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首页> 外文期刊>Plant Tissue Culture and Biotechnology >Dual Phase Regeneration System for Mass Propagation of Cymbidium aloifolium (L.) Sw.: A High Value Medicinal Orchid
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Dual Phase Regeneration System for Mass Propagation of Cymbidium aloifolium (L.) Sw.: A High Value Medicinal Orchid

机译:大花C兰(L.)Sw。的双相再生系统:一种高价值的药用兰花。

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Efficient micropropagation protocol was established in Cymbidium aloifolium through induction of secondary (2°) protocorms from primary (1°) protocorms, shoot buds (SBs) and protocorm-like bodies (PLBs) from pseudo-stem segments of in vitro raised seedlings. Neo-formation of 2° protocorms from 1° protocorms was obtained in liquid and agar-solidified Phytamax (PM) medium with NAA, 2,4-D, BAP and Kn at different concentrations and combinations. The highest number of 2° protocorms was induced in liquid PM medium (9.76 ± 0.88/1° protocorm) amended with 2.0 mg/l BAP + 1.0 mg/l 2,4- D. Although protocorms proliferated profusely in liquid medium, hyperhydricity was observed after prolonged culture. Both SBs and PLBs were induced from pseudo-stem segments on agar gelled PM medium and the mode of differentiation was dependent upon specific PGRs concentrations. The maximum number of SBs (5.80 ± 2.59/explant) was recorded in BAP and NAA at 1.0 mg/l each, while the maximum number of PLBs (7.20 ± 3.22/explant) were induced in 2.0 mg/l BAP and NAA each. Well developed root systems were induced SBs and PLBs on transferring to half-strength PM medium fortified with 0.5 mg/l IAA. The rooted plantlets were transferred to the greenhouse with 95% survival.
机译:通过诱导来自初级(1°)原球茎的次生(2°)原球茎,芽(SBs)和来自体外育苗的假茎节的原球茎样体(PLB)诱导了在大花ym兰中建立有效的微繁殖方案。在液体和琼脂固化的Phytamax(PM)培养基中,分别以NAA,2,4-D,BAP和Kn以不同的浓度和组合获得了从1°原球茎新形成的2°原球茎。在液体PM培养基(9.76±0.88 / 1°原球茎)中,经2.0 mg / l BAP + 1.0 mg / l 2,4- D修正后,诱导出最高数量的2°原球茎。尽管原球茎在液体培养基中大量增殖,但高水合长时间培养后观察到。 SB和PLB都是从琼脂凝胶PM培养基上的假茎段诱导而来的,分化方式取决于特定PGR的浓度。在BAP和NAA中记录的最大SBs数量(5.80±2.59 / explant)分别为1.0 mg / l,而在2.0 mg / l BAP和NAA中记录的最大PLB数量(7.20±3.22 / explant)。发达的根系在转移到以0.5 mg / l IAA强化的半强度PM培养基上时,被诱导产生SB和PLB。将生根的小植株转移到具有95%存活率的温室中。

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