{"title":"利用各种发光二极管、培养基和植物生长调节剂促进 Alternanthera reineckii Briq.的体外微繁殖","authors":"Ummugulsum Ekin , Muhammet Dogan","doi":"10.1016/j.kjs.2024.100250","DOIUrl":null,"url":null,"abstract":"<div><p>In this study, the effects of various light treatments, growth regulators and culture media (agar-solidified and liquid) on <em>in vitro</em> propagation of <em>Alternanthera reineckii</em> Briq. Were evaluated. In <em>in vitro</em> experiments were used red, blue, and white LEDs alone and various combinations of red and blue LEDs. Different levels of 6-benzylaminopurine (BAP) and Kinetin (KIN), ranging from 0.25 mg/L to 1 mg/L, were introduced into the solid and liquid Murashige and Skoog (MS) basal medium. In solid culture, the highest number of shoots per explant (16.67 shoots/explant) was observed when utilizing a proportion of 1:2 red/blue LEDs in MS medium supplemented with 1 mg/L BAP. On the other hand, in the liquid culture, 15.13 shoots/explant were obtained with 1 mg/L BAP under a 2:1 red/blue LEDs configuration. During the experiments involving KIN, 10.42 shoots/explant were observed in the solid culture conditions with 1 mg/L of KIN under a lighting configuration of 1:2 red/blue LEDs. On the other hand, a total of 10.62 shoots/explant was attained in the liquid MS medium with 0.50 mg/L of KIN under a lighting configuration of 2:1 red/blue LEDs. As a result, LED lights were found to be better than fluorescent lights for multiple propagations of <em>A. reineckii</em>. Moreover, higher shoot numbers and longer shoots were achieved with red and blue LED light combinations.</p></div>","PeriodicalId":17848,"journal":{"name":"Kuwait Journal of Science","volume":"51 3","pages":"Article 100250"},"PeriodicalIF":1.2000,"publicationDate":"2024-05-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.sciencedirect.com/science/article/pii/S2307410824000750/pdfft?md5=f59741be1ce96fc9fea7223906dd88db&pid=1-s2.0-S2307410824000750-main.pdf","citationCount":"0","resultStr":"{\"title\":\"Enhancing in vitro micropropagation of Alternanthera reineckii Briq. using various light-emitting diodes, culture media and plant growth regulators\",\"authors\":\"Ummugulsum Ekin , Muhammet Dogan\",\"doi\":\"10.1016/j.kjs.2024.100250\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>In this study, the effects of various light treatments, growth regulators and culture media (agar-solidified and liquid) on <em>in vitro</em> propagation of <em>Alternanthera reineckii</em> Briq. Were evaluated. In <em>in vitro</em> experiments were used red, blue, and white LEDs alone and various combinations of red and blue LEDs. Different levels of 6-benzylaminopurine (BAP) and Kinetin (KIN), ranging from 0.25 mg/L to 1 mg/L, were introduced into the solid and liquid Murashige and Skoog (MS) basal medium. In solid culture, the highest number of shoots per explant (16.67 shoots/explant) was observed when utilizing a proportion of 1:2 red/blue LEDs in MS medium supplemented with 1 mg/L BAP. On the other hand, in the liquid culture, 15.13 shoots/explant were obtained with 1 mg/L BAP under a 2:1 red/blue LEDs configuration. During the experiments involving KIN, 10.42 shoots/explant were observed in the solid culture conditions with 1 mg/L of KIN under a lighting configuration of 1:2 red/blue LEDs. On the other hand, a total of 10.62 shoots/explant was attained in the liquid MS medium with 0.50 mg/L of KIN under a lighting configuration of 2:1 red/blue LEDs. As a result, LED lights were found to be better than fluorescent lights for multiple propagations of <em>A. reineckii</em>. 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引用次数: 0
摘要
本研究评估了各种光照处理、生长调节剂和培养基(琼脂固化培养基和液体培养基)对 Alternanthera reineckii Briq.进行了评估。在体外实验中,单独使用了红光、蓝光和白光 LED,以及红光和蓝光 LED 的不同组合。在固体和液体 Murashige and Skoog(MS)基础培养基中分别加入了 0.25 毫克/升至 1 毫克/升的 6-苄基氨基嘌呤(BAP)和 Kinetin(KIN)。在固体培养中,当在添加了 1 mg/L BAP 的 MS 培养基中使用 1:2 比例的红/蓝 LED 时,每个外植体的芽数最多(16.67 个芽/外植体)。另一方面,在液体培养中,使用 1 毫克/升 BAP、2:1 红/蓝 LED 配置条件下,每个外植体可获得 15.13 个芽。在涉及 KIN 的实验中,在固体培养条件下,使用 1 mg/L KIN,在 1:2 的红/蓝 LED 灯光配置下,观察到 10.42 个嫩芽/植株。另一方面,在使用 0.50 毫克/升 KIN 的液体 MS 培养基中,在 2:1 红/蓝 LED 的照明配置下,总共观察到 10.62 个芽/株。结果发现,LED 灯比荧光灯更适合于 A. reineckii 的多重繁殖。此外,红光和蓝光 LED 灯组合还能获得更高的芽数量和更长的芽。
Enhancing in vitro micropropagation of Alternanthera reineckii Briq. using various light-emitting diodes, culture media and plant growth regulators
In this study, the effects of various light treatments, growth regulators and culture media (agar-solidified and liquid) on in vitro propagation of Alternanthera reineckii Briq. Were evaluated. In in vitro experiments were used red, blue, and white LEDs alone and various combinations of red and blue LEDs. Different levels of 6-benzylaminopurine (BAP) and Kinetin (KIN), ranging from 0.25 mg/L to 1 mg/L, were introduced into the solid and liquid Murashige and Skoog (MS) basal medium. In solid culture, the highest number of shoots per explant (16.67 shoots/explant) was observed when utilizing a proportion of 1:2 red/blue LEDs in MS medium supplemented with 1 mg/L BAP. On the other hand, in the liquid culture, 15.13 shoots/explant were obtained with 1 mg/L BAP under a 2:1 red/blue LEDs configuration. During the experiments involving KIN, 10.42 shoots/explant were observed in the solid culture conditions with 1 mg/L of KIN under a lighting configuration of 1:2 red/blue LEDs. On the other hand, a total of 10.62 shoots/explant was attained in the liquid MS medium with 0.50 mg/L of KIN under a lighting configuration of 2:1 red/blue LEDs. As a result, LED lights were found to be better than fluorescent lights for multiple propagations of A. reineckii. Moreover, higher shoot numbers and longer shoots were achieved with red and blue LED light combinations.
期刊介绍:
Kuwait Journal of Science (KJS) is indexed and abstracted by major publishing houses such as Chemical Abstract, Science Citation Index, Current contents, Mathematics Abstract, Micribiological Abstracts etc. KJS publishes peer-review articles in various fields of Science including Mathematics, Computer Science, Physics, Statistics, Biology, Chemistry and Earth & Environmental Sciences. In addition, it also aims to bring the results of scientific research carried out under a variety of intellectual traditions and organizations to the attention of specialized scholarly readership. As such, the publisher expects the submission of original manuscripts which contain analysis and solutions about important theoretical, empirical and normative issues.