Determination of Optimum Concentration and Time of Pre-Treatment with Plant Growth Regulators on Germination Indices of Catharanthus roseus Seed

M. Ababaf, H. Omidi, A. Bakhshandeh
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Abstract

Introduction: Catharanthus roseus is regarded as a medicinal ornamental plant. This plant has anti-cancer, anti-hypertensive, anti-diabetes, and antimicrobial properties. Catharanthus has a fairly long vegetative period due to its slow initial growth. The long growth period of the plant is considered one of the limitations in its cultivation on a larger scale. By using plant growth regulators such as salicylic acid (SA) in the imbibition phase and pre-treatment, an increase in seed activity and the seedling growth of many crops is observable. Also, jasmonic acid (JA) plant growth regulators play an important role in seed germination and plant growth. Regarding the long growth period of this plant, the small size of the seed, and poor establishment in the field with semi-heavy and heavy textured soils, the present study aimed to evaluate the effect of seed priming with SA and JA in different concentrations and periods on improving Catharanthus roseus seed germination indices. Materials and Methods: The studies were conducted as a factorial experiment based on a completely randomized design with three replications at the Laboratory of Seed Science and Technology of Shahed University, Tehran, in 2017. Treatments included five different concentrations of SA (0, 0.01, 0.1, 0.5, and 1 mM), concentrations of JA (0, 1, 10, and 100 µM) and five periods of time (0, 6, 12, 24, and 48 hours). At the end of the experiment (10 days) traits such as germination percentage, germination rate, mean germination time , mean daily germination, germination value, seed length vigor index, seed weight vigor index, seedling dry weight , shoot dry weight, radicle dry weight , radicle length , shoot length, and seedling length were measured. Results: The results indicated that the effect SA, JA, and time were significant on germination percentage, germination speed, mean germination time, mean daily germination, germination value, seedling length , seedling length vigor index , seedling weight vigor index, and radicle dry weight. The best times for pre-treatment with SA were 24 and 48 hours. Among the applied concentrations of SA, 0.5 and 1 mM concentrations showed the best results. Also, the best time and concentration for pre-treatment with JA were 12 and 24 hours and 10 µM. Conclusions: The results of this study showed that using SA and JA for seed priming improved seed germination components. In addition to the pre-treatment concentrations of SA and JA, the duration of seed contact with growth regulators is important. It was observed that there was a significant difference among the different priming times, therefore, it can be stated that seed pre-treatment time is one of the important factors of seed priming, and the determination of proper priming time prevented the negative effect of pretreatment on germination and seedling growth in primed seeds.
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植物生长调节剂预处理对花楸种子萌发指标的最佳浓度和时间的确定
简介:玫瑰花是一种药用观赏植物。这种植物具有抗癌、抗高血压、抗糖尿病和抗菌特性。花楸属植物初期生长缓慢,营养期较长。这种植物的长生长期被认为是其大规模栽培的限制之一。通过在吸胀期和预处理时使用水杨酸等植物生长调节剂,可以观察到许多作物的种子活性和幼苗生长的增加。茉莉酸(jasmonic acid, JA)植物生长调节剂在种子萌发和植物生长中起着重要作用。针对花楸属植物生长期长,种子体积小,在半重质和重质土壤条件下成活率差的特点,研究了不同浓度和不同时期的SA和JA对花楸种子萌发指标的影响。材料与方法:本研究于2017年在德黑兰沙赫德大学种子科学与技术实验室进行,采用完全随机设计、3个重复的析因试验。处理包括5种不同浓度的SA(0、0.01、0.1、0.5和1 mM)、JA(0、1、10和100µM)和5个时间段(0、6、12、24和48小时)。试验结束(10 d),测定发芽率、发芽率、平均萌发时间、平均日发芽率、萌发值、种子长活力指数、种子重活力指数、幼苗干重、茎干重、胚根干重、胚根长、茎长、幼苗长等性状。结果:SA、JA和时间对发芽率、发芽速度、平均发芽时间、平均日发芽率、发芽值、苗长、苗长活力指数、苗重活力指数和胚根干重有显著影响。SA预处理的最佳时间为24h和48h。在SA施用浓度中,0.5 mM和1 mM的效果最好。JA预处理的最佳时间和浓度分别为12、24 h和10µM。结论:本研究结果表明,SA和JA对种子萌发成分有促进作用。除了SA和JA的预处理浓度外,种子与生长调节剂接触的时间也很重要。不同启动时间对种子萌发和幼苗生长的影响有显著差异,说明种子预处理时间是种子启动的重要因素之一,确定合适的启动时间可以防止预处理对启动种子萌发和幼苗生长的负面影响。
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