Physiological responses of orchid pseudobulbs to drought stress are related to their age and plant life form
As storage organs for water and nutrients, pseudobulbs play an important role in the survival of orchids. However, the differences in morphological and physiological responses of pseudobulbs to drought stress between epiphytic and terrestrial orchids remain undefined, and little is known about the p...
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Published in | Plant ecology Vol. 220; no. 1; pp. 83 - 96 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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Dordrecht
Springer Science + Business Media
01.01.2019
Springer Netherlands Springer Springer Nature B.V |
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Abstract | As storage organs for water and nutrients, pseudobulbs play an important role in the survival of orchids. However, the differences in morphological and physiological responses of pseudobulbs to drought stress between epiphytic and terrestrial orchids remain undefined, and little is known about the physiological imparity of different-aged pseudobulbs. We investigated the anatomy and changes in physiology of pseudobulbs in an epiphytic orchid (Cymbidium tracyanum) and a terrestrial orchid (C. sinense) and compared their responses and recovery during and after periods of drought stress. In particular, “ramets severance treatment” and “multiple leafless pseudobulbs treatment” were applied for C. tracyanum to verify the utilization strategy for the stored water. When compared with C. sinense, the pseudobulbs of C. tracyanum have larger water-storage cells and higher water content, and the enhanced water storage of C. tracyanum can be used and recovered more rapidly. And they had more flexibility in shifting stored nonstructural carbohydrates. The remarkably high concentration and different change trends of abscisic acid (ABA) between different-aged pseudobulbs under drought stress were only found in C. tracyanum. When pseudobulb age was considered, the stored water and carbohydrate changed more rapidly in the youngest pseudobulbs of both species in response to stress. Our results indicated that the pseudobulbs differ in their means for coping with drought conditions according to their life form and age. These findings contribute to our understanding about the functional diversification of pseudobulbs and their strategies for ecological adaptations. |
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AbstractList | As storage organs for water and nutrients, pseudobulbs play an important role in the survival of orchids. However, the differences in morphological and physiological responses of pseudobulbs to drought stress between epiphytic and terrestrial orchids remain undefined, and little is known about the physiological imparity of different-aged pseudobulbs. We investigated the anatomy and changes in physiology of pseudobulbs in an epiphytic orchid (Cymbidium tracyanum) and a terrestrial orchid (C. sinense) and compared their responses and recovery during and after periods of drought stress. In particular, “ramets severance treatment” and “multiple leafless pseudobulbs treatment” were applied for C. tracyanum to verify the utilization strategy for the stored water. When compared with C. sinense, the pseudobulbs of C. tracyanum have larger water-storage cells and higher water content, and the enhanced water storage of C. tracyanum can be used and recovered more rapidly. And they had more flexibility in shifting stored nonstructural carbohydrates. The remarkably high concentration and different change trends of abscisic acid (ABA) between different-aged pseudobulbs under drought stress were only found in C. tracyanum. When pseudobulb age was considered, the stored water and carbohydrate changed more rapidly in the youngest pseudobulbs of both species in response to stress. Our results indicated that the pseudobulbs differ in their means for coping with drought conditions according to their life form and age. These findings contribute to our understanding about the functional diversification of pseudobulbs and their strategies for ecological adaptations. As storage organs for water and nutrients, pseudobulbs play an important role in the survival of orchids. However, the differences in morphological and physiological responses of pseudobulbs to drought stress between epiphytic and terrestrial orchids remain undefined, and little is known about the physiological imparity of different-aged pseudobulbs. We investigated the anatomy and changes in physiology of pseudobulbs in an epiphytic orchid ( Cymbidium tracyanum ) and a terrestrial orchid ( C. sinense ) and compared their responses and recovery during and after periods of drought stress. In particular, “ramets severance treatment” and “multiple leafless pseudobulbs treatment” were applied for C. tracyanum to verify the utilization strategy for the stored water. When compared with C. sinense , the pseudobulbs of C. tracyanum have larger water-storage cells and higher water content, and the enhanced water storage of C. tracyanum can be used and recovered more rapidly. And they had more flexibility in shifting stored nonstructural carbohydrates. The remarkably high concentration and different change trends of abscisic acid (ABA) between different-aged pseudobulbs under drought stress were only found in C. tracyanum. When pseudobulb age was considered, the stored water and carbohydrate changed more rapidly in the youngest pseudobulbs of both species in response to stress. Our results indicated that the pseudobulbs differ in their means for coping with drought conditions according to their life form and age. These findings contribute to our understanding about the functional diversification of pseudobulbs and their strategies for ecological adaptations. |
Audience | Academic |
Author | Zhang, Shi-Bao Li, Jia-Wei |
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CitedBy_id | crossref_primary_10_1016_j_scienta_2021_110580 crossref_primary_10_1016_j_hpj_2020_05_006 crossref_primary_10_1186_s40529_020_00292_4 crossref_primary_10_1590_2447_536x_v27i4_2334 crossref_primary_10_1016_j_agwat_2023_108538 crossref_primary_10_1093_jxb_erac479 crossref_primary_10_1016_j_gecco_2021_e01654 crossref_primary_10_1007_s42161_022_01154_7 crossref_primary_10_1007_s11240_021_02064_9 crossref_primary_10_1016_j_indcrop_2021_114510 crossref_primary_10_1016_j_plaphy_2023_107655 |
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SubjectTerms | Abscisic acid Adaptation Age Applied Ecology Biodiversity Biomedical and Life Sciences Carbohydrates Community & Population Ecology Drought Ecological adaptation Ecology Epiphytes Life Sciences Moisture content Nutrients Organs Physiological aspects Physiological responses Physiology Plant Ecology Plant hormones Storage organs Terrestial Ecology Terrestrial environments Water Water content Water storage |
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Title | Physiological responses of orchid pseudobulbs to drought stress are related to their age and plant life form |
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