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Acidic soil inhibits the functionality of arbuscular mycorrhizal fungi by reducing arbuscule formation in tomato roots

机译:酸性土壤通过减少番茄根中的仲裁形成来抑制丛枝菌根真菌的功能

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摘要

Acidic soil is widely distributed in terrestrial ecosystems, which causes large challenges to crop production. Arbuscular mycorrhizal fungi (AMF) can increase plant tolerance to acidic soil; however, the effects of acidic soil on the functionality of AMF and arbuscule formation are far from being thoroughly understood. In this study, we inoculated tomato plants with Rhizophagus irregularis at pH 4.5 (original acidic soil) or pH 6.5 (limed soil), and monitored the mycorrhizal colonization, alkaline phosphatase (ALP) activity, and expression of SlPTs (which encode phosphate transporters) and EXO70s (which encode subunits of exocysts) in the roots. We aimed to characterize the arbuscule development in colonized roots in response to acidic soil and to investigate how acidic soil affects the functionality of AMF. Our results revealed that acidic soil sharply reduced arbuscule abundance by approximately 90%, and greatly impeded arbuscule development such that no mature arbuscules were observed. The negative effect of acidic soil on arbuscule formation was supported by EXO70A1-like expression. The functionality of AMF, e.g., ALP activity in arbuscules and the expression of SlPT4 and SlPT5, was simultaneously greatly inhibited in acidic soil in the same manner as that of arbuscule formation. The close relationship between the functionality of AMF and arbuscule abundance in this study indicates that acidic soil strongly inhibits AMF function mainly via a reduction in arbuscule formation. Considering the coupling of arbuscule formation and periarbuscular membrane construction, the fine-tuning of both processes in response to acidic soil merits additional in-depth investigations.
机译:酸性土壤广泛分布在陆地生态系统中,这导致作物生产巨大挑战。丛枝菌根真菌(AMF)可以增加酸性土壤的耐植物耐受性;然而,酸性土壤对AMF和仲裁形成功能的影响远远彻底了解。在这项研究中,我们在pH 4.5(原始酸性土壤)或pH6.5(绞死土)中接种了番茄植物,并监测了菌根定植,碱性磷酸酶(ALP)活性和SLPT的表达(编码磷酸盐转运蛋白)和EXO70s(在根中编码eNOCYSTS的亚基)。我们的目标是在酸性土壤中表征殖民枯萎病中的仲裁发育,并调查如何酸性土壤影响AMF的功能。我们的研究结果表明,酸性土壤大大降低了枝条大约90%,并且大大阻碍了仲裁发育,使得不观察到成熟的仲裁。 exo70a1样表达支持酸性土壤对酸乙酸层的负面影响。 AMF的功能,例如,在仲裁中的ALP活性和SLPT4和SLPT5的表达,以与仲裁形成相同的方式在酸性土壤中同时受到极大地抑制。本研究中AMF和仲裁丰度的功能之间的密切关系表明,酸性土体主要通过减少仲裁形成主要抑制AMF函数。考虑到仲裁形成和围式膜结构的偶联,两种过程的微调响应于酸性土壤的含量额外的深入研究。

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