Adaptation of Rhizome Connections in Drylands: Increasing Tolerance of Clones to Wind Erosion
BACKGROUND AND AIMS: Wind erosion is a severe stress for plants in drylands, but the mechanisms by which plants withstand erosion remain largely unknown. Here, the hypothesis is tested that maintaining rhizome connections helps plants to tolerate erosion. METHODS: Five transects were established acr...
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Published in | Annals of botany Vol. 102; no. 4; pp. 571 - 577 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
England
Oxford University Press
01.10.2008
Oxford Publishing Limited (England) |
Subjects | |
Online Access | Get full text |
ISSN | 0305-7364 1095-8290 1095-8290 |
DOI | 10.1093/aob/mcn119 |
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Summary: | BACKGROUND AND AIMS: Wind erosion is a severe stress for plants in drylands, but the mechanisms by which plants withstand erosion remain largely unknown. Here, the hypothesis is tested that maintaining rhizome connections helps plants to tolerate erosion. METHODS: Five transects were established across an inland dune in Inner Mongolia, China, and measurements were made of leaf number, biomass per ramet and rhizome depth of Psammochloa villosa in 45 plots. In 40 x 40 cm plots of P. villosa on another dune, the top 15 or 30 cm of sand was removed for 1·5 or 3 months to simulate short- and long-term moderate and severe erosion, respectively, with untreated plots as controls, and the rhizomes at the edges of half of the plots were severed to mimic loss of rhizome connections. KEY RESULTS: Leaf number and biomass per ramet showed quadric relationships with rhizome depth; when rhizomes were exposed to the air, the associated ramets either died or became very weak. Ramet number, leaf number and biomass per plot decreased with increasing erosion severity. Rhizome connections did not affect these traits under control or short-term erosion, but increased them under long-term erosion. CONCLUSIONS: Rhizome connections alleviated the negative effects of erosion on P. villosa, very likely because the erosion-stressed ramets received water and/or photosynthates translocated from those connected ramets that were not subject to erosion. This study provides the first evidence that maintaining rhizome connections helps plants to tolerate erosion in drylands. |
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Bibliography: | ArticleID:mcn119 istex:2F9CC85565FCC44B2BE0BD41A458F9232B9D30D8 ark:/67375/HXZ-1WHVX2LG-Q ObjectType-Article-2 SourceType-Scholarly Journals-1 ObjectType-Feature-1 content type line 14 ObjectType-Article-1 ObjectType-Feature-2 content type line 23 |
ISSN: | 0305-7364 1095-8290 1095-8290 |
DOI: | 10.1093/aob/mcn119 |