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林业科学 ›› 2009, Vol. 12 ›› Issue (11): 1-8.doi: 10.11707/j.1001-7488.20091101

• 论文 •    下一篇

不同年龄巨桉林土壤呼吸及其与土壤温度和细根生物量的关系*

袁渭阳 李贤伟 张健 荣丽 杨渺 潘燕   

  1. 四川农业大学生态林业工程省级重点实验室 雅安 625014
  • 收稿日期:2007-06-13 修回日期:1900-01-01 出版日期:2009-11-25 发布日期:2009-11-25
  • 通讯作者: 李贤伟
  • 基金资助:
     

Soil Respiration Variations and Their Relationships with Soil Temperature and Fine Root Biomass in an Age Series of Eucalyptus grandis

Yuan Weiyang, Li Xianwei, Zhang Jian, Rong Li, Yang Miao, Pan Yan   

  1. State Key Laboratory of Ecological Forestry Engineering, Sichuan Agricultural University Ya’an 625014
  • Received:2007-06-13 Revised:1900-01-01 Online:2009-11-25 Published:2009-11-25
  • Supported by:
     

摘要:

采用SRS-1000便携式土壤呼吸仪对四川省丹陵县集体林区巨桉短轮伐期1~6年生林分的土壤呼吸速率和5 cm土壤温度进行测量,并采用根钻法在不同季节测量所有年龄巨桉林活细根(<2 mm)生物量。结果表明: 1)不同年龄巨桉林每月初期土壤呼吸速率在0.35~1.71 μ mol·m-2 s-1间波动,季节趋势为,夏季(1.35)>秋季(1.16)>春季(0.62)>冬季(0.41 μmol·m-2 s-1)(P <0.01)。1~6年生的巨桉林土壤呼吸速率年均值表现出“高—低—高”的趋势(P<0.01),6年生巨桉林土壤呼吸速率最高; 2)土壤呼吸速率月变化与土壤温度存在显著相关性。用月初动态拟合的1~6年生林分土壤呼吸温度敏感性Q10大小为: 4年生(2.29)> 1年生(2.03)> 6年生(1.95)> 3年生(1.88)> 2年生(1.83)> 5年生(1.73)(P<0.01); 3)土壤温度和0~50 cm细根生物量与土壤呼吸速率具有二元线性回归关系(r=0.964 0),它们对土壤呼吸的季节变化贡献率基本相等。

关键词: 巨桉, 土壤呼吸速率, 温度, 细根生物量, 年龄序列

Abstract:

This research examined monthly dynamics of soil respiration and their relationships with soil temperature at 5 cm depth (using Lci Portable Photosynthesis System (SRS-1000)) and seasonal variations of fine root (<2 mm) biomass in 0~50 cm depth (soil core method) in an age series (1~6-year-old) of Eucalyptus grandis. The results showed that monthly (early month) soil respiration rate (SRR) ranged from 0.35 to 1.71 μmol·m-2 s-1, and the seasonal values were different as following descending sequence: summer (1.55), autumn (1.16), spring (0.62), winter (0.41 μmol·m-2 s-1) (P<0.01), and in different ages showed that 6-year-old (1.10)>5(0.99)>2(0.93)>1 (0.82)>3(0.80)>4(0.67 μmol·m-2 s-1) (P<0.01). The relationship between early monthly dynamics of SRR and soil temperature at 5 cm depth was significant (R2=0.706 3~0.965 7, P<0.05). The exponential equation of Rs=a·e(b·T) and Q10=e10b were applied to search the relationships of monthly soil temperature at 5 cm depth and SRR, and the temperature sensitivity (Q10) was from 1.73 to 2.29. The binary linear regression between soil temperature at 5 cm depth, fine root (<2 mm) biomass in 0~50 cm depth and SRR is significant (P<0.01).

Key words: Eucalyptus grandis, soil respiration rate (SRR), temperature, fine root biomass, age sequence

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