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Ultrasound influence on coleoptile length at Poaceae seedlings as valuable criteria in prebreeding and breeding processes

机译:超声对禾本科幼苗胚芽鞘长度的影响,作为预育和育种过程中的重要标准

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The study includes research on the effect of ultrasound on the ability of seed germination and coleoptile development of cereal landraces (fam. Poaceae): oat (Avena sativa L.) brodski, rye (Secale cereale L.) rakotinska, Triticale svetinikolsko and soft wheat (Triticum aestivum L.) govrlevska. The experiment with ultrasound was carried out at frequency of 30-40 kHz on the thermostatic ultrasonic bath. Seeds were sonicated at a constant temperature (25oC) for 15 min. Ultrasound effect is reflected in the length of the coleoptyl and mesocotyl, although in a good deal is genetically predetermined. Coleoptile length was the longest in Triticale (3.3-5.5 cm) and approximately the same lengths are evident in rye (3.0-6.1 cm). Concerning the mesocotyl the longest one (5.525 cm ± 0.697) is recorded at rye, even significantly longer than control of oat and Triticale. Longer coleoptile of sonicated seeds indicates faster seedling development, good water supply and rapid development and emergence of first leaves. Correlation coefficient showed very high (0.821) and high R2 (67,472%) dependence among variables both, in length of coleoptiles (as dependent variable) and mesocotyl (as independent) with low standard error (0.225). With the simple use of ultrasound the germination period could be shorten, water supply more efficient, the sowing periods will be shorten and good yields even under conditions of climate change with increased temperatures could be achieved.
机译:该研究包括超声对谷物地方品种(家庭禾本科)种子发芽和胚芽鞘发育能力的影响的研究:燕麦(Avena sativa L.)brodski,黑麦(Secale graine L.)rakotinska,Triticale svetinikolsko和软小麦(Triticum aestivum L.)govrlevska。超声实验是在恒温超声浴上以30-40 kHz的频率进行的。将种子在恒温(25oC)下超声处理15分钟。超声波的影响反映在鞘脂基和中胚轴的长度上,尽管在基因上已经预先确定了很多。胚芽鞘的长度在黑小麦中最长(3.3-5.5厘米),在黑麦(3.0-6.1厘米)中也有大致相同的长度。关于中胚轴,在黑麦上记录的最长的胚轴(5.525 cm±0.697),甚至比燕麦和黑小麦的对照更长。胚芽胚芽鞘的胚芽鞘更长,表明幼苗生长更快,供水良好,初生叶片快速发育和出苗。相关系数在胚芽鞘的长度(作为因变量)和中胚轴的长度(作为独立变量)之间均显示出很高的变量(0.821)和较高的R2依赖性(67,472%),且标准误较低(0.225)。通过简单地使用超声波,可以缩短发芽期,提高供水效率,缩短播种期,即使在气候变化且温度升高的条件下也能获得良好的单产。

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