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与吸收及菌根定殖相关的解剖学特征与23种中国温带树种的根系分支等级相关联。

Anatomical traits associated with absorption and mycorrhizal colonization are linked to root branch order in twenty-three Chinese temperate tree species.

作者信息

Guo Dali, Xia Mengxue, Wei Xing, Chang Wenjing, Liu Ying, Wang Zhengquan

机构信息

Department of Ecology, College of Urban and Environmental Sciences, Peking University, Beijing 100871, China.

Shenzhen Graduate School, Peking University, Shenzhen 518055, China.

出版信息

New Phytol. 2008;180(3):673-683. doi: 10.1111/j.1469-8137.2008.02573.x. Epub 2008 Jul 22.

DOI:10.1111/j.1469-8137.2008.02573.x
PMID:18657210
Abstract
  • Different portions of tree root systems play distinct functional roles, yet precisely how to distinguish roots of different functions within the branching fine-root system is unclear. * Here, anatomy and mycorrhizal colonization was examined by branch order in 23 Chinese temperate tree species of both angiosperms and gymnosperms forming ectomycorrhizal and arbuscular-mycorrhizal associations. * Different branch orders showed marked differences in anatomy. First-order roots exhibited primary development with an intact cortex, a high mycorrhizal colonization rate and a low stele proportion, thus serving absorptive functions. Second and third orders had both primary and secondary development. Fourth and higher orders showed mostly secondary development with no cortex or mycorrhizal colonization, and thus have limited role in absorption. Based on anatomical traits, it was estimated that c. 75% of the fine-root length was absorptive, and 68% was mycorrhizal, averaged across species. * These results showed that: order predicted differences in root anatomy in a relatively consistent manner across species; anatomical traits associated with absorption and mycorrhizal colonization occurred mainly in the first three orders; the single diameter class approach may have overestimated absorptive root length by 25% in temperate forests.
摘要

树木根系的不同部分发挥着不同的功能作用,但在分支细根系统中如何精确区分不同功能的根尚不清楚。在此,通过分支顺序对23种中国温带树木(包括形成外生菌根和丛枝菌根共生关系的被子植物和裸子植物)的解剖结构和菌根定殖情况进行了研究。不同分支顺序在解剖结构上表现出显著差异。一级根呈现初生发育,具有完整的皮层、较高的菌根定殖率和较低的中柱比例,因此发挥吸收功能。二级和三级根既有初生发育也有次生发育。四级及更高等级的根大多呈现次生发育,没有皮层或菌根定殖,因此在吸收方面作用有限。基于解剖学特征估计,平均跨物种来看,约75%的细根长度具有吸收功能,68%有菌根定殖。这些结果表明:分支顺序能以相对一致的方式预测不同物种根系解剖结构的差异;与吸收和菌根定殖相关的解剖学特征主要出现在前三个分支顺序中;在温带森林中,单一直径分类方法可能使吸收根长度高估了25%。

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