Bark and sapwood water storage and the atypical pattern of recharge and discharge of water reservoirs indicate low vulnerability to drought in Araucaria Araucana

التفاصيل البيبلوغرافية
العنوان: Bark and sapwood water storage and the atypical pattern of recharge and discharge of water reservoirs indicate low vulnerability to drought in Araucaria Araucana
المؤلفون: Sandra Janet Bucci, Luisina Carbonell-Silletta, Agustin Cavallaro, Nadia Soledad Arias, Paula Inés Campanello, Guillermo Goldstein, Fabián Gustavo Scholz
المصدر: Tree physiology.
سنة النشر: 2022
مصطلحات موضوعية: Physiology, Plant Science
الوصف: Stored water in inner tissues influences the plant water economy, which might be particularly relevant for trees facing increasing dry conditions due to climate change. We studied the water storage in the inner bark and the sapwood of Araucaria araucana (Molina) K. Koch. This species has an extremely thick inner bark and thus it can be used as a model system to assess the impact of internal water storage on plant water balance. Specifically, we analyzed the water circulation pathways in and out of the elastic water storages by using simultaneously frequency domain moisture sensors and dendrometers inserted in the inner bark and in the sapwood, and sap flow determinations during the dry season. The daily patterns of water content and expansion and contraction of the stem tissues were similar to the sap flow pattern. The whole-stem water content and diameter increased in the morning and decreased in the afternoon, contrary to the typical pattern observed in most tree species. An osmotic gradient favoring the water influx from sapwood to inner bark was observed in the morning. There were no lags in the onset of sap flow between different stem heights at the time that recharge of reservoirs occurred. Sap flow at 6 m height was higher than basal sap flow in the afternoon, when the sapwood water content started to decline followed by the water content of the inner bark. Inner bark and sapwood contributed 5–11% to total daily transpiration, allowing the maintenance of high water potentials in the dry season. Our results suggest that the stored water in the stems, the atypical dynamic of recharge and discharge of water from reservoirs and the high tissue capacitance may make an important contribution to the survival of A. araucana during drought periods by maintaining the water balance.
تدمد: 1758-4469
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::cac44288444d0026c330dbe1c71dc20c
https://pubmed.ncbi.nlm.nih.gov/36209429
حقوق: EMBARGO
رقم الأكسشن: edsair.doi.dedup.....cac44288444d0026c330dbe1c71dc20c
قاعدة البيانات: OpenAIRE