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Diversity of morphology and function in arbuscular mycorrhizal symbioses in Brachypodium distachyon

机译:短枝曲霉丛枝菌根共生中形态和功能的多样性

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摘要

Brachypodium distachyon is a grass species that serves as a useful model for wheat and also for many of the grass species proposed as feedstocks for bioenergy production. Here, we monitored B. distachyon symbioses with five different arbuscular mycorrhizal (AM) fungi and identified symbioses that vary functionally with respect to plant performance. Three symbioses promoted significant increases in shoot phosphorus (P) content and shoot growth of Brachypodium, while two associations were neutral. The Brachypodium/Glomus candidum symbiosis showed a classic ‘Paris-type’ morphology. In the other four AM symbioses, hyphal growth was exclusively intracellular and linear; hyphal coils were not observed and arbuscules were abundant. Expression of the Brachypodium ortholog of the symbiosis-specific phosphate (Pi) transporter MtPT4 did not differ significantly in these five interactions indicating that the lack of apparent functionality did not result from a failure to express this gene or several other AM symbiosis-associated genes. Analysis of the expression patterns of the complete PHT1 Pi transporter gene family and AMT2 gene family in B. distachyon/G. intraradices mycorrhizal roots identified additional family members induced during symbiosis and again, transcript levels were similar in the different Brachypodium AM symbioses. This initial morphological, molecular and functional characterization provides a framework for future studies of functional diversity in AM symbiosis in B. distachyon.
机译:短枝曲霉是一种草种,可作为小麦的有用模型,也可作为许多提议用作生物能源生产原料的草种的模型。在这里,我们用5种不同的丛枝菌根(AM)真菌监测了B. distachyon共生菌,并确定了随植物性能而异的共生菌。 3个共生酶促进了腕足菜的茎磷(P)含量和茎杆生长的显着增加,而两个关联是中性的。 Brachypodium / Glomus candidum共生表现出经典的“巴黎型”形态。在其他四个AM共生体中,菌丝生长仅在细胞内呈线性。没有观察到菌丝盘旋,丛生丰富。共生特异性磷酸(Pi)转运蛋白MtPT4的腕足动物直系同源基因的表达在这五种相互作用中没有显着差异,表明缺乏明显的功能并不是由于未能表达该基因或其他与AM共生相关的基因。 B. distachyon / G中完整的PHT1 Pi转运蛋白基因家族和AMT2基因家族的表达模式分析。根际内的菌根根确定了在共生过程中诱导的其他家族成员,并且在不同的Brachypodium AM共生酶中,转录水平相似。这种初始的形态,分子和功能特征为以后的B. distachyon AM共生中的功能多样性研究提供了框架。

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  • 来源
    《Planta》 |2012年第3期|p.851-865|共15页
  • 作者单位

    Boyce Thompson Institute for Plant Research, Tower Road, Ithaca, NY, 14853, USA;

    Boyce Thompson Institute for Plant Research, Tower Road, Ithaca, NY, 14853, USA;

    Boyce Thompson Institute for Plant Research, Tower Road, Ithaca, NY, 14853, USA;

    Boyce Thompson Institute for Plant Research, Tower Road, Ithaca, NY, 14853, USA;

    Boyce Thompson Institute for Plant Research, Tower Road, Ithaca, NY, 14853, USA;

    Boyce Thompson Institute for Plant Research, Tower Road, Ithaca, NY, 14853, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Roots; Phosphate; ‘Paris-type’; Fungi; Tillers; Biomass;

    机译:根;磷酸盐;“巴黎型”;真菌;分s;生物质;

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