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Indoleamines and calcium channels influence morphogenesis in in vitro cultures of Mimosa pudica L.

机译:含羞草胺和钙通道影响含羞草体外培养中的形态发生。

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The present article reports the interplay of indoleamine neurohormones viz. serotonin, melatonin and calcium channels on shoot organogenesis in Mimosa pudica L. In vitro grown nodal segments were cultured on MS medium with B5 vitamins containing Serotonin (SER) and Melatonin (MEL) at 100 microM and indoleamine inhibitors viz. serotonin to melatonin conversion inhibitor p-chlorophenylalanine (p-CPA) at 40 microM, serotonin reuptake inhibitor (Prozac) 20 microM. In another set of experiment, calcium at 5 mM, calcium ionophore (A23187) 100 microM, and calcium channel blocker varapamil hydrochloride (1 mM) a calcium chelator EGTA (100 microM) were administered to the culture medium. The percentage of shoot multiplication, endogenous MEL and SER were monitored during shoot organogenesis. At 100 microM SER and MEL treatment 60% and 70% explants responded for shoot multiplication respectively. Medium supplemented with either SER or MEL along with calcium (5 mM) 75%-80% explants responded for organogenesis. SER or MEL along with calcium ionophore (A23187) at 100 microM 70% explants responded for shoot multiplication. p-CPA, prozac, verapamil and EGTA, shoot multiplication was reduced and endogenous pools of SER, MEL decreased by 40-70%. The results clearly demonstrated that indoleamines and calcium channels positively influenced shoot organogenesis in M. pudica L.
机译:本文报道了吲哚胺神经激素的相互作用。 5-羟色胺,褪黑激素和钙通道对含羞草芽器官发生的影响。体外生长的节段在MS培养基上培养,其中含有100 microM含5-羟色胺(SER)和褪黑素(MEL)的B5维生素和吲哚胺抑制剂。血清素向褪黑素转化抑制剂对氯苯丙氨酸(p-CPA)的浓度为40 microM,5-羟色胺再摄取抑制剂(Prozac)的浓度为20 microM。在另一组实验中,将5 mM的钙,100 microM的钙离子载体(A23187)和钙螯合剂EGTA(100 microM)的钙通道阻滞剂盐酸varapamil盐酸盐(1 mM)给予培养基。在芽器官发生过程中监测芽繁殖,内源性MEL和SER的百分比。在100 microM的SER和MEL处理下,分别有60%和70%的外植体对芽繁殖有反应。补充了SER或MEL的培养基以及钙(5 mM)75%-80%外植体对器官发生反应。 SER或MEL与钙离子载体(A23187)在100 microM的70%外植体中均能引起芽繁殖。 p-CPA,百忧解,维拉帕米和EGTA,幼芽繁殖减少,SER,MEL的内源性集合减少40-70%。结果清楚地表明,吲哚胺和钙通道对M. pudica L.的芽器官发生有积极影响。

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