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Improvement of cumin (Cuminum cyminum) seed performance under drought stress by seed coating and biopriming

机译:种子涂层和生物调胁迫下孜然(荧光瘤C质量)种子性能的提高

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Cumin (Cuminum cyminum L.) is an annual plant with medicinal properties including numerous stimulus appetites; strengthen the stomach, anti-flatulence, which has low germination, vigor, storage substances, and weak establishment in the soil. In order to improve the physical and physiological properties and investigate the effect of seed coating and biopriming on morphological and biochemical indices of cumin seeds under drought stress a factorial experiment was conducted based on completely randomized design with three replications in the greenhouse at the Department of Agronomy and Plant Breeding, Yasouj University, Iran, in 2017. The experimental factors consisted of six combined levels of seed inoculation (inoculation with strain P.F2, and CHA0 Pseudomonas fluorescence bacteria, T36, T39 Trichoderma harzianum fungi, and without inoculation) with coating, and non-coating without inoculation as a control, and drought stress at three levels (0, -3 and -6 bar). Seed coating performs by 3:1.5:2 ratios of Vermiculite (V), Kaolin (K) and Perlite (P) than seed weight (5 g). Increasing drought stress leads to decreasing of seedling emergence and early vegetative growth of cumin under greenhouse conditions. The results indicated that the highest emergence percentage and rate was obtained from inoculation of coated seed with CHA0 at all osmotic potential conditions. Also, inoculation of coated seed with fungi or bacteria increased the soluble protein and antioxidant enzyme activity of seed. In general, biopriming the coated seed by T36 fungi or CHA0 bacteria improved the cumin seed performance and moderate somewhat the drawback of osmotic stress effects on seed germination and seedling establishment.
机译:孜然(Cyminum L.)是一种药物性能,包括许多刺激胃部的年龄植物;强化胃,抗胀气,萌发,活力,储存物质和土壤弱的萌芽。为了改善地理和生理性质,并研究种子涂层的效果和生物化对干旱胁迫下孜然种子的形态学和生物化学指标的影响,基于完全随机设计进行了阶乘实验,在农学系的温室中有三种复制和植物育种,伊朗yasouj大学,2017年。实验因素由六种组合水平的种子接种(用菌株P.f2接种,以及Cha0假单胞菌荧光细菌,T36,T39 Trichoderma Harzianum真菌,没有接种) ,非涂层没有接种作为对照,并在三个水平(0,-3和-6巴)下的干旱胁迫。种子涂层比种子重量(5g)进行3:1.5:2比蛭石(V),高岭土(k)和珍珠岩(p)进行。增加的干旱胁迫导致在温室条件下降低幼苗出苗和孜然的早期营养生长。结果表明,在所有渗透潜在条件下用CHA0接种涂层种子的最高出苗百分比和速率。而且,用真菌或细菌接种涂层种子增加了种子的可溶性蛋白质和抗氧化酶活性。一般来说,通过T36真菌或CHA0细菌的生物掺杂种子改善了孜然种子性能,适度有些缺点渗透胁迫对种子萌发和幼苗建立的影响。

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