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首页> 外文期刊>American Journal of Experimental Agriculture >Assessment of Seed Vigour Tests for Efficiently Determining the Physiological Potential of Tetrapleura tetraptera (Schum. & Thonn.)
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Assessment of Seed Vigour Tests for Efficiently Determining the Physiological Potential of Tetrapleura tetraptera (Schum. & Thonn.)

机译:评估种子活力测试以有效确定四足藜的生理潜力(Schum。&Thonn。)

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Seed vigour tests were conducted to identify differences in physiological potential among seed lots of Tetrapleura tetraptera (Schum. & Thonn.) with the potential to perform well after sowing and/or during storage. The present study aimed at investigating rapid vigour testing methods for estimating the relative physiological potential of T. tetraptera (Schum. & Thonn.) to provide relevant information to guide its domestication and ex-situ conservation. Eight (8) seed lots of T. tetraptera were subjected to the accelerated ageing and the electrical conductivity tests to determine their physiological potential. For the accelerated ageing tests, the traditional accelerated ageing (TAA) and the salt-saturated accelerated ageing (SSAA) tests were performed. In the TAA tests, seed lots were exposed to 100% RH at 38 and 41°C for 48, 72 and 96 h, respectively. In the SSAA tests, seed lots were exposed to saturated NaCl solution with RH of 76% at temperatures and durations similar to the TAA tests. For the electrical conductivity tests, leachates conductivity of the 8 seed lots, were measured after 20 seeds of each lot had been placed in beakers and soaked in 50 ml of de-ionized water for 1,2,3,4,5,6, and 24 h at room temperature (24-28°C). Seed moisture content was determined and seed germination tests of seed lots were conducted before and after the accelerated ageing tests. Seedling root, shoot and total length as well as seedling dry weights were also recorded after accelerated ageing and germination of the seeds. The experimental design was 8 x 7 factorial (lots x soaking period) for the conductivity test and 8 x 2 x 3 factorial (lots x temperature x exposure time) for the accelerated ageing tests, in a completely randomized design. Results showed that seed emergence and seedling length were effective to distinguish the physiological quality of T. tetraptera seeds while seedling dry weights were not. Accelerated ageing test influenced the percentage of germination, but showed low sensitivity in lots differentiation. For the electrical conductivity test, 24 h was the most promising soaking period for effective stratification in determining the physiological quality of T. tetraptera seed lots and was significantly correlated with seed emergence (-0.76, p < 0.01) and seedling length (r = -0.72, p < 0.01). Electrical conductivity test may therefore be a more feasible option for vigour testing of T. tetraptera seeds.
机译:进行了种子活力测试,以确定四足四足藜(Schum。&Thonn。)的种子批次之间的生理潜能差异,这些潜能在播种后和/或在贮藏期间表现良好。本研究旨在调查快速的活力测试方法,以估计四翅类的相对生理潜能(Schum。&Thonn。),以提供相关信息以指导其驯化和迁地保护。八(8)个四翅类种子种子进行加速老化和电导率测试,以确定其生理潜能。对于加速老化测试,执行了传统的加速老化(TAA)和盐饱和加速老化(SSAA)测试。在TAA测试中,将种子批次分别在38和41°C下暴露于100%RH 48、72和96 h。在SSAA测试中,在与TAA测试相似的温度和持续时间下,将种子批次暴露于RH为76%的饱和NaCl溶液中。对于电导率测试,在将每批20个种子放入烧杯中并浸入50 ml去离子水中浸泡1,2,3,4,5,6之后,测量8个种子批次的渗滤液电导率,室温(24-28°C)和24小时。测定种子的水分含量,并在加速老化测试之前和之后进行种子批次的种子发芽测试。在加速种子的老化和发芽后,还记录了幼苗的根,苗和总长以及幼苗的干重。在完全随机的设计中,电导率测试的实验设计为8 x 7阶乘(批次x浸泡时间),加速加速测试的实验设计为8 x 2 x 3阶乘(批次x温度x暴露时间)。结果表明,种子出苗和苗长可以有效地区分四翅目种子的生理品质,而苗干重则不能。加速老化试验影响发芽率,但在批次分化中显示出较低的敏感性。对于电导率测试,24 h是有效分层的最有希望的浸泡时间,可用于确定四翅目种子的生理质量,并且与种子出苗(-0.76,p <0.01)和幼苗长度(r =- 0.72,p <0.01)。因此,电导率测试可能是对四翅类种子进行活力测试的更可行的选择。

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