首页> 外文学位 >Isolation, storage, and use of ericoid mycorrhizal fungi for improved acclimatization and subsequent growth of micropropagated Pieris floribunda.
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Isolation, storage, and use of ericoid mycorrhizal fungi for improved acclimatization and subsequent growth of micropropagated Pieris floribunda.

机译:分离,贮藏和使用类固醇菌根真菌来改善微繁殖的皮氏海绵状紫菜的适应性和随后的生长。

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Cleared and stained hair roots of wild-collected plants of Pieris floribunda, growing in a naturally occurring stand in the Blue Ridge Mountains of North Carolina, exhibited typical ericoid mycorrhizae. Two fungi (B3 and C1) were isolated from mycorrhizae and grown in axenic culture on an artificial medium. Only C1 established mycorrhizae with roots of seedlings of P. floribunda. Based on colony morphology and sporulation characteristics in axenic culture, isolate C1 was identified tentatively as a member of the genus, Oidiodendron.; Lyophilization was effective in maintaining viability of select, nonsporulating isolates of Hymenoscyphus ericae and sporulating isolates of Oidiodendron spp. These fungi remained viable up to 1 year following lyophilization when stored at {dollar}rm {lcub}-{rcub}80spcirc C{dollar} under normal atmospheric gases. Similarly, two isolates of H. ericae cultured on a peat-based medium also survived lyophilization and subsequent storage. Storage at {dollar}rm 4spcirc C{dollar} or {dollar}rm {lcub}-{rcub}20spcirc C{dollar} resulted in the greatest long-term viability. Room-temperature storage {dollar}rm (23spcirc C){dollar} resulted in rapid loss of viability of one of two isolates of H. ericae. Both isolates of H. ericae formed typical ericoid mycorrhizae with roots of seedlings of P. floribunda following rehydration and revival in vitro. Mycorrhizal seedlings exhibited increased growth over noninoculated controls, indicating the fungi retained both infective and functional characteristics of mycorrhizal fungi throughout lyophilization and long-term storage.; Oidiodendron griseum, O. maius, and another Oidiodendron sp. caused different severities of shoot necrosis on microshoots of P. floribunda. Inoculation of micropropagated plantlets with isolates of H. ericae benefitted initial shoot and root development on agar-solidified Woody Plant Medium supplemented with sucrose and covered by a layer of 1 peat: 1 vermiculite (v/v).; Acclimatization of plantlets of P. floribunda to greenhouse conditions following in vitro inoculation with isolates of H. ericae (HE or DA) resulted in improved survival (42%) over noninoculated plantlets (16%). Microshoots of P. floribunda inoculated with isolates of H. ericae produced significantly greater shoot growth than noninoculated microshoots after in vitro growth for 1 month. However, no benefits were realized from mycorrhizal inoculation of plantlets after 3 months growth in a greenhouse.
机译:在北卡罗来纳州蓝岭山脉的天然林分中生长的野生皮埃里斯植物的清除和染色后的发根,表现出典型的类胡萝卜素菌根。从菌根中分离出两种真菌(B3和C1),并在人工培养基上的无菌培养中生长。只有C1建立了菌根,其菌根为P. floribunda。根据菌丛的形态和孢子形成特性,初步确定分离株C1为Oidiodendron属。冻干有效地维持了选择的,非孢子的弧菌的分离株和茄形孢子的孢子分离株的活力。这些真菌在冻干后,在正常大气气氛下储存在80美元的C {dollar}-{rcub}-{rcub}中仍能存活。类似地,在基于泥炭的培养基上培养的两个H. ericae分离株也幸存了冻干和随后的保存。储存在{dol} rm 4spcirc C {dollar}或{dol} rm {lcub}-{rcub} 20spcirc C {dollar}的情况下,最大的长期生存能力。室温贮藏{rm} rm(23spcirc C){美元}导致H. ericae两种分离株之一的活力迅速丧失。在体外补液和复壮后,两个分离株的H. ericae形成了典型的类胡萝卜素菌根,其菌根为P. floribunda的幼苗。菌根幼苗比未接种的对照表现出增加的生长,表明真菌在冻干和长期保存过程中保留了菌根真菌的感染性和功能性特征。 Oidiodendron griseum,O。maius和另一个Oidiodendron sp。引起的景天不同程度的芽坏死。微囊繁殖株的接种,用大肠埃希菌的分离株有利于在琼脂固化的木本植物培养基上补充蔗糖并覆盖一层1泥炭:1(石(v / v)。在用大肠埃希菌分离株(HE或DA)进行体外接种后,将多花假单胞菌的幼苗适应温室条件后,其存活率(42%)要高于未接种的幼苗(16%)。体外培养1个月后,接种了大肠螺旋藻的分离株后,大花假单胞菌的微芽产生的芽生长明显大于未接种的微芽。但是,在温室中生长3个月后,菌根接种小苗并没有带来任何好处。

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