4.4 Article

Growth decline of Pinus Massoniana in response to warming induced drought and increasing intrinsic water use efficiency in humid subtropical China

期刊

DENDROCHRONOLOGIA
卷 57, 期 -, 页码 -

出版社

ELSEVIER GMBH
DOI: 10.1016/j.dendro.2019.125609

关键词

Pinus massoniana; Tree ring; Delta C-13; iWUE

资金

  1. Strategic Priority Research Program of Chinese Academy of Sciences [XDB26020000]
  2. National Science Foundation of China [41801016, 41822101]
  3. fellowship for the National Youth Talent Support Program of China (Ten Thousand People Plan)
  4. fellowship for Youth Talent Support Program of Fujian Province [IRTL1705]
  5. State Key Laboratory of Subtropical Mountain Ecology (Ministry of Science and Technology) Fujian Normal University [2017004]
  6. Swedish Formas (Future Research Leaders project)
  7. VR
  8. VINOVVA
  9. STINT
  10. BECC
  11. State Key Laboratory of Subtropical Mountain Ecology (Fujian Province) Fujian Normal University [2017004]
  12. innovation team project [IRTL1705]

向作者/读者索取更多资源

Pinus Massoniana is the most widely distributed coniferous species in southern China and one of the most distributed species for plantation in China. It is not uncertain about the responses of tree growth to the combined effects of regional drying and the increase in the intrinsic water-use efficiency (iWUE) due to increased atmospheric CO2. This study addressed this issue by comparing the tree growth patterns as represented by three tree-ring width chronologies with climate variables and three iWUE series derived from three tree-ring stable carbon isotope discrimination chronologies (Delta C-13) from Pinus Massoniana in Daiyun Mountain, central Fujian province of China. Among these chronologies, we reported the first tree-ring carbon isotope discrimination chronologies (Delta C-13) from Fuzhou area spanning last 210 years. It was found that tree radial growth is mainly limited by dry condition from May to October. Growth limitation by cold condition was only found in one high altitude site (780m) in early spring and late autumn. The tree-ring carbon discrimination was enhanced under conditions with low relative humidity and sufficient sunshine in late summer and autumn. In general, the iWUE showed a significantly increasing trend since the 1850s for all the sites in response to the increase in atmospheric CO2. However, the growth promotion of the increased iWUE on tree growth could not compensate the growth limitation caused by drought. Especially since the 1960s, a growth decline was found at two drought stressed sites at low altitudes. On the other hand, the increase in temperature of spring and autumn and iWUE has most likely enhanced tree growth at the high altitude site.

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