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在落叶松林中,细根的产生、死亡和周转率的时间动态在不同的枝序中存在差异。

Temporal dynamics of fine root production, mortality and turnover deviate across branch orders in a larch stand.

机构信息

CAS Key Laboratory of Forest Ecology and Management, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, 110016, China.

School of Forestry, Northeast Forestry University, Harbin, 150040, China.

出版信息

Oecologia. 2022 Jul;199(3):699-709. doi: 10.1007/s00442-022-05206-8. Epub 2022 Jul 1.

Abstract

Fine roots play a key role in carbon, nutrient, and water biogeochemical cycles in forest ecosystems. However, inter-annual dynamics of fine root production, mortality, and turnover on the basis of long-term measurement have been less studied. Here, field scanning rhizotrons were employed for tracking fine root by branch order over a 6 years period in a larch plantation. For total fine roots, from the first- to the fifth-order roots, annual root length production, length mortality, standing crops, and turnover rate varied up to 3.4, 2.3, 1.5, and 2.3-folds during the study period, respectively. The inter-annual variability of those roots indices in the first-order and the second-order roots were greater than that of the higher order (third- to fifth-order) roots. The turnover rate was markedly larger for the first-order roots than for the higher order roots, showing the greatest variability up to 20 times. Seasonal dynamics of root length production followed a general concentrated pattern with peak typically occurring in June or July, whereas root length mortality followed a general bimodal mortality pattern with the dominant peak in May and the secondary peak in August or October. Furthermore, the seasonal patterns of root length production and mortality were similar across years, especially for the first-order and the second-order roots. These results from long-term observation were beneficial for reducing uncertainty of characterizing fine root demography in consideration of large variation among years. Our findings highlight it is important for better understanding of fine root dynamics and determining root demography through distinguishing observation years and root branch orders.

摘要

细根在森林生态系统的碳、养分和水生物地球化学循环中起着关键作用。然而,基于长期测量的细根生产、死亡和周转率的年际动态研究较少。在这里,采用田间扫描根钻在落叶松人工林进行了长达 6 年的细根分支顺序追踪。对于总细根,从第一级到第五级根,年根长度生产、长度死亡率、立存量和周转率在研究期间分别变化了 3.4 倍、2.3 倍、1.5 倍和 2.3 倍。在第一级和第二级根中,这些根指数的年际变异性大于较高阶(第三至第五阶)根的变异性。一级根的周转率明显大于较高阶根,最大可变性高达 20 倍。根长生产的季节性动态遵循一般集中模式,峰值通常出现在 6 月或 7 月,而根长死亡率遵循一般双峰死亡率模式,主峰值出现在 5 月,次峰值出现在 8 月或 10 月。此外,多年来根长生产和死亡率的季节性模式相似,尤其是在第一级和第二级根中。这些来自长期观测的结果有助于减少在考虑多年变化时描述细根动态的不确定性。我们的研究结果强调,通过区分观测年份和根分支顺序,对于更好地理解细根动态和确定根动态,区分观测年份和根分支顺序是很重要的。

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