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Optimizing micropropagation of drought resistant Pyrus boissieriana Buhse

机译:优化抗旱梨Pyrus boissieriana Buhse的微繁

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摘要

The present study concentrated on introducing a micropropagation protocol for a drought resistant genotype from Pyrus boissieriana, which is the second most naturally widespread pear species in Iran with proper physiological and medicinal properties. Proliferating microshoot cultures were obtained by placing nodal segments on MS medium supplemented with BAP and IBA or NAA. The highest number of shoots (27 shoots per explant) were obtained with 1.5 mg l−1 BAP and 0.05 mg l−1 IBA, but this combination did not produce shoots of desirable length (>1.7 cm). Combination of 1.75 mg l−1 BAP and 0.07 mg l−1 IBA was the best for the shoot multiplication in P. boissieriana with a sufficient number of shoot production (22.33 shoots per explant) and relatively more appropriate shoot length. The larger and greenish leaves were obtained when PG was added to the best multiplication treatment. Microshoot elongation was carried out in 1/2 and 1/4 MS medium containing 50–100 mg l−1 PG with different concentrations of IBA or NAA at intervals of 30–60 days. Significant increase in shoot length was detected after 45–60 days of culture in the presence of PG. The highest shoot length (8 cm) was recorded on 1/2 MS medium supplemented with 0.5 mg l−1 IBA and 100 mg l−1 PG. GA3 negatively affected number and length of shoots and generally caused generation of red leaves. The highest percentage of root induction (100%) and root length (9 cm) were obtained on 1/6 strength MS medium supplemented with 0.005 mg l−1 IBA. All plantlets were hardened when transferred to ex vitro conditions through a period of 25–30 days. The results suggest axillary shoot proliferation of P. boissieriana could successfully be employed for propagation of candidate drought resistant seedling.
机译:本研究的重点是针对梨属植物Pyrus boissieriana的抗旱基因型引入微繁殖方案,Pyrus boissieriana是伊朗第二大自然分布的梨种,具有适当的生理和医学特性。通过将节段放置在补充了BAP和IBA或NAA的MS培养基上来获得增殖的微芽培养物。使用1.5 mg l -1 BAP和0.05 mg l -1 IBA可获得最高的芽数(每个外植体27芽),但这种组合不会产生理想的长度(> 1.7 cm)。 1.75 mg l -1 BAP和0.07 mg l -1 IBA的组合最适合于博氏假单胞菌的芽繁殖,并具有足够的芽产生量(22.33芽)每个外植体)和相对更合适的苗长。将PG加入最佳繁殖处理后,可获得较大的绿色叶片。在含有50–100 mg l -1 PG和不同浓度的IBA或NAA的1/2和1/4 MS介质中进行微射伸长率,间隔30–60天。在PG存在下培养45-60天后,检测到芽长显着增加。在补充有0.5 mg l -1 IBA和100​​ mg l -1 PG的1/2 MS培养基上记录了最高的芽长(8 cm)。 GA3对芽的数量和长度有负面影响,并且通常会导致红叶的产生。在补充有0.005 mg l -1 IBA的1/6强度MS培养基上获得最高的根诱导百分比(100%)和根长度(9cm)。在转移至离体条件下25至30天后,所有小植株均变硬。结果表明,伯氏假单胞菌的腋生芽增殖可以成功地用于候选抗旱苗的繁殖。

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