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Assessment of genetic diversity and variation of Robinia pseudoacacia seeds induced by short-term spaceflight based on two molecular marker systems and morphological traits

机译:基于两个分子标记系统和形态特征的短期航天诱导刺槐种子遗传多样性和变异性评估

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The black locust (Robinia pseudoacacia) is a forest legume that is highly valued as a honey plant and for its wood. We explored the effect of short-term spaceflight on development of R. pseudoacacia seedlings derived from seeds that endured a 15-day flight; the genetic diversity and variation of plants sampled from space-mutagenized seeds were compared to plants from parallel ground-based control seeds using molecular markers and morphological traits. In the morphology analysis, the space-mutagenized group had apparent variation compared with the control group in morphological traits, including plant height, basal diameter, number of branches, branch stipular thorn length, branch stipular thorn middle width, leaflet vertex angle, and tippy leaf vertex angle. Simple sequence repeat (SSR) and sequence-related amplified polymorphism (SRAP) molecular marker analyses showed a slightly higher levels of genetic diversity in the space-mutagenized group compared to the control group. In the SRAP analysis, the space-mutagenized group had 115 polymorphic bands vs 98 in the controls; 91.27% polymorphic loci vs 77.78% in the controls; 1.9127 ± 0.2834 alleles vs 1.7778 ± 0.4174 in the controls; Nei’s genetic diversity (h) was 0.2930 ± 0.1631 vs 0.2688 ± 0.1862 in the controls, and the Shannon’s information index (I) was 0.4452 ± 0.2177 vs 0.4031 ± 0.2596 in the controls. The number of alleles was significantly higher in the space-mutagenized group. In the SSR analysis, the space-mutagenized group also had more polymorphic bands (51 vs 46), a greater percentage of polymorphic loci (89.47% vs 80.70%); h was also higher (0.2534 ± 0.1533 vs 0.2240 ± 0.1743), as was I (0.3980 ± 0.2069 vs 0.3501 ± 0.2412). These results demonstrated that the range of genetic variation in the populations of R. pseudoacacia increased after spaceflight. It also suggested that the SSR and SRAP markers are effective markers for studying mutations and genetic diversity in R. pseudoacacia. The data provide valuable molecular evidence for the effects of the space environment on R. pseudoacacia and may contribute to future space-breeding programs involving forest trees.
机译:刺槐(Robinia pseudoacacia)是一种森林豆类,因其蜂蜜和蜂蜜而被高度评价。我们探讨了短期航天对源自忍受15天飞行的种子的拟金合欢树幼苗发育的影响。利用分子标记和形态学特征,比较了从空间诱变种子中取样的植物与平行地面对照种子的植物遗传多样性和变异。在形态学分析中,空间诱变组与对照组相比在形态特征上有明显的变化,包括植物高度,基部直径,分支数,分支托叶刺长,分支托叶刺中宽度,小叶顶角和尖尖叶顶角。简单序列重复(SSR)和序列相关的扩增多态性(SRAP)分子标记分析显示,与对照组相比,空间诱变组的遗传多样性水平略高。在SRAP分析中,空间诱变组具有115个多态性条带,而对照组为98个。多态性位点为91.27%,而对照为77.78%; 1.9127±0.2834等位基因与对照组的1.7778±0.4174; Nei的遗传多样性(h)为0.2930±0.1631,而对照组为0.2688±0.1862,Shannon信息指数(I)为0.4452±0.2177,相对于对照组为0.4031±0.2596。在空间诱变组中,等位基因的数量明显更高。在SSR分析中,空间诱变组还具有更多的多态性条带(51对46),多态性位点的百分比更高(89.47%对80.70%)。 h也更高(0.2534±0.1533 vs 0.2240±0.1743),I(0.3980±0.2069 vs 0.3501±0.2412)。这些结果表明,航天飞行后,拟金合欢种群的遗传变异范围增加。这也表明,SSR和SRAP标记是研究拟金丝酵母突变和遗传多样性的有效标记。这些数据为空间环境对拟金合欢的影响提供了有价值的分子证据,并可能有助于涉及林木的未来空间育种计划。

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