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卷缘桩菇菌根减轻了盐敏感杂交杨树(Populusxcanescens)对NaCl胁迫的响应。

Paxillus involutus mycorrhiza attenuate NaCl-stress responses in the salt-sensitive hybrid poplar Populusxcanescens.

作者信息

Langenfeld-Heyser R, Gao J, Ducic T, Tachd Ph, Lu C F, Fritz E, Gafur A, Polle A

机构信息

Forstbotanisches Institut, Georg-August Universität Göttingen, Büsgenweg 2, 37077, Göttingen, Germany.

出版信息

Mycorrhiza. 2007 Mar;17(2):121-131. doi: 10.1007/s00572-006-0084-3. Epub 2006 Nov 18.

Abstract

In order to characterise the effect of ectomycorrhiza on Na+-responses of the salt-sensitive poplar hybrid Populus x canescens, growth and stress responses of Paxillus involutus (strain MAJ) were tested in liquid cultures in the presence of 20 to 500 mM NaCl, and the effects of mycorrhization on mineral nutrient accumulation and oxidative stress were characterised in mycorrhizal and non-mycorrhizal poplar seedlings exposed to 150 mM NaCl. Paxillus involutus was salt tolerant, showing biomass increases in media containing up to 500 mM NaCl after 4 weeks growth. Mycorrhizal mantle formation on poplar roots was not affected by 150 mM NaCl. Whole plant performance was positively affected by the fungus because total biomass was greater and leaves accumulated less Na+ than non-mycorrhizal plants. Energy dispersive X-ray microanalysis using transmission electron microscopy analysis of the influence of mycorrhization on the subcellular localisation of Na+ and Cl- in roots showed that the hyphal mantle did not diminish salt accumulation in root cell walls, indicating that mycorrhization did not provide a physical barrier against excess salinity. In the absence of salt stress, mycorrhizal poplar roots contained higher Na+ and Cl- concentrations than non-mycorrhizal poplar roots. Paxillus involutus hyphae produced H2O2 in the mantle but not in the Hartig net or in pure culture. Salt exposure resulted in H2O2 formation in cortical cells of both non-mycorrhizal and mycorrhizal poplar and stimulated peroxidase but not superoxide dismutase activities. This shows that mature ectomycorrhiza was unable to suppress salt-induced oxidative stress. Element analyses suggest that improved performance of mycorrhizal poplar under salt stress may result from diminished xylem loading of Na+ and increased supply with K+.

摘要

为了表征外生菌根对盐敏感杨树杂种毛果杨(Populus x canescens)钠响应的影响,在含有20至500 mM NaCl的液体培养物中测试了卷缘桩菇(菌株MAJ)的生长和应激反应,并在暴露于150 mM NaCl的菌根和非菌根杨树幼苗中表征了菌根化对矿质营养积累和氧化应激的影响。卷缘桩菇耐盐,在含有高达500 mM NaCl的培养基中生长4周后生物量增加。150 mM NaCl不影响杨树根上菌根套的形成。真菌对整株植物的表现有积极影响,因为总生物量更大,且叶片比非菌根植物积累的Na+更少。使用透射电子显微镜对菌根化对根中Na+和Cl-亚细胞定位影响的能量色散X射线微分析表明,菌根套并未减少根细胞壁中的盐分积累,这表明菌根化并未提供针对过量盐分的物理屏障。在没有盐胁迫的情况下,菌根杨树根中的Na+和Cl-浓度高于非菌根杨树根。卷缘桩菇菌丝在菌根套中产生H2O2,但在哈蒂氏网或纯培养物中不产生。盐胁迫导致非菌根和菌根杨树的皮层细胞中形成H2O2,并刺激过氧化物酶活性,但不刺激超氧化物歧化酶活性。这表明成熟的外生菌根无法抑制盐诱导的氧化应激。元素分析表明,盐胁迫下菌根杨树表现改善可能是由于Na+的木质部装载减少和K+供应增加。

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