone and secondary metabolite profiling in chestnut during susceptible and resistant interactions with Phytophthora cinnamomi

机译:栗子中的激素和次级代谢物分析在易感和抗植物肺胰蛋白酶的抗性相互作用期间

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摘要

Phytophthora cinnamomi (Pc) is a dangerous pathogen that causes root rot (ink disease) and threatens the production of chestnuts worldwide. Despite all the advances recently reported at molecular and physiological level, there are still gaps of knowledge that would help to unveil the defence mechanisms behind plant-Pc interactions. Bearing this in mind we quantified constitutive and Pc-induced stress-related signals (hormones and metabolites) complemented with changes in photosynthetic related parameters by exploring susceptible and resistant Castanea spp.-Pc interactions. In a greenhouse experiment, five days before and nine days after inoculation with Pc, leaves and fine roots from susceptible C. sativa and resistant C. sativa x C. crenata clonal 2-year-old plantlets were sampled (clones Cs14 and 111-1, respectively). In the resistant clone, stomatal conductance (g(s)) and net photosynthesis (A) decreased significantly and soluble sugars in leaves increased, while in the susceptible clone gs and A remained unchanged and proline levels in leaves increased. In the resistant clone, higher constitutive content of root SA and foliar ABA, JA and JA-Ile as compared to the susceptible clone were observed. Total phenolics and condensed tannins were highest in roots of the susceptible clone. In response to infection, a dynamic hormonal response in the resistant clone was observed, consisting of accumulation of JA, JA-Ile and ABA in roots and depletion of total phenolics in leaves. However, in the susceptible clone only JA diminished in leaves and increased in roots. Constitutive and Pc-induced levels of JA-Ile were only detectable in the resistant clone. From the hormonal profiles obtained in leaves and roots before and after infection, it is concluded that the lack of effective hormonal changes in C. sativa explains the lack of defence responses to Pc of this susceptible species.
机译:Phytophthora Cinnamomi(PC)是一种危险的病原体,导致根腐腐(墨水病)并威胁全世界栗子的生产。尽管最近在分子和生理水平报告的所有进展情况下,仍有差距有助于揭示植物PC互动背后的防御机制。考虑到考虑到这一点,我们通过探索易感和抗性的Castanea SPP.-PC相互作用来定量组成型和PC诱导的应力相关信号(激素和代谢物)。在温室实验中,用PC接种前5天和9天,患有易感C.苜蓿和抗性C. Sativa X C. Crenata克隆2岁的小植物被取样(克隆CS14和111-1 , 分别)。在耐药克隆中,气孔电导(G(s))和净光合作用(a)显着下降,叶片中可溶性糖增加,而在易感克隆Gs和叶片中保持不变和脯氨酸水平增加。在观察到与易感克隆相比,在耐药克隆,根部SA和叶面ABA,JA和JA-ILE的较高组成含量。总酚类和浓缩的单宁在易感克隆的根中最高。响应于感染,观察到抗性克隆中的动态荷尔蒙反应,由JA,JA-ILE和ABA的积累组成,叶片中的总酚醛化合物和枯竭。然而,在易感克隆中,只有JA在叶中减少并在根中增加。仅在抗性克隆中可检测到构成型和PC诱导的JA-ILE水平。从感染之前和之后的叶片和根中获得的荷尔蒙曲线,得出结论是,C.Sativa缺乏有效的激素变化解释了对这种易感物种的PC缺乏防御反应。

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  • 来源
    《Journal of Plant Physiology》 |2019年第2019期|共9页
  • 作者单位

    Univ Extremadura Inst Dehesa Res INDEHESA Ingn Forestal &

    Medio Nat Ave Virgen Puerto 2 Plasencia 10600 Spain;

    Univ Cordoba Escuela Tecn Super Ingn Agron &

    Montes Carretera Nacl 4 Km 396 Cordoba 14014 Spain;

    Univ Jaume 1 Escuela Super Tecnol &

    Ciencias Expt Ave Vicent Sos Baynat S-N Castellon De La Plana 12071 Spain;

    Univ Jaume 1 Escuela Super Tecnol &

    Ciencias Expt Ave Vicent Sos Baynat S-N Castellon De La Plana 12071 Spain;

    Univ Extremadura Inst Dehesa Res INDEHESA Ingn Forestal &

    Medio Nat Ave Virgen Puerto 2 Plasencia 10600 Spain;

    Univ Extremadura IPROCAR Res Inst TECAL Res Grp Ave Ciencias S-N Caceres 10003 Spain;

    Univ Aveiro Ctr Environm &

    Marine Studies CESAM Dept Biol Campus Univ Santiago P-3810193 Aveiro Portugal;

    Univ Extremadura Inst Dehesa Res INDEHESA Ingn Forestal &

    Medio Nat Ave Virgen Puerto 2 Plasencia 10600 Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Hormonal profiling; Jasmonates; Stress signalling; Oomycetes; Induced defence; Crosstalk;

    机译:荷尔蒙分析;茉莉酸盐;应激信号;oomycetes;诱导防御;串扰;

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