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The effects of permanent magnetic fields on in vitro growth of Phalaenopsis plantlets

机译:永久磁场对蝴蝶兰幼苗体外生长的影响

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This is the first study to address the effects of permanent magnetic fields (MFs) on the in vitro growth of Phalaenopsis plantlets. Uniform Phalaenopsis Gallant Beau 'George Vazquez' plantlets, each with two leaves and two roots, and each approx. 2 cm in height, were excised from a mass of protocorm-like bodies (PLBs) after 3 months of sub-culture. The plantlets (n = 21) were cultured in a film culture system ('Miracle Pack'(R)) under MFs of different intensity: 0.10, 0.15, or 0.20 Tesla (T). Each culture vessel at each MF intensity was cultured on the North (N) or South (S) poles of specialised magnets. The 0.15 T ME was also applied for different lengths of time (1, 2, or 3 months) at both the N and S poles. Control plantlets were simply exposed to the naturally-occurring geo-MF, and not to any induced ME All MFs tested had a positive influence on shoot and root development, but did not influence chlorophyll contents. Among all the intensities and polarities of MF tested, 0.10 T - S had the greatest positive influence on specific growth parameters of Phalaenopsis plantlets such as maximum leaf length, root length, fresh weight and dry weight of shoots and roots, and leaf width. Constant exposure to a MF of 0.15 T for 3 months, at either the N or S poles, significantly enhanced the development of plantlets. The results obtained in this study indicate that MFs can have a positive effect on the efficiency and quality of clonal Phalaenopsis plantlets during commercial production. The MFs from commercially-produced permanent magnets enhanced Phalaenopsis plantlet growth significantly and can be used as a novel means to study the effect of MFs on plant growth and development, or to control morphogenesis in limited spaces such as space stations.
机译:这是第一个研究永久磁场(MFs)对蝴蝶兰幼苗体外生长的影响的研究。均匀的蝴蝶兰Gallant Beau'George Vazquez'幼苗,每株有两片叶子和两根,每株大约。继代培养3个月后,从大量的原球茎状体(PLB)中切除了2厘米高。在不同强度的MF:0.10、0.15或0.20特斯拉(T)的MF下,在膜培养系统(“ Miracle Pack”)中培养小植株(n = 21)。在每种MF强度下的每个培养皿均在专用磁体的北极(N)或南极(S)上培养。 0.15 T ME也分别在N和S极应用了不同的时间长度(1、2或3个月)。对照小苗仅暴露于天然存在的geo-MF,而不暴露于任何诱导的ME,所有测试的MF对芽和根的发育均具有积极影响,但不影响叶绿素含量。在所测MF的所有强度和极性中,0.10 T-S对蝴蝶兰小植株的具体生长参数具有最大的积极影响,例如最大叶长,根长,茎和根的鲜重和干重以及叶宽。在N极或S极持续接触0.15 T的MF 3个月,这显着增强了幼苗的发育。在这项研究中获得的结果表明,MFs在商业生产过程中可以对蝴蝶兰无性系苗的效率和质量产生积极的影响。商业生产的永磁体产生的MF显着增强了蝴蝶兰植物的小苗生长,可以用作研究MF对植物生长和发育的影响或控制有限空间(例如空间站)中形态发生的新方法。

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