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Effects of attack of saprobic fungi on twig litter decomposition by endophytic fungi

机译:腐生真菌侵袭对内生真菌分解幼枝凋落物的影响

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摘要

Endophytic fungi of healthy twig tissues act as dominant primary colonizers of twig litters and are exposed to the attacks of saprobic secondary colonizers. In the present study, we examined the effect of interspecific interactions on the decay rate of twigs in laboratory experiments using two endophytic ascomycetes (Phomopsis sp. and Xylaria sp.) and two saprobic basidiomycetes (Mycena polygramma and Phanetochaete filamentosa) on twigs of Japanese beech (Fagus crenata) as a model system. Both endophytes were defensive against two saprobes on 2% malt agar, and were not replaced by the saprobes in the twigs during the incubation period. However, inoculation of the saprobes reduced the mass loss of twig components (acid-unhy-drolyzable residue (AUR), holocellulose, soluble carbohydrate, and polyphenol). Especially when the twigs previously inoculated with Xylaria sp. or Phomopsis sp. were successively inoculated with M. polygramma the net weight of AUR increased, which was probably due to the synthesized melanin in hyphae of the endophytes. Our findings indicate that interspecific interactions between endophytic and saprobic fungi do affect the total mass of humic substances produced during the litter decay process.
机译:健康的树枝组织的内生真菌可作为树枝凋落物的主要主要定居者,并暴露于腐生性次生殖民者的攻击下。在本研究中,我们在日本山毛榉小枝上使用两种内生子囊菌(Phomopsis sp。和Xylaria sp。)和两种腐生担子菌(Mycena polygramma和Phanetochaetefilosa)在实验室实验中检验了种间相互作用对小枝衰变率的影响。 (Fagus crenata)作为模型系统。两种内生菌均对2%麦芽琼脂上的两个腐殖质具有防御力,并且在孵育期间未被嫩枝中的腐殖质替代。然而,腐殖质的接种减少了树枝成分(酸不可水解的残留物(AUR),全纤维素,可溶性碳水化合物和多酚)的质量损失。特别是当树枝先前接种了Xylaria sp。或Phomopsis sp。先后用多形分支杆菌接种AUR的净重增加,这可能是由于内生菌丝的菌丝中合成了黑色素所致。我们的发现表明,内生真菌和腐生真菌之间的种间相互作用确实会影响凋落物腐烂过程中产生的腐殖质的总量。

著录项

  • 来源
    《Ecological research》 |2009年第5期|1067-1073|共7页
  • 作者单位

    Laboratory of Forest Ecology,Division of Environmental Science and Technology,Graduate School of Agriculture,Kyoto University, Kyoto 606-8502, Japan Totoro Fund. Kotesashi 4-20-2-101, Tokorozawa,Saitama 359-1141, Japan;

    Laboratory of Forest Ecology,Division of Environmental Science and Technology,Graduate School of Agriculture,Kyoto University, Kyoto 606-8502, Japan;

    Laboratory of Forest Ecology,Division of Environmental Science and Technology,Graduate School of Agriculture,Kyoto University, Kyoto 606-8502, Japan;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    acid-unhydrolyzable residue (AUR); beech; humus accumulation; interspecific interaction; melanin;

    机译:酸不可水解残基(AUR);山毛榉腐殖质积累;种间相互作用黑色素;

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