globalchange  > 气候减缓与适应
DOI: 10.32615/ps.2019.013
WOS记录号: WOS:000466359200022
论文题名:
Changes in foliar epicuticular wax and photosynthesis metabolism in evergreen woody species under different soil water availability
作者: Pereira, S.; Figueiredo-Lima, K.; Oliveira, A. F. M.; Santos, M. G.
通讯作者: Santos, M. G.
刊名: PHOTOSYNTHETICA
ISSN: 0300-3604
EISSN: 1573-9058
出版年: 2019
卷: 57, 期:1, 页码:192-201
语种: 英语
英文关键词: climate change ; cuticle ; drought tolerance ; leaf metabolism ; oxidative stress ; water deficit
WOS关键词: GAS-EXCHANGE ; DROUGHT STRESS ; PEROXIDASE-ACTIVITIES ; SUPEROXIDE-DISMUTASE ; CUTICULAR WAX ; LEAF SURFACE ; LEAVES ; CATALASE ; RECOVERY ; CAATINGA
WOS学科分类: Plant Sciences
WOS研究方向: Plant Sciences
英文摘要:

Epicuticular waxes (EW) are important for plant physiology as a protective barrier against water loss. Thus, the main goal of this study was to evaluate the ecophysiological performance of Cynophalla flexuosa, an evergreen woody species, under different foliar EW contents. The study was conducted during three periods throughout the year in a seasonally dry tropical forest area. The xylem water potential decreased to 70% at midday. The main EW components were n-alkane chains, effective in keeping the cuticle impermeability. We analyzed intact leaves and leaves with EW removed. C. flexuosa did not alter its photosynthetic performance throughout the day in leaves where EW was removed, except under the lowest soil water balance. Furthermore, foliar biochemical metabolism activity also was maintained. Thus, photochemical and gas-exchange values showed a high resilience, although soil water availability decreased. These findings highlight that this evergreen woody species performed under semiarid conditions with high foliar dynamic traits.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/126605
Appears in Collections:气候减缓与适应

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作者单位: Univ Fed Pernambuco, Dept Bot, BR-50670901 Recife, PE, Brazil

Recommended Citation:
Pereira, S.,Figueiredo-Lima, K.,Oliveira, A. F. M.,et al. Changes in foliar epicuticular wax and photosynthesis metabolism in evergreen woody species under different soil water availability[J]. PHOTOSYNTHETICA,2019-01-01,57(1):192-201
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