Abstract
We propose that mycorrhizal colonization of roots alters nonhydraulic root to shoot communication of soil drying. Split-root rose (Rosa hybrida L. cv Samantha) plants—one side of the root system colonized by Glomus intraradices Schenck & Smith, the other side nonmycorrhizal—displayed different stomatal conductances upon partial drying, depending upon whether mycorrhizal or nonmycorrhizal roots were dried. No differences in leaf water status were observed among control plants and those whose mycorrhizal or nonmycorrhizal roots were dried.
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- Bethlenfalvay G. J., Brown M. S., Franson R. L. Glycine-Glomus-Bradyrhizobium Symbiosis : X. Relationships between Leaf Gas Exchange and Plant and Soil Water Status in Nodulated, Mycorrhizal Soybean under Drought Stress. Plant Physiol. 1990 Oct;94(2):723–728. doi: 10.1104/pp.94.2.723. [DOI] [PMC free article] [PubMed] [Google Scholar]
- Bethlenfalvay G. J., Brown M. S., Mihara K. L., Stafford A. E. Glycine-Glomus-Rhizobium Symbiosis: V. Effects of Mycorrhiza on Nodule Activity and Transpiration in Soybeans under Drought Stress. Plant Physiol. 1987 Sep;85(1):115–119. doi: 10.1104/pp.85.1.115. [DOI] [PMC free article] [PubMed] [Google Scholar]