KOMBINASI JENIS BIBIT DAN KONSENTRASI ZAT PENGATUR TUMBUH GIBERELIN TERHADAP PERTUMBUHAN TANAMAN PORANG (Amorphophallus oncophillus)

F. Fathurrahman, Putri Istianingrum, Ni’mawati Sakinah
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Abstract

Porang is a tuber plant that has the opportunity to be developed in Indonesia. Efforts have been made to increase the production potential of porang, including through nurseries. The purpose of this study was to determine the effect of tuber origin and concentration of gibberellin growth regulators on porang growth. The research was conducted in Wonosobo Village, Srono District, Banyuwangi Regency from August to November 2020. This study used a Randomized Block Design (RBD) with two factors, namely the origin of the seeds and the concentration of gibberellin growth regulators with three replications. Factors of seed origin consisted of tubers (B1) and air bulbs (B2) while ZPT gibberellin concentration factors were 1 ml/l (A1), 2 ml/l (A2), 3 ml/l (A3), 4 ml/l ( A4) and 5 ml/l (A5), resulting in 10 treatment combinations. Observational variables include shoot height and number of leaves. On the seedling origin factor, the B2 treatment was the highest in terms of the observed parameters of shoot height and number of leaves. In the ZPT gibberellin concentration factor, it was shown that factor A1 was the highest in the observed variable of shoot height 20 dap (days after planting), while in the variable number of leaves 50 dap, factors A4 and A5 had the highest number of leaves. The interaction of seed origin and gibberellin concentrations showed that factor B1A4 had the highest shoot height at 20 dap observations, while B1A5 had the highest number of leaves at 40 and 50 dap observations.
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芽属植物(学名Amorphophallus oncophillus)的种子和调节剂浓度的组合
Porang是一种块茎植物,有机会在印度尼西亚开发。已作出努力提高porang的生产潜力,包括通过苗圃。本研究的目的是确定块茎来源和赤霉素生长调节剂浓度对porang生长的影响。研究于2020年8月至11月在Banyuwangi县Srono区Wonosobo村进行。本研究采用随机区组设计(RBD),考虑种子来源和赤霉素生长调节剂浓度两个因素,重复3次。种子来源因子为块茎(B1)和空气球茎(B2), ZPT赤霉素浓度因子为1 ml/l (A1)、2 ml/l (A2)、3 ml/l (A3)、4 ml/l (A4)和5 ml/l (A5),共10个处理组合。观测变量包括茎高和叶数。在苗源因子上,B2处理在茎高和叶片数观测参数上均最高。在ZPT赤霉素浓度因子中,在茎高20 dap(种植后天数)观察变量中,因子A1最高,而在叶片数50 dap的变量中,因子A4和A5的叶片数最高。种子来源与赤霉素浓度的交互作用表明,因子B1A4在20 dap时的茎高最高,而因子B1A5在40和50 dap时的叶数最高。
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