首页> 外文期刊>Scientia horticulturae >In vitro seed germination and seedling growth of an endangered epiphytic orchid, Dendrobium officinale, endemic to China using mycorrhizal fungi (Tulasnella sp.).
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In vitro seed germination and seedling growth of an endangered epiphytic orchid, Dendrobium officinale, endemic to China using mycorrhizal fungi (Tulasnella sp.).

机译:使用菌根真菌(Tulasnella sp。)在中国特有的濒危附生兰花石D石vitro的体外种子发芽和幼苗生长。

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To date, tropical orchids appear to commonly associate with mycorrhizal fungi assignable to Tulasnella (Basidiomycota) for their seed germination and developmental needs in situ. In this study, two Tulasnella strains (JC-02 and JC-05) isolated from roots of an endangered species, Dendrobium nobile Lindl (Orchidaceae) collected from Yunnan province in China, were identified using the nuclear ribosomal internal transcribed spacer (ITS) and 5.8S rDNA sequences. Seed germination and plant growth were evaluated up to 11 weeks and 7 weeks after interaction with Tulasnella fungi, respectively. The results revealed that the two isolates could promote seeds germination up to stage 5 after sowing for 11 weeks, and the rates of germination were 98.47% and 99.05%, respectively, higher than that of control (81.05%). Without fungi, seed development was arrested at stage 2. After inoculating Tulasnella isolate to seedlings for 49 days, it was found that mycelium formed pelotons in the cortical cells of roots in the form of intact and degenerate pelotons. Significant differences were detected between the control group and the experimental group treated with Tulasnella isolates in dry weight and fresh weight of plants respectively. The study firstly demonstrated that two different strains of Tulasnella vary in their ability to facilitate germination/development of D. officinale in vitro.
机译:迄今为止,热带兰花似乎通常与根瘤菌(Basidiomycota)的菌根真菌有关,因为它们的种子萌发和原位发育需要。在这项研究中,使用核糖体内部转录间隔区(ITS)和从中国云南省采集的濒危物种石D石Lind兰(兰科)的根中分离出了两个Tulasnella菌株(JC-02和JC-05)。 5.8S rDNA序列。与Tulasnella真菌相互作用后分别评估种子发芽和植物生长长达11周和7周。结果表明,两种分离株在播种11周后均可促进种子萌发至5期,发芽率分别为98.47%和99.05%,高于对照的发芽率(81.05%)。如果没有真菌,种子发育将在第2阶段被阻止。将杜兰菌分离株接种到幼苗中49天后,发现菌丝体在根皮层细胞中以完整和简并的果皮形式形成了果皮。对照组和用杜氏菌分离株处理的实验组之间在植物的干重和鲜重上有显着差异。该研究首先证明了两种不同的杜氏藻菌株在体外促进D.officinale萌发/发育的能力各不相同。

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