首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Induced polyploidization increases 20-hydroxyecdysone content, in vitro photoautotrophic growth, and ex vitro biomass accumulation in Pfaffia glomerata (Spreng.) Pedersen
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Induced polyploidization increases 20-hydroxyecdysone content, in vitro photoautotrophic growth, and ex vitro biomass accumulation in Pfaffia glomerata (Spreng.) Pedersen

机译:诱导的多倍化增加了Pfaffia glomerata(Spreng。)Pedersen中20-羟基蜕皮酮的含量,体外光合自养生长和离体生物量积累

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The present study aimed to verify the effects of induced polyploidization on Pfaffia glomerata regarding its 20-hydroxyecdysone (20E) production both in vitro and under greenhouse conditions, its in vitro photoautotrophic potential, and its ex vitro biomass accumulation and photosynthetic performance. Synthetic polyploidization efficiently produced individuals with increased in vitro photoautotrophic potential and ex vitro biomass accumulation, although photosynthetic rates per leaf area did not vary between diploids and tetraploids. Among the five tetraploids tested (P28, P60, P68, P74, and P75), P28 showed significantly increased biomass both in vitro and ex vitro when compared with diploid plants, whereas the other tetraploids did not differ significantly from the diploids in terms of biomass accumulation. Although photosynthetic rates per unit leaf area remained constant among all the plants tested, P28 showed a significantly greater total leaf area, which may have resulted in an increase in net photosynthesis on a whole-plant basis. Under greenhouse conditions, the 20E content in the tetraploid P28 was 31% higher than that in diploid plants, and the final 20E mass per plant produced by P28 ex vitro was approximately twice that produced by diploid plants. Accumulation of 20E in vitro did not follow the same pattern observed among the plants ex vitro; instead, greater accumulation was observed in diploid plants. The induction of polyploidy in P. glomerata appears to be a promising strategy for producing plants with higher biomass accumulation and 20E production ex vitro, in addition to its higher in vitro photoautotrophic potential.
机译:本研究旨在验证诱导多倍体化对Pfaffia glomerata的影响,涉及其在体外和在温室条件下的20-羟基蜕皮激素(20E)的产生,其体外光合自养能力及其离体生物量的积累和光合性能。尽管二倍体和四倍体之间每叶面积的光合速率没有变化,但合成多倍体化有效地产生了具有增加的体外光合自养潜力和离体生物量积累的个体。在五种四倍体中(P28,P60,P68,P74和P75),​​与二倍体植物相比,P28在体内和体外均显示出明显的生物量增加,而其他四倍体在生物量方面与二倍体没有显着差异积累。尽管在所有测试的植物中,每单位叶面积的光合速率保持恒定,但P28的总叶面积显着增加,这可能导致整个植物的净光合作用增加。在温室条件下,四倍体P28的20E含量比二倍体植物高31%,P28离体产生的每株最终20E质量约为二倍体植物的两倍。体外植物中20E的积累没有遵循在体外植物中观察到的相同模式。相反,在二倍体植物中观察到更大的积累。除了具有更高的体外光合自养潜力外,在球果假单胞菌中诱导多倍体似乎是生产具有更高生物量积累和20E产量的植物的有前途的策略。

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