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首页> 外文期刊>New Forests >Metabolic changes during adventitious root primordium development in Tectona grandis Linn. f. (teak) cuttings as affected by age of donor plants and auxin (IBA and NAA) treatment
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Metabolic changes during adventitious root primordium development in Tectona grandis Linn. f. (teak) cuttings as affected by age of donor plants and auxin (IBA and NAA) treatment

机译:Tectona grandis Linn不定根原基发育过程中的代谢变化。 F。 (柚木)cutting插受供体植物和生长素(IBA和NAA)处理的年龄影响

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Aging of the donor tree decreased adventitious root formation in shoot cuttings of Tectona grandis Linn. f. (teak). Exogenous application of auxins, i.e., α-naphthalene acetic acid (NAA) and indole-3-butyric acid (IBA) has a significant positive effect on the percentage of rooting. The maximum percent rooting was obtained with 4,000 ppm IBA as compared to other treatment. Significant increase in root number was recorded in shoot cuttings treated with 4,000 ppm NAA. The overall rooting response was better in the treatment with IBA rather than with NAA. Further periodic samples (0, 10, 20, and 30 days) were taken to assess the total soluble sugar, starch, protein, and peroxidase (PER) activity in the rooting zone of shoot cuttings of teak during adventitious root formation. Application NAA and IBA to shoot cuttings resulted in an increase in the level of total soluble sugar, starch, protein, and PER-activity in the rooting zone. The stored carbohydrates were utilized during adventitious root formation. Hence, total soluble sugar and starch contents of cuttings, irrespective of age of donor plants, decreased with the passage of time in cuttings planted for rooting. Significant fluctuations were observed in the protein content of cuttings during the time of root induction. There was an increase in the protein content with the passage of time from the day of planting up to its 20th day, followed by a sharp decline in the protein content of cuttings at the 30th day of planting, irrespective of the age of donor plants or the treatment of cuttings with auxins. Irrespective of donor plant age, PER-activity in the cuttings increased from the day of their planting for rooting up to the 20th day, and then declined at its 30th day of planting. It was interesting to note that PER-activity remained higher at all stages in the cuttings of 2-month-old seedlings which rooted profusely as compared to the cuttings of 15- and 30-year-old donor plants those rooted poorly. This study suggested that the exogenously applied NAA and IBA at different concentration seems to activate sugar metabolism for release of energy, protein and PER-activity which are necessary for cellular division and differentiation during adventitious root primordium initiation or development in the rooting zone of shoot cuttings.
机译:供体树的衰老减少了大花蜜Tectona grandis Linn的插条中不定根的形成。 F。 (柚木)。生长激素,即α-萘乙酸(NAA)和吲哚-3-丁酸(IBA)的外源施用对生根百分比具有显着的积极影响。与其他处理相比,使用4,000 ppm IBA可获得最大的生根百分比。在用4,000 ppm NAA处理的枝条中记录到根数显着增加。用IBA治疗比用NAA治疗总的生根反应更好。进一步定期取样(0、10、20和30天)以评估不定根形成过程中柚木枝条生根区的总可溶性糖,淀粉,蛋白质和过氧化物酶(PER)活性。将NAA和IBA应用于枝条插穗导致生根区总可溶性糖,淀粉,蛋白质和PER活性水平增加。存储的碳水化合物在不定根形成过程中被利用。因此,随供体生根的插条随着时间的流逝,插条的总可溶性糖和淀粉含量(与供体植物的年龄无关)会降低。在诱导根的过程中,观察到插条的蛋白质含量存在明显的波动。从播种日到第20天,蛋白质含量随时间的推移而增加,而在播种30天时,无论供体植株的年龄或供体的年龄如何,插条的蛋白质含量都会急剧下降。用生长素处理of插。无论供体植株的年龄如何,插条中的PER-活性从其生根之日起直到第20天都增加,然后在其第30天时下降。有趣的是,与生根较差的15年和30岁供体植物的插条相比,在2个月大的生根丰富的插条中,插穗的各个阶段的PER活性仍然较高。这项研究表明,以不同浓度外源施用的NAA和IBA似乎可以激活糖代谢,释放能量,蛋白质和PER活性,这是不定根原基萌芽或枝条生根区发育过程中细胞分裂和分化所必需的。 。

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