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首页> 外文期刊>Forest Ecology and Management >Seed germination and initial seedling survival of the subalpine tree species, Picea jezoensis, on different forest floor substrates under elevated temperature
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Seed germination and initial seedling survival of the subalpine tree species, Picea jezoensis, on different forest floor substrates under elevated temperature

机译:丘脑树种的种子萌发和初始幼苗存活,Picea jezoensis在升高的不同森林楼板上

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摘要

The Korean Peninsula is the southern limit of the distribution of Picea jezoensis (Siebold et Zucc.) Carriere, where it occurs only on isolated subalpine mountain tops in South Korea. Global warming is altering habitat environments, threatening the survival of P. jezoensis. This study investigated the seed germination, seedling establishment, and seedling mortality of P. jezoensis on different forest floor substrates (woody debris [WD], litter, and soil from a P. jezoensis habitat on Mt. Gyebang), together with horticultural sand, under control (mimicking habitat condition: day 22.3 degrees C/night 9.4 degrees C) and elevated (26.6 degrees C/13.7 degrees C) air temperatures to determine the effects of an increase in temperature on P. jezoensis regeneration. Seed germination did not differ significantly between the control and elevated temperature conditions on all substrates. Yet, seedling mortality increased by more than 1.4 times under elevated temperature compared to controls on all substrates. Among the four substrates, WD and litter respectively exhibited the lowest (15.6%) and highest (50%) seedling mortality for P. jezoensis under control conditions, with respective significant increases of 53% and 77% seedling mortality under elevated temperature (p & 0.05). Picea jezoensis on soil and sand had levels of mortality that were intermediate between WD and litter under control conditions and P. jezoensis did not show significant changes in seedling development between the control and elevated temperature conditions on soil and sand. P. jezoensis began to show differences in survival among substrates from the post -germination stage orwards, with most seedling mortality occurring within 30 days of seedling emergence. WD seemed to be the most favorable substrate under the control condition. Nevertheless, seedling establishment, survival and development on WD decreased to a percentage similar to those on soil and sand under elevated temperature, implying that the role of WD as a dominant rooting substrate for P. jezoensis regeneration may not remain the same under an elevated temperature condition. Global warming has a great potential to increase initial seedling mortality, adversely affecting the regeneration of this subalpine species.
机译:朝鲜半岛是Picea Jezoensis(Siebold等Zucc。)Carriere的南部限制,它只发生在韩国的孤立的象征山顶上。全球变暖正在改变栖息地环境,威胁到河津诗人的生存。本研究调查了不同森林底板(木质碎片[WD],从山区河道栖息地的不同林地基板(木质碎片[WD],垃圾和土壤)的种子萌发,苗木建立和幼苗死亡率,以及山地宫栖息地的河道栖息地),与园艺沙子一起,在控制下(模拟栖息地条件:第22.3点C /夜9.4℃)和升高(26.6摄氏度C / 13.7摄氏度)空气温度,以确定温度升高对河道再生的影响。在所有基材上的控制和升高的温度条件下,种子萌发没有显着差异。然而,与所有基材上的对照相比,幼苗死亡率在升高的温度下增加了1.4倍以上。在四个底物中,WD和垫料分别显示出在控制条件下的P. Jezoensis的最低(15.6%)和最高(50%)幼苗死亡率,在升高的温度下,各自的显着增加53%和77%的幼苗死亡率(P&amp ; 0.05)。土壤和沙子上的Picea Jezoensis在控制条件下的WD和凋落物之间具有中间的死亡率,并且P. Jezoensis在土壤和沙子的控制和升高的温度条件下没有显示出幼苗开发的显着变化。 P. Jezoensis开始在术后术后术后术后术后生存的差异,大多数幼苗出苗后30天内的幼苗死亡率发生。 WD似乎是控制条件下最有利的基材。然而,WD的幼苗建立,生存和发展减少到升高温度下的土壤和沙子类似的百分比,这意味着WD作为P. Jezoensis再生的主要生根基材的作用可能在升高的温度下保持不变健康)状况。全球变暖具有增加初始幼苗死亡率的巨大潜力,对该亚喹啉种类的再生产生不利影响。

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