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          當(dāng)前位置 > 首頁(yè) > 技術(shù)文章 > 質(zhì)子流(H+)作為叢枝菌根(AM)真菌芽管菌絲發(fā)育的標(biāo)簽

          質(zhì)子流(H+)作為叢枝菌根(AM)真菌芽管菌絲發(fā)育的標(biāo)簽

          瀏覽次數(shù):3222 發(fā)布日期:2009-2-25  來(lái)源:本站 僅供參考,謝絕轉(zhuǎn)載,否則責(zé)任自負(fù)

          2008年4月,F(xiàn)eijá等科學(xué)家使用“非損傷微測(cè)技術(shù)(the ion-selective vibrating probe system)”研究了芽管菌絲發(fā)育時(shí)期菌絲中的H+流,發(fā)現(xiàn)胞外的pH在宿主和真菌間的離子交換和AM真菌生長(zhǎng)中起到重要作用,菌絲的H+流振蕩與芽管菌絲的生長(zhǎng)存在相互關(guān)系,AM菌絲的H+流和生長(zhǎng)被宿主根系分泌物(RE)所調(diào)控。菌絲H+流空間和時(shí)間的轉(zhuǎn)變被營(yíng)養(yǎng)利用狀況所調(diào)控,也有可能被pH信號(hào)所誘導(dǎo)。

          此項(xiàng)工作對(duì)于認(rèn)識(shí)真菌的生長(zhǎng)發(fā)育以及響應(yīng)外源物質(zhì)的機(jī)理提供了全新的思路,也揭示了菌絲對(duì)P和Suc利用的細(xì)胞生物學(xué)生理學(xué)機(jī)制。
           

          KEYWORDS
          arbuscular mycorrhiza • Gigaspora margarita • H+-specific vibrating probe • pH signatures • presymbiosis

          ABSTRACT
          • Ion dynamics are important for cell nutrition and growth in fungi and plants. Here, the focus is on the relationship between the hyphal H+ fluxes and the control of presymbiotic growth and host recognition by arbuscular mycorrhizal (AM) fungi.

          • Fluxes of H+ around azygopores and along lateral hyphae of Gigaspora margarita during presymbiotic growth, and their regulation by phosphate (P) and sucrose (Suc), were analyzed with an H+-specific vibrating probe. Changes in hyphal H+ fluxes were followed after induction by root exudates (RE) or by the presence Trifolium repens roots.

          • Differential sensitivity to P-type ATPase inhibitors (orthovanadate or erythrosin B) suggests an asymmetric distribution or activation of H+-pump isoforms along the hyphae of the AM fungi. Concentration of P and Suc affected the hyphal H+ fluxes and growth rate. However, further increases in H+ efflux and growth rate were observed when the fungus was growing close to clover roots or pretreated with RE.

          • The H+ flux data correlate with those from polarized hyphal growth analyses, suggesting that spatial and temporal alterations of the hyphal H+fluxes are regulated by nutrient availability and might underlie a pH signaling elicitation by host RE during the early events of the AM symbiosis.

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