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首页> 外文期刊>Plant physiology >Phosphate Treatment Strongly Inhibits New Arbuscule Development But Not the Maintenance of Arbuscule in Mycorrhizal Rice Roots
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Phosphate Treatment Strongly Inhibits New Arbuscule Development But Not the Maintenance of Arbuscule in Mycorrhizal Rice Roots

机译:磷酸盐处理强烈抑制菌根的根中新的丛枝发育,但不能维持丛枝

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Phosphorus (P) is a crucial nutrient for plant growth, but its availability to roots is limited in soil. Arbuscular mycorrhizal (AM) symbiosis is a promising strategy for improving plant P acquisition. However, P fertilizer reduces fungal colonization (P inhibition) and compromises mycorrhizal P uptake, warranting studies on the mechanistic basis of P inhibition. In this study, early morphological changes in P inhibition were identified in rice (Oryza sativa) using fungal cell wall staining and live-cell imaging of plant membranes that were associated with arbuscule life cycles. Arbuscule density decreased, and aberrant hyphal branching was observed in roots at 5 h after P treatment. Although new arbuscule development was severely inhibited, preformed arbuscules remained intact and longevity remained constant. P inhibition was accelerated in the rice pt11-1 mutant, which lacks P uptake from arbuscule branches, suggesting that mature arbuscules are stabilized by the symbiotic P transporter under high P condition. Moreover, P treatment led to increases in the number of vesicles, in which lipid droplets accumulated and then decreased within a few days. The development of new arbuscules resumed within by 2 d. Our data established that P strongly and temporarily inhibits new arbuscule development, but not intraradical accommodation of AM fungi.
机译:磷是植物生长的重要营养素,但其在土壤中对根的可用性有限。丛枝菌根(AM)共生是改善植物P习性的一种有前途的策略。然而,磷肥减少了真菌定植(磷抑制)并损害了菌根磷的吸收,因此有必要对磷抑制的机理进行研究。在这项研究中,利用真菌细胞壁染色和与丛枝生命周期相关的植物膜活细胞成像,鉴定了水稻(Oryza sativa)中P抑制的早期形态学变化。磷处理后5 h,根中丛枝密度降低,并出现异常的菌丝分支。尽管新的丛枝发育受到严重抑制,但预制的丛枝仍保持完整,寿命也保持不变。水稻pt11-1突变体对磷的抑制作用得以加速,而该突变体缺乏从丛枝分支吸收磷的现象,这表明成熟的丛枝在高磷条件下被共生P转运蛋白稳定。此外,P处理导致囊泡数量增加,其中脂质滴在几天之内积累然后减少。在2天之内恢复了新树丛的开发。我们的数据表明,P能够强烈和暂时抑制新的丛枝发育,但不能抑制AM真菌的自由基调节。

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