Growth Promotion and In vitro Seed Germination of Lycium barbarum L. (Red Goji) Using Different Types of Cytokinins.

Ainun Fazdilah Azmi, Nurul Izzati Osman
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Abstract

Introduction: Lycium barbarum L., commonly known as red goji berry, is a widely recognized plant-based medicinal herb with nutritional and therapeutic properties. In this study, the effects of various cytokinins on the germination of L. barbarum seeds and the growth of seedlings were investigated under in vitro conditions.

Methods: The berries were first surface sterilized and dissected, and the seeds were then cultured on Murashige and Skoog (MS) medium supplemented with different concentrations (0.5, 1.0, and 1.5 mg/L) of 6-benzylaminopurine (BAP), thidiazuron (TDZ), and kinetin (KIN) for 10 weeks at 25±2ºC with a photoperiod of 16 hours and a light intensity of 1000 lux. Upon observation after 10 weeks of culture, all cytokinin-treated cultures produced 100% seed germination as early as 7 days. KIN at 0.5 mg/L produced plantlets with the greatest height (8.40 ± 0.97 cm) with extensive rooting and the greatest total chlorophyll production. Besides, KIN at 1.5 mg/L resulted in the highest number of leaves per plantlet (6.90 ± 0.72), while 1.0 mg/L of TDZ led to the greatest biomass, i.e., fresh weight (FW) of 0.328 ± 0.05 gram and dry weight (DW) of 0.023 ± 0.003 gram.

Results: All cytokinins used in this experiment (BAP, TDZ, and KIN) promoted different in vitro growth promotion responses in L. barbarum. The effects of different types and concentrations of cytokinin on the height of plantlets, number of leaves per plantlet, fresh and dry weight, the extent of rooting, and the chlorophyll content were demonstrated to be statistically significant.

Conclusion: This study provides valuable insights into optimizing in vitro cultivation techniques for goji berry propagation, which could contribute to developing superior cultivars and increased production of this superfruit in the future. For future perspectives, extended research in elucidating the underlying mechanism associated with cytokinin supplementation is imperative to understanding the roles of cytokinins and optimizing their effects on plant growth promotion.

使用不同类型的细胞分裂素促进枸杞(红枸杞)的生长和离体种子发芽。
简介枸杞(Lycium barbarum L.),俗称红枸杞,是一种被广泛认可的植物药材,具有营养和治疗功效。本研究在离体条件下研究了各种细胞分裂素对枸杞种子萌发和幼苗生长的影响:方法:首先对浆果进行表面消毒并剖开,然后将种子放在添加了不同浓度(0.5、1.0 和 1.5 mg/L)的 6-苄基氨基嘌呤(BAP)、噻虫嗪(TDZ)和激肽原(KIN)的 Murashige and Skoog(MS)培养基上培养 10 周,温度为 25±2ºC,光周期为 16 小时,光照强度为 1000 lux。培养 10 周后观察发现,所有细胞分裂素处理的培养物均能在 7 天内产生 100% 的种子萌发率。0.5 毫克/升的 KIN 产生的小苗高度最高(8.40 ± 0.97 厘米),根系广泛,叶绿素总产量最高。此外,1.5 毫克/升的 KIN 能使每个小植株的叶片数最多(6.90 ± 0.72),而 1.0 毫克/升的 TDZ 能使小植株的生物量最大,即鲜重(FW)为 0.328 ± 0.05 克,干重(DW)为 0.023 ± 0.003 克:结果:本实验中使用的所有细胞分裂素(BAP、TDZ 和 KIN)都对 L. barbarum 的体外生长有不同的促进作用。不同类型和浓度的细胞分裂素对小植株高度、每片小植株叶片数、鲜重和干重、生根程度和叶绿素含量的影响均具有统计学意义:本研究为优化枸杞的体外栽培繁殖技术提供了有价值的见解,有助于今后开发优良品种和提高这种超级水果的产量。展望未来,要了解细胞分裂素的作用并优化其对植物生长的促进作用,就必须扩大研究范围,阐明细胞分裂素补充的内在机制。
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