Application of NAA and BA to Calotropis gigantea (L.) W.T. Aiton in vitro

Muji Rahayu, Tyas Alivia Wulandari, A. T. Sakya, Andriyana Setyawati, Sri Hartati, Samanhudi Samanhudi
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Abstract

Crown flower (Calotropis gigantea (L.)) is a weed plant potentially to be used as raw material for textile fibers yet the utilization is not optimal. Efforts to optimize the utilization of C. gigantea are needed. This research aimed to determine the appropriate concentration of plant growth regulators, including NAA (Naphthalene Acetic Acid) and BA (Benzyl Adenine) to stimulate optimal growth of C. gigantea to be used as the basis for in vitro propagation of C. gigantea. The research was arranged in a completely randomized design (CRD). Explants were planted on Murashige and Skoog (MS) medium with various concentrations of NAA (0; 0.5; 1; 1.5; and 2 ppm) and BA (0; 1; 2; 3; and 4 ppm). Based on the research result, the addition of 3 ppm BA followed by increasing the concentration of NAA to 1.5 ppm could increase the number of C. gigantea shoots, and giving 1 ppm BA followed by adding 1.5 to 2 ppm NAA increased shoot height. The best plantlet response was found in media with 0 ppm NAA and 4 ppm BA, which could produce an optimal shoot height of 5.9 cm and a large number of shoots of 5.67 shoots. Increasing NAA concentration retarded root formation and reduced the root length and number of leaves, while the medium without NAA gave the earliest root emergence of 11 days after planting, the number of leaves of 20 strands, and the longest root of 10.9 cm. Applying a single substance BA did not accelerate all the variables observed.
NAA和BA在大菱鲆中的应用体外试验
冠花(Caltrophis gigantea(L.))是一种杂草植物,有可能用作纺织纤维的原料,但其利用率并不理想。需要努力优化对巨型C.gigantea的利用。本研究旨在确定植物生长调节剂的适当浓度,包括NAA(萘乙酸)和BA(苄基腺嘌呤),以刺激巨型C.gigantea的最佳生长,作为巨型C.givantea体外繁殖的基础。本研究采用完全随机设计(CRD)。将外植体种植在具有不同浓度NAA(0;0.5;1;1.5;和2ppm)和BA(0;1;2;3;和4ppm)的Murashige和Skoog(MS)培养基上。根据研究结果,添加3ppm BA,然后将NAA浓度提高到1.5ppm,可以增加C.gigantea的芽数,添加1ppm BA,然后添加1.5~2ppm NAA,可以增加芽高。在添加0 ppm NAA和4 ppm BA的培养基中,植株反应最好,可产生5.9 cm的最适芽高和5.67芽的大量芽。增加NAA浓度延缓了根系的形成,减少了根系的长度和叶片数量,而不添加NAA的培养基在种植后11天出现最早的根系,叶片数量为20股,最长的根系为10.9cm。施用单一物质BA并不能加速所有观察到的变量。
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