Sivanandhan Ganeshan, Theboral Jeevaraj, Dev Gnanajothi Kapil, Selvaraj Natesan, Manickavasagam Markandan, Ganapathi Andy
Indian J Exp Biol. 2015 Mar;53(3):177-83.
We studied the influence of sucrose and nitrogen concentration on in vitro flowering and fruit setting in elongated shoots of Withania somnifera. BA (1.5 mg/l) and IAA (0.3 mg/l) on MS medium supplemented with 4% sucrose showed 67% of in vitro flower induction frequency, 9 flowers/shoot, 4 fruits/shoot and 11 seeds/fruit in elongated-shoots. Different concentrations of nitrogen sources (L-glutamine, adenine sulphate, ammonium nitrate, potassium nitrate and sodium nitrate 5-25 mg/l) were tested in combination with 4% sucrose and BA at 1.5 mg/l and IAA at 0.3 mg/l. Highest number of flowers (20 flowers/shoot; 2.2-fold) and fruits (16 fruits/shoot; 3.39-fold), fruit setting (12 seeds/fruit; 1.08-fold) at a higher frequency (88%) were achieved on MS medium augmented with 15 mg/l adenine sulphate with same PGRs and sucrose concentration. The maximum production of withanolide A (0.68 mg/g DW) and withanolide B (0.77 mg/g DW) was recorded in in vitro fruits. Highest accumulation of withaferin A (2 mg/g DW) was quantified from in vitro flowers, whereas, it was low in in vitro fruits (0.49 mg/g DW withaferin A). However, withanone (0.23 mg/g DW) was found accumulated uniformly in both in vitro flowers and fruits compared to control.
我们研究了蔗糖和氮浓度对印度人参伸长茎段离体开花和坐果的影响。在添加4%蔗糖的MS培养基上,添加BA(1.5毫克/升)和IAA(0.3毫克/升)时,伸长茎段的离体花诱导频率为67%,每茎段9朵花、4个果实,每个果实11粒种子。将不同浓度的氮源(L-谷氨酰胺、硫酸腺嘌呤、硝酸铵、硝酸钾和硝酸钠,5-25毫克/升)与4%蔗糖、1.5毫克/升BA和0.3毫克/升IAA组合进行测试。在添加15毫克/升硫酸腺嘌呤、相同植物生长调节剂和蔗糖浓度的MS培养基上,花朵数量(每茎段20朵花;增加2.2倍)和果实数量(每茎段16个果实;增加3.39倍)最多,坐果率(每个果实12粒种子;增加1.08倍)最高(88%)。在离体果实中记录到最大产量的睡茄内酯A(0.68毫克/克干重)和睡茄内酯B(0.77毫克/克干重)。从离体花中定量出最高积累量的睡茄素A(2毫克/克干重),而在离体果实中含量较低(睡茄素A为0.49毫克/克干重)。然而,与对照相比,睡茄酮(0.23毫克/克干重)在离体花和果实中均有均匀积累。