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Seed germination characteristics of invasive Spartina alterniflora Loisel in Japan: implications for its effective management

机译:日本侵袭性斯巴塔南德林洛杉矶遗传症的种子萌发特征:对其有效管理的影响

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Spartina alterniflora, intentionally or unintentionally introduced worldwide, has adversely impacted local Japanese ecosystems. Thus, prediction of future distributions of S. alterniflora and its management are required. Local population expansion after establishment depends heavily on asexual (clonal) reproduction, whereas sexual (seed) reproduction is one of the critical factors for estimating invasion success and the likelihood of colonization to new habitats. However, knowledge about the germination characteristics of S. alterniflora is lacking. Here, we report the environmental conditions suitable for germination of S. alterniflora, under variable conditions of cold stratification periods (0, 4, 8 weeks), temperature (constant, alternating temperature), light (light/dark, dark), and oxygen (aerobic, anaerobic). Cumulative germination rate of S. alterniflora increased with an increasing period of cold stratification. Its seeds clearly preferred aerobic conditions to germinate. Also, the germination rate was higher under alternating temperature than under constant temperature regardless of light and oxygen conditions in any cold stratification period. However, long-term cold stratification, alternating temperature, and aerobic conditions were more important for germination of S. alterniflora than light. Removal of soil seed banks within 8 weeks of cold stratification after seed dispersals with matured seeds may be effective approaches for disrupting the germination of S. alterniflora.
机译:斯巴塔基纳·德林或在全球意外引入的偏合体,对当地日本生态系统产生了不利影响。因此,需要预测S. alliflora的未来分布及其管理。建立后的当地人口扩张依赖于无性(克隆)繁殖,而性(种子)繁殖是估算入侵成功的关键因素之一,以及殖民化对新栖息地的可能性。然而,缺乏关于S. S. Sdifinalla的发芽特征的知识。在这里,我们报告了适用于S. alliflora发芽的环境条件,在冷分层期(0,4,8周),温度(恒定,交替温度),光(轻/暗,暗)和氧气的可变条件下(有氧,厌氧)。 S. Xerfinlora的累积萌发率随着冷分层的增加而增加。它的种子明显优选的有氧条件发芽。此外,在交替温度下萌发速率比在恒定温度下较高,无论在任何冷分层期内的光和氧气条件如何。然而,长期冷分层,交替温度和有氧条件对S. alliflora的萌发比光更为重要。在具有成熟种子的种子分散后,在冷分层后8周内除尘的土壤种子池可能是破坏S. alliflora发芽的有效方法。

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