Arid
DOI10.1007/s00468-016-1448-8
Mechanistic examination of causes for narrow distribution in an endangered shrub: a comparison of its responses to drought stress with a widespread congeneric species
Cui, Hongxia1; Cong, Shuhua1,2; Wang, Xianzhong3; Hao, Haiping1; Shi, Lei1; Zhang, Huijin1; Li, Zhigang4; Hu, Tianhua4; Qin, Yongsheng5
通讯作者Wang, Xianzhong ; Shi, Lei
来源期刊TREES-STRUCTURE AND FUNCTION
ISSN0931-1890
EISSN1432-2285
出版年2016
卷号30期号:6页码:2227-2236
英文摘要

The endangered status and narrow distribution in Syringa pinnatifolia , a sub-alpine shrub species, were primarily caused by its poor drought adaptation related to its lower degree of physiological adjustment despite its greater degree of morphological plasticity.


Although deep rooting is usually considered a drought-tolerant trait, we found that Syringa pinnatifolia, a deep rooting and hydrotropic shrub, has a limited distribution in arid areas. To elucidate the mechanisms for its narrow distribution, we conducted two experiments to examine the physiological and morphological responses to water availability and heterogeneity in S. pinnatifolia and a widespread congeneric species, S. oblata. We measured gas exchange, water use efficiency, and plasticity index in plants of these two species grown at different levels of soil water regimes and in containers with patched water distribution. Our results showed that high photosynthetic capacity in the narrowly distributed S. pinnatifolia was an important factor enabling its survival in the harsh sub-alpine environment. High photosynthetic capacity in S. pinnatifolia, however, was obtained at the expense of high transpiratory water loss, resulting in lower integrative water use efficiency. Biomass allocation to roots in S. pinnatifolia increased by 73 % when soil water increased from 75 to 95 % field capacity, suggesting that S. pinnatifolia could be less competitive for above-ground resources under favorable water regimes. The horizontal root hydrotropism and vertical root hydrotropism of S. pinnatifolia in soil with patched water patterns were likely related to compensation for leaf water loss at low soil water level, indicating a limited capacity for homeostasis within the plant for water conservation and lower level of inherent drought-tolerance. In summary, greater degree of morphological plasticity but lower degree of physiological adjustment may be the main causes for the hydrotropism and narrow distribution of S. pinnatifolia in the sub-alpine habitats.


英文关键词Endangered species Hydrotropism Lilac Photosynthesis Soil water Syringa
类型Article
语种英语
国家Peoples R China ; USA
收录类别SCI-E
WOS记录号WOS:000387723300027
WOS关键词HYDRAULIC CONDUCTIVITY ; PHENOTYPIC PLASTICITY ; STOMATAL CONDUCTANCE ; PLANT ; EVOLUTION ; LIGHT ; DIVERSITY ; GROWTH ; FOREST ; LIMITS
WOS类目Forestry
WOS研究方向Forestry
来源机构中国科学院植物研究所
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/196710
作者单位1.Chinese Acad Sci, Inst Bot, 20 Nanxincun, Beijing 100093, Peoples R China;
2.Univ Chinese Acad Sci, 15 Yuquanlu, Beijing 100049, Peoples R China;
3.Indiana Univ Purdue Univ, Dept Biol, 723 West Michigan St, Indianapolis, IN 46202 USA;
4.Helan Mt Natl Area, 71 Helan Rd, Yinchuan 750200, Peoples R China;
5.Inst Gardening, 13 Xinhua St, Hohhot 010030, Inner Mongolia, Peoples R China
推荐引用方式
GB/T 7714
Cui, Hongxia,Cong, Shuhua,Wang, Xianzhong,et al. Mechanistic examination of causes for narrow distribution in an endangered shrub: a comparison of its responses to drought stress with a widespread congeneric species[J]. 中国科学院植物研究所,2016,30(6):2227-2236.
APA Cui, Hongxia.,Cong, Shuhua.,Wang, Xianzhong.,Hao, Haiping.,Shi, Lei.,...&Qin, Yongsheng.(2016).Mechanistic examination of causes for narrow distribution in an endangered shrub: a comparison of its responses to drought stress with a widespread congeneric species.TREES-STRUCTURE AND FUNCTION,30(6),2227-2236.
MLA Cui, Hongxia,et al."Mechanistic examination of causes for narrow distribution in an endangered shrub: a comparison of its responses to drought stress with a widespread congeneric species".TREES-STRUCTURE AND FUNCTION 30.6(2016):2227-2236.
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