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不同林龄胡杨克隆繁殖根系分布特征及其构型
引用本文:黄晶晶,井家林,曹德昌,张楠,李景文,夏延国,吕爽.不同林龄胡杨克隆繁殖根系分布特征及其构型[J].生态学报,2013,33(14):4331-4342.
作者姓名:黄晶晶  井家林  曹德昌  张楠  李景文  夏延国  吕爽
作者单位:1. 北京林业大学森林培育与保护教育部重点实验室,北京,100083
2. 北京林业大学生物学院,北京,100083
基金项目:国家自然科学基金项目(31070553、30570332);中国林业科学研究院重大项(CAFYBB2011002)
摘    要:以中龄林和成熟林胡杨为研究对象,采用挖剖面和根窗的方法,研究胡杨繁殖根系分布、根系构型,以及胡杨根蘖与繁殖根系构型之间的关系。结果表明:(1)细根(d<2 mm)的根长密度、根表面积密度,随深度增加呈现指数函数分布;(2)中龄林细根的根长密度、根表面积密度在0—90 cm各层都是显著大于成熟林的对应指标(P<0.05),成熟林的中等粗根(5 mm0.05),且两种林龄的一级侧根数、分枝角度亦无显著差异(P>0.05);(5)对比两种林龄不同根序上的根蘖芽发现,二级根上不定芽个数均是同组一级根上不定芽个数的3—4倍;基于以上对胡杨根系的功能权衡的分析,得出:细根对胡杨根系构型有重要的影响,在胡杨根系功能权衡中扮演重要角色。

关 键 词:胡杨  根长密度  根表面积密度  根系分布  根系构型
收稿时间:1/8/2013 12:00:00 AM
修稿时间:2013/4/18 0:00:00

Cloning root system distribution and architecture of different forest age Populus euphratica in Ejina Oasis
HUANG Jingjing,JING Jialin,CAO Dechang,ZHANG Nan,LI Jingwen,XIA Yanguo and L&#; Shuang.Cloning root system distribution and architecture of different forest age Populus euphratica in Ejina Oasis[J].Acta Ecologica Sinica,2013,33(14):4331-4342.
Authors:HUANG Jingjing  JING Jialin  CAO Dechang  ZHANG Nan  LI Jingwen  XIA Yanguo and L&#; Shuang
Institution:The Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing 100083, China;The Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing 100083, China;Depament of Biology, Beijing Forestry University, Beijing 100083, China;The Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing 100083, China;The Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing 100083, China;The Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing 100083, China;The Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing 100083, China
Abstract:Plant population regeneration is of great importance for restoration of degraded ecosystems and preservation of biodiversity in the extreme arid region. The effects of soil environment on the characters and sprouting of propagative root of populus euphratica were investigated to elucidate the development mechanism of adventitious buds and root suckers. It was contributive to ameliorate the regeneration of the degraded riparian forest in the Northwest of China. Based on the investigation on soil profile and rhizotron in middle-aged and mature-aged Populus euphratica forest, the cloning root distribution characteristics, the root architecture, and the relationship between the sucker root and propagative root architecture were analyzed. Results show that: (1) with the increasing of the soil depth, the root length density (RLD) and root surface Area density (SAD) of fine root (d<2 mm) present the exponential function. (2) In different depths among 0-90 cm, the RLD and SAD of the fine root in middle-aged forest were significantly larger than the ones in mature-aged forest (P<0.05). However, in 70-90 cm (deeper layers) and 40-50 cm (shallower layers), the RLD and SAD of the middle-sized thick roots (5 mm<d<20 mm) and the thick roots (20 mm<d) in middle-aged forest, were significantly smaller than those in the mature-aged forest (P<0.05). (3) In the middle-aged forests, the root surface area, the root forks, the root fractal dimension, and the average branch angle were chosen as principal components in analyzing the root architecture. But the root volume, the root forks, and the average branch angle were chosen as principal components in mature-aged forest. The principal component analysis on the root order showed that the diameter class among 1-2 mm significantly influenced the SAD and the root volume. (4) There were no significant difference in the amount of the adventitious buds on cloning roots, the first-ordered lateral roots and branch angle between the two-age forests (P<0.05). (5) It was found that the amount of the adventitious bud on the second-ordered roots were 3-4 times more than that on the first-ordered roots by comparing the shoot bud on different root orders in the two-age forests. Based on the analyses on the trade-off of Populus euphratica root. Our result suggested that the fine roots (d<2 mm) would significantly affect the clone root architecture of Populus euphratica, and played an important role in the trade-off of Populus euphratica root function.
Keywords:Populus euphratica  root length density  root surface area density  root distribution  root architecture
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