| Literature DB >> 22286084 |
Emiru Birhane1, Frank J Sterck, Masresha Fetene, Frans Bongers, Thomas W Kuyper.
Abstract
Under drought conditions, arbuscular mycorrhizal (AM) fungi alter water relationships of plants and improve their resistance to drought. In a factorial greenhouse experiment, we tested the effects of the AM symbiosis and precipitation regime on the performance (growth, gas exchange, nutrient status and mycorrhizal responsiveness) of Boswellia papyrifera seedlings. A continuous precipitation regime was imitated by continuous watering of plants to field capacity every other day during 4 months, and irregular precipitation by pulsed watering of plants where watering was switched every 15 days during these 4 months, with 15 days of watering followed by 15 days without watering. There were significantly higher levels of AM colonization under irregular precipitation regime than under continuous precipitation. Mycorrhizal seedlings had higher biomass than control seedlings. Stomatal conductance and phosphorus mass fraction in shoot and root were also significantly higher for mycorrhizal seedlings. Mycorrhizal seedlings under irregular watering had the highest biomass. Both a larger leaf area and higher assimilation rates contributed to higher biomass. Under irregular watering, the water use efficiency increased in non-mycorrhizal seedlings through a reduction in transpiration, while in mycorrhizal seedlings irregular watering increased transpiration. Because assimilation rates increased even more, mycorrhizal seedlings achieved an even higher water use efficiency. Boswellia seedlings allocated almost all carbon to the storage root. Boswellia seedlings had higher mass fractions of N, P, and K in roots than in shoots. Irregular precipitation conditions apparently benefit Boswellia seedlings when they are mycorrhizal. Electronic supplementary material The online version of this article (doi:10.1007/s00442-012-2258-3) contains supplementary material, which is available to authorized users.Entities:
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Year: 2012 PMID: 22286084 PMCID: PMC3398253 DOI: 10.1007/s00442-012-2258-3
Source DB: PubMed Journal: Oecologia ISSN: 0029-8549 Impact factor: 3.225
ANOVA table showing the effect of mycorrhiza and water pulse on plant traits of Boswellia seedlings
| Parameters | Units | AM | Water | AM × water | |||
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| Leaf number | Number | 36.341 | 0.000* | 0.105 | 0.747 | 0.006 | 0.940 |
| Leaf area | cm2 | 3.891 | 0.052 | 1.977 | 0.163 | 9.817 | 0.001* |
| Coarse root dry mass | g | 110.464 | 0.000* | 9.342 | 0.003 | 31.221 | 0.000* |
| Root dry mass | g | 107.133 | 0.000* | 9.404 | 0.003 | 31.084 | 0.000* |
| Plant dry mass | g | 98.902 | 0.000* | 7.599 | 0.007 | 30.021 | 0.000* |
| Biomass increase | % | 45.520 | 0.000* | 0.384 | 0.537 | 8.421 | 0.004 |
| Plant relative growth rate | % month−1 | 94.144 | 0.000* | 6.200 | 0.014 | 27.247 | 0.000* |
| Root relative growth rate | % month−1 | 101.055 | 0.000* | 7.624 | 0.007 | 27.514 | 0.000* |
| Coarse root relative growth rate | % month−1 | 104.123 | 0.000* | 7.532 | 0.007 | 27.583 | 0.000* |
| Specific root length | mm g−1 | 17.994 | 0.000* | 1.531 | 0.218 | 0.473 | 0.493 |
| Root length per plant mass | mm g−1 | 17.113 | 0.000* | 0.730 | 0.395 | 0.751 | 0.388 |
| Shoot phosphorus | % | 13.527 | 0.000* | 9.614 | 0.003 | 1.973 | 0.163 |
| Root phosphorus | % | 13.888 | 0.000* | 7.697 | 0.007 | 0.019 | 0.889 |
A two-way ANOVA was used to test the effect of mycorrhiza, watering and their interaction but only presented for parameters with significant effect (the whole effect was presented as an electronic supplementary table). Except for gas exchange, all traits were measured and/or calculated after the harvest
* Significant after Bonferroni correction
Fig. 1The effects is presented of arbuscular mycorrhiza and water regime on seedling mass (mean ± 1SE) of Boswellia. Arbuscular mycorrhizal treatment (AM+) is compared with a control without inoculation (AM−), and water pulse every 2 weeks (SP) during the wet seasons is compared with a control with regular water supply during the wet season (WC). Seedlings in the 12-month category die back aboveground during the 8-month dry period, as a consequence of which there were no differences in biomass between the 4- and 12-month-old seedlings. Different letters (per age class) indicate significant differences between treatments (P < 0.05)
Fig. 2The effects is presented of arbuscular mycorrhiza and water regime on gas exchange (mean ± 1SE) of 16-month-old Boswellia seedlings. Arbuscular mycorrhizal treatment (AM+) is compared with a control without inoculation (AM−), and water pulse every 2 weeks (SP) during the wet seasons is compared with a control with regular water supply during the wet season (WC). Different letters indicate significant differences between treatments (P < 0.05)
Fractional mycorrhizal colonization and mycorrhizal root length (mean ± SE) for inoculated seedlings of Boswellia
| Colonization percentage | Age | Water | Age × water | ||||||||
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| 4 | 12 | 16 |
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| Arbuscular colonization | 0.404 ± 0.03 | 0.464 ± 0.03 | 0.577 ± 0.03 | 1.953 | 0.151 | 0.344 ± 0.02b | 0.62 ± 0.02a | 14.815 | 0.000 | 0.315 | 0.731 |
| Vesicular colonization | 0.631 ± 0.03 | 0.637 ± 0.03 | 0.657 ± 0.03 | 0.054 | 0.948 | 0.448 ± 0.02b | 0.814 ± 0.02a | 29.148 | 0.000 | 4.795 | 0.012 |
| Hyphal colonization | 0.649 ± 0.04b | 0.725 ± 0.04b | 0.915 ± 0.04a | 7.443 | 0.001 | 0.641 ± 0.03b | 0.885 ± 0.03a | 15.596 | 0.000 | 0.094 | 0.911 |
| Mycorrhizal root length | 13.091 ± 1.333 | 21.281 ± 1.333 | 32.35 ± 1.333 | 2.470 | 0.093 | 13.489 ± 1.264b | 32.137 ± 1.333a | 6.790 | 0.012 | 0.957 | 0.390 |
A two-way ANOVA is used to test for the effects of age and water and their interaction
Different letters indicate significant differences between treatments (P < 0.05)
Gas exchange (mean ± SE) in 16-month-old Boswellia seedlings
| Traits | Units | AM inoculation | Water | AM × water | |||||||
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| AM− | AM+ |
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| Assimilation | μmol C m−2 s−1 | 2.88 ± 1.057b | 3.72 ± 1.069a | 8.466 | 0.004 | 2.95 ± 1.073 | 3.66 ± 1.049 | 5.539 | 0.020 | 8.116 | 0.005 |
| Stomatal conductance | mol m−2 s−1 | 0.254 ± 0.017b | 0.344 ± 0.018a | 13.777 | 0.000 | 0.361 ± 0.018a | 0.237 ± 0.016b | 25.929 | 0.000 | 0.684 | 0.409 |
| Transpiration | mmol H2O m−2 s−1 | 4.046 ± 0.093 | 4.214 ± 0.111 | 1.345 | 0.248 | 4.182 ± 0.120 | 4.077 ± 0.081 | 0.519 | 0.472 | 82.019 | 0.000 |
| Respiration | μmol C m−2 s−1 | −0.73 ± 1.230 | −1.285 ± 1.294 | 2.837 | 0.097 | −0.75 ± 1.23 | −1.26 ± 1.291 | 2.490 | 0.120 | 4.074 | 0.048 |
| Water use efficiency | μmol mmol−1 | 0.842 ± 0.044b | 0.990 ± 0.053a | 4.663 | 0.032 | 0.801 ± 0.057b | 1.031 ± 0.039a | 11.193 | 0.001 | 7.380 | 0.000 |
A two-way ANOVA is used to test for the effects of mycorrhiza and water and their interaction
Different letters indicate significant differences between treatments (P < 0.05)