根茎苹果(Malus sylvestris Mill.)叶片和叶柄外植体的形态发生对叶绿素和细胞分裂素的反应

Wirentyas Nafika, A. Munawarti
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摘要

砧木苹果是一种用于嫁接繁殖的植物。有关该植物形态发生反应的研究尚未广泛开展。本研究旨在研究辅助素和细胞分裂素比例对砧木苹果叶片和叶柄外植体形态发生反应的影响,并研究具有最佳反应的辅助素和细胞分裂素比例的变化。该研究采用了双因子完全随机设计(CRD),对培养基中的外植体类型和植物生长调节剂(PGR)组合进行了研究。共有 12 个处理,重复 5 次。将苹果嫩叶(第三叶)和叶柄根茎形式的外植体(叶片尺寸为 5x5 毫米,叶柄长度为 5 毫米)消毒后切块,接种到含有细胞分裂素(BAP,百万分之 1)和辅助素(IBA,百万分之 0、0.1、0.2、0.3、0.4、0.5)的 MS 培养基中。每个培养瓶含有五个外植体。结果表明,叶片外植体平均能产生 34% 的胼胝体。同时,叶柄外植体能产生 4% 的胼胝质。叶片和叶柄外植体分别在接种后第 26 天和第 42 天开始形成胼胝质。大多数胼胝质地紧密,有绿色、黄白色和褐绿色。叶片外植体胼胝形成率最高的 PGR 组合是 BAP 1 ppm + IBA 0.4 ppm 处理,而叶柄外植体胼胝形成率最高的是 BAP 1 ppm + IBA 0.3 ppm 处理。
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Morphogenesis Response of Leaf and Petiole Explant of Rootstock Apple (Malus sylvestris Mill.) to Auxin and Cytokinin
Rootstock apple is a type of plant used in grafting propagation. Research related to the response of morphogenesis in this plant has not been widely carried out. The aim of this research was to study the effect of auxin and cytokinin ratio on the morphogenesis response of leaf and petioles explants of rootstock apple and to study variations in the ratio of auxin and cytokinin with the best response. The study used a 2-factorial Completely Randomized Design (CRD) with variations in the types of explants and combinations of plants growth regulators (PGR) in the culture medium. There were 12 treatments with five repetitions. Explants in the form of young apple leaf (third leaf) and petiole rootstock that had been sterilized and cut with a size of 5x5 mm for the leaf and 5 mm long for the petiole were inoculated into MS medium with cytokinin in the form of BAP (1 ppm) combined with auxin, IBA (0, 0.1, 0.2, 0.3, 0.4, 0.5 ppm). Each culture bottle contains five explants. The results showed that the average leaf explant was capable of producing 34% callus. Meanwhile, petiole explants produced 4% callus. Callus began to form on leaf and petiole explants on the 26th and 42nd days after inoculation respectively. Most calluses have a compact texture with variations in green, yellowish white, and brownish green. The PGR combination with the highest percentage of callus formation in leaf explants was found in the BAP 1 ppm + IBA 0.4 ppm treatment, while the petiole was in the BAP 1 ppm + IBA 0.3 ppm treatment
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