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黄土丘陵区优势造林树种水分来源对季节性干旱的响应
引用本文:吴旭,牛耀彬,荀梦瑶,金俊逸,李娜艳,唐亚坤,陈云明. 黄土丘陵区优势造林树种水分来源对季节性干旱的响应[J]. 生态学报, 2022, 42(10): 4101-4112
作者姓名:吴旭  牛耀彬  荀梦瑶  金俊逸  李娜艳  唐亚坤  陈云明
作者单位:山西农业大学资源环境学院,太谷 030801;西北农林科技大学水土保持研究所,杨凌 712100;中国科学院水利部水土保持研究所黄土高原土壤侵蚀与旱地农业国家重点实验室,杨凌 712100
基金项目:山西省高等学校科技创新(2020L0141,2020L0146);山西农业大学科技创新基金(博士科研启动)(2020BQ44);山西省优秀博士来晋工作奖励(SXYBKY2020007)
摘    要:黄土丘陵区处于季节性干旱生态脆弱地带,探明水分环境变化对区域优势造林树种水分来源的影响,对干旱区植物水分利用及其共生关系具有重要意义。以该地区广泛种植的沙棘(Hippophae rhamnoides)+油松(Pinus tabuliformis)、沙棘(H.rhamnoides)+刺槐(Robinia pseudoacacia)混交林(HrPt,HrRp)及沙棘(Hr)、油松(Pt)和刺槐(Rp)纯林为对象,测定其茎秆水、土壤水和降水稳定同位素组成,采用IsoSource模型量化水分来源,相似性比例指数(PS)定量分析共生植物间水分利用关系。结果表明:(1)旱季,同一树种纯林和混交林间吸水层位存在差异,纯林中主要利用0—100 cm土层土壤水,其中Hr和Rp对40—100 cm的利用率为46.8%和43.8%,Pt对0—40 cm为83.9%;混交林中则更倾向于利用40...

关 键 词:黄土丘陵区  水分来源  混交林  氢、氧稳定同位素  沙棘  油松  刺槐
收稿时间:2021-06-22
修稿时间:2021-12-06

Responses of water source to seasonal drought of dominant afforestation tree species in the loess hilly region of China
WU Xu,NIU Yaobin,XUN Mengyao,JIN Junyi,LI Nayan,TANG Yakun,CHEN Yunming. Responses of water source to seasonal drought of dominant afforestation tree species in the loess hilly region of China[J]. Acta Ecologica Sinica, 2022, 42(10): 4101-4112
Authors:WU Xu  NIU Yaobin  XUN Mengyao  JIN Junyi  LI Nayan  TANG Yakun  CHEN Yunming
Affiliation:College of Resources and Environment, Shanxi Agricultural University, Taigu 030801, China;Institute of Soil and Water Conservation, Northwest Agriculture Northwest Agriculture and Forestry University and Forestry University, Yangling 712100, China;State Key Laboratory of Soil Erosion and Dry Land Farming on the Loess Plateau, Institute of Soil and Water Conservation, Chinese Academy of Sciences, Ministry of Water Resources, Yangling 712100, China
Abstract:The loess hilly region is located in an ecologically fragile area with seasonal drought. Clarifying the impact of changes in the water environment on the water source of regional dominant afforestation tree species is of great significance to the water use of plants and their symbiosis in arid areas. Therefore, two kinds of mixed forests (Hippophae rhamnoides + Pinus tabuliformis, HtPt, H. rhamnoides+Robinia pseudoacacia, HtRp), the pure forests of H. rhamnoides (Ht), P. tabuliformis (Pt), and R. pseudoacacia (Rp) were selected. The isotope composition of xylem water, soil water and precipitation were determined. The water use and the relationship among symbiotic plants were quantitatively analyzed by using the IsoSource model and the proportional similarity (PS) index. The results indicated that:(1) during the dry season, there were differences in water absorption layer between pure forest and mixed forest of the same tree species. The tree species in the pure forest mainly used soil water in the 0-100 cm. The utilization ratios of Hr and Rp to 40-100 cm were 46.8% and 43.8%, and Pt from 0-40 cm was 83.9%. While, in the mixed forests were more inclined to use 40-200 cm. Among them, the utilization rate of HrPt (H. rhamnoides) from 100-200 cm layer was 58.8%, HrPt (P. tabuliformis) from 40-100 cm was 47.4%. HrRp (H. rhamnoides) and HrRp (R. pseudoacacia) from 100-200 cm were 58.2% and 65.3%, respectively. (2) During the wet season, tree species in pure and mixed forests were mainly use soil water in the 0-100 cm, and the utilization rates was above 70%. (3) The PS index in the dry season was significantly greater than that in the wet season, and in the HrRp was the highest, indicating that there might be water competition between H. rhamnoides and R. pseudoacacia. In summary, compared with HrRp, symbiotic plants in HrPt mainly respond to seasonal droughts through spatial differences in water use, which made it much easier for this ecosystem to be adaptive to the fragile ecological environment in the region. The research results can provide a basis for the restoration and reconstruction of regional degraded ecology and the construction of drought-adaptive measures system.
Keywords:hilly loess region  water source  mixed plantation  stable hydrogen and oxygen isotopes  Hippophae rhamnoides  Pinus tabuliformis  Robinia pseudoacacia
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