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首页> 外文期刊>African Journal of Biotechnology >Effect of saturation on seed dormancy and germination of the halophyte Leymus chinensis
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Effect of saturation on seed dormancy and germination of the halophyte Leymus chinensis

机译:饱和度对盐生植物羊草种子休眠和萌发的影响

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The halophyte,?Leymus chinensis?(Trin.) a perennial rhizomatous grass, is widely distributed in northern China, Mongolia and Siberia. Due to its ecological and economical significance, understanding the underlying causes of the low fecundity and long-term seed dormancy that are characteristic of?L. chinensis?is critical for promoting propagation and germination of this grass. This?study?investigates the effect of saturation treatments of mature seeds on breaking seed dormancy and increasing germination in?L. chinensis. The germination rates were significantly increased to 33.81, 46.15 and 50.35% from LcWT07-1, LcWT07-2 and LcJS0107, respectively after saturation treatments at 4°C for 3 days, suggesting that germination inhibitor components had been lixiviated from seed coats and/or mature seeds. High-performance liquid chromatography (HPLC) and ultraviolet (UV) analysis demonstrated that acidic components were lixiviated from both seed coats and dehusked mature seeds. Since dehusking also promotes seed germination, we predicted that the seed coat-derived soluble components contained germination inhibitors. Indeed, when?L. chinensis?plantlets were watered with the lixiviated solutions, their germination, but not their growth and development, was inhibited. Taken together, this work provides valuable insight into the regulation of seed dormancy and germination rate in?L. chinensis, which may in turn have implications for improved propagation.
机译:盐生植物,“羊草”(Trin。)是多年生的根茎草,在中国北方,蒙古和西伯利亚广泛分布。由于其生态和经济意义,因此应了解低产力和长期种子休眠的潜在原因,这些原因是大豆的特征。中华草对促进这种草的繁殖和发芽至关重要。本研究调查了成熟种子的饱和处理对打破种子休眠和增加种子萌发的影响。中华在4°C下饱和处理3天后,LcWT07-1,LcWT07-2和LcJS0107的发芽率分别显着提高至33.81、46.15和50.35%,这表明发芽抑制剂成分已从种皮和/或成熟的种子。高效液相色谱(HPLC)和紫外线(UV)分析表明酸性成分已从种皮和去壳成熟种子中清除。由于脱壳还可以促进种子发芽,因此我们预测来自种皮的可溶性成分含有发芽抑制剂。确实,什么时候?用浸过液的溶液浇灌中华?幼苗,抑制其发芽,但不抑制其生长和发育。两者合计,这项工作提供了对种子休眠和发芽率调控的有价值的见解。可能对改善繁殖有影响。

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