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NaCl plays a key role for in vitro micropropagation of Salicornia brachiata, an extreme halophyte.

机译:NaCl在极端盐生植物 Salicornia brachiata 的体外微繁殖中起关键作用。

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摘要

A simple and rapid method for micropropagation of succulent, salt accumulator and extreme halophyte Salicornia brachiata has been established for the first time using shoot tips and nodes. Individually, BA showed significant response compared to Kn and in combinations, improved shoot proliferation was observed with BA+NAA than BA+2,4-D, however no significant response was observed with BA+IAA. Percentage of shoot response significantly increased with NaCl treatment in the combination of BA+NAA while BA+2,4-D+NaCl combination showed reduced shoot proliferation followed by demises of most of cultures. Efficient shoot proliferation was observed with combinations BA (8.9 micro M)+NAA (5.37 micro M)+NaCl (500 mM) and BA (13.3 micro M)+NAA (5.37 micro M)+NaCl (250 mM) indicating that NaCl is required for the micropropagation. The developed method will facilitate functional analysis of novel salt responsive gene(s) isolated from S. brachiata and propagation of industrially important elite accessions.
机译:首次使用芽尖和节建立了一种简单,快速的多肉植物,盐分累积器和极生盐生植物 Salicornia brachiata 的微繁殖方法。单独而言,BA与Kn相比显示出显着的应答,并且组合使用BA + NAA观察到的芽增殖比BA + 2,4-D更好,但是BA + IAA没有观察到显着的应答。在NaCl处理下,BA + NAA组合的芽响应百分率显着增加,而BA + 2,4-D + NaCl组合显示芽增殖减少,随后大多数培养物死亡。使用BA(8.9 micro M)+ NAA(5.37 micro M)+ NaCl(500 mM)和BA(13.3 micro M)+ NAA(5.37 micro M)+ NaCl(250 mM)的组合观察到有效的芽增殖。微繁殖所需的。所开发的方法将有助于从i中分离出的新型盐响应基因的功能分析。臂和工业上重要的种质的繁殖。

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