首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Tissue culture and plant regeneration of the salt marsh monocots Juncus roemerianus and Juncus gerardi
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Tissue culture and plant regeneration of the salt marsh monocots Juncus roemerianus and Juncus gerardi

机译:盐沼单子叶植物Juncus roemerianus和Juncus gerardi的组织培养和植株再生

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Tissue culture and plant regeneration protocols for the salt marsh plants Juncus roemerianus Scheele and Juncus gerardi Loisel. were developed. J. roemerianus callus was induced from mature seeds cultured on Murashige and Skoog (MS) medium supplemented with 2.22 mu M 6-benzylaminopurine (BA), 5.37 mu M alpha-naphthaleneacetic acid (NAA), 2.26 mu M 2,4-dichlorophenoxyacetic acid (2,4-D), and 50 ml l(-1) coconut water (callus induction medium). The callus was subcultured on MS medium containing 2.22 mu M BA, 5.37 mu M NAA, and 9.05 mu M 2,4-D for callus maintenance. Shoot regeneration occurred 2 wk after transferring the callus onto shoot regeneration medium, which consisted of MS medium containing BA or thidiazuron. A high frequency of shoot regeneration was obtained when the medium contained 13.3 mu M BA. Regenerated shoots were transferred to MS medium supplemented with 10.7 mu M NAA for root production. Rooting did not occur in the shoots regenerated on the thidiazuron-containing media. The callus induction medium for J. roemerianus was also effective in inducing callus of J. gerardi from young inflorescences. The same medium was also used for callus maintenance. Shoot regeneration occurred 10 d after transferring the callus onto MS medium supplemented with 0.44 mu M BA and 0.57 mu M indole-3-acetic acid. Root regeneration occurred after transferring the shoots onto MS medium plus 0.44 mu M BA and 14.8 mu M indole-3-butyric acid. The regenerated plants of both J. roemerianus and J. gerardi grew vigorously in putting soil in the greenhouse. J. roemerianus regenerants also grew well in a saltwater-irrigated field plot. Tissue culture-produced plants of J. roemerianus and J. gerardi can be used for planting in created or restored wetlands.
机译:盐沼植物Juncus roemerianus Scheele和Juncus gerardi Loisel的组织培养和植物再生方案。被开发。罗非鱼愈伤组织是由在添加了2.22μM 6-苄基氨基嘌呤(BA),5.37μMα-萘乙酸(NAA),2.26μM2,4-二氯苯氧基乙酸的Murashige和Skoog(MS)培养基上培养的成熟种子诱导的(2,4-D)和50 ml l(-1)椰子水(愈伤组织诱导培养基)。将愈伤组织在含有2.22μMBA,5.37μMNAA和9.05μM2,4-D的MS培养基上继代培养以维持愈伤组织。将愈伤组织转移到芽再生培养基上后2周发生芽再生,芽再生培养基由含有BA或噻唑隆的MS培养基组成。当培养基中含有13.3μMBA时,芽再生的频率很高。将再生的芽转移至补充有10.7μMNAA的MS培养基中以进行根生产。在含噻唑隆的培养基上再生的芽中没有生根。 Roemerianus的愈伤组织诱导培养基也有效地从幼小花序中诱导了J. gerardi的愈伤组织。同样的培养基也用于愈伤组织的维护。将愈伤组织转移至补充有0.44μMBA和0.57μM吲哚-3-乙酸的MS培养基上10 d后,芽再生发生。将芽转移到MS培养基上,再将根茎转移到MS培养基中,其中加入0.44μMBA和14.8μM吲哚-3-丁酸。 Roemerianus和J. gerardi的再生植物在将土壤放入温室中时生长旺盛。在盐水灌溉的田间地带,roemerianus再生菌也生长良好。由组织培养产生的罗姆耶斯氏菌和杰拉尔迪菌的植物可用于在已创建或恢复的湿地上种植。

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