种植不同宿根花卉对黄河三角洲盐渍土盐分和养分的影响
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S682.1;S156.4+4

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国家自然科学基金项目“黄河三角洲柽柳根系构型对水位—盐分变化的生态响应及调节机制”(32271963);黄河三角洲土地利用安全野外科学观测研究站开放基金资助项目(YWZ202205);滨州学院博士学位人员科研启动项目(2018Y18);国家级大学生创新训练计划项目(202210449003);山东省林草种质资源中心草本植物种质资源普查与收集(B包:徒骇河—马颊河区域)(SDGP3700000000202302002674B-001)


Effects of Different Perennial Flowers on Salinity and Nutrients in Saline Soil of Yellow River Delta
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    摘要:

    [目的] 探究种植不同宿根花卉对黄河三角洲土壤盐分和养分的影响,为选择合适的宿根花卉进行盐渍土生态改良提供物种参考,助力黄河国家战略和盐碱区域美丽乡村建设。[方法] 以种植马蔺(Iris lactea)、紫穗狼尾草(Pennisetum alopecuroides subsp.purple)、常夏石竹(Dianthus plumarius)、天人菊(Gaillardia pulchella)、大花萱草(Hemerocallis hybrida)和八宝景天(Sedum spectabile)的土壤为研究对象,以未种植宿根花卉的裸地土壤为对照,分析花卉种植对土壤含盐量、电导率、Na+,Cl-,速效钾和有效磷含量的影响。[结果] ①种植宿根花卉对黄河三角洲盐渍土具有一定的生态调控效果。种植马蔺和紫穗狼尾草可显著降低0—10 cm土层的含盐量,同时马蔺对10—20 cm土层的含盐量也有一定的降低效果,电导率与含盐量趋势一致。②天人菊、常夏石竹可显著降低0—10 cm土层的Na+和Cl-含量;马蔺和天人菊对土壤中Cl-去除效果较好。③不同宿根花卉对表土层速效钾含量影响不显著,而种植不同宿根花卉可降低10—20 cm土层的有效磷含量,紫穗狼尾草降低效果较小。[结论] 种植马蔺、紫穗狼尾草对盐渍土的改良效果较好,在选择宿根花卉进行黄河三角洲地区盐渍土的生态改良时可优先考虑;大花萱草居中;常夏石竹、天人菊、八宝景天较差。

    Abstract:

    [Objective] The effects of planting different perennial flowers on soil salinity and nutrients in the Yellow River delta were explored, in order to provide species reference for selecting suitable perennial flowers for ecological improvement of saline soil and assist the national strategy of the Yellow River and the construction of beautiful villages in saline-alkali areas. [Methods] The bare soil without planting perennial flowers was taken as the control, the soils planted with Iris lactea, Pennisetum alopecuroides subsp. purple, Dianthus plumarius, Gaillardia pulchella, Hemerocallis hybrida, and Sedum spectabile were examined to find the effects of perennial flowers planting on the soil salt content, electrical conductivity, Na+, Cl-, available potassium, and available phosphorus content. [Results] ① The perennial flower planting showed ecological regulation effects on saline soil in the Yellow River Delta. Among them, I. lactea and P. alopecuroides significantly reduced the salt content in the 0—10 cm soil. At the same time, I. lactea also had a certain effect on reducing the salt content of 10—20 cm soil layer, and the trend of conductivity was consistent with the salt content. ② The contents of Na+ and Cl- in the 0—10 cm soils were significantly reduced by G. pulchella and D. plumarius, and the removal effect of soil Cl- by I. lactea and G. pulchella was significant. ③ Perennial flowers had no significant effect on the content of available potassium in topsoil but reduced the content of available phosphorus in the 10—20 cm soils except P. alopecuroides. [Conclusion] The improvement effect of I. lactea and P. alopecuroides on saline soil was better, and they could be given priority when selecting perennial flowers for ecological improvement of saline soil in the Yellow River delta. H. hybrida had the medium effect, whereas D. plumarius, G. pulchella and S. spectabile had poor effects.

    参考文献
    [1] Davies J. The business case for soil [J]. Nature, 2017,543(7645):309-311.
    [2] 姚荣江,杨劲松.黄河三角洲地区土壤盐渍化特征及其剖面类型分析[J].干旱区资源与环境,2007,21(11):106-112. Yao Rongjiang, Yang Jinsong. Analysis on salinity characteristics and profile types of saline soils in the Yellow River delta [J]. Journal of Arid Land Resources and Environment, 2007,21(11):106-112.
    [3] Fan X, Pedroli B, Liu G, et al. Soil salinity development in the Yellow River delta in relation to groundwater dynamics [J]. Land Degradation & Development, 2012,23(2):175-189.
    [4] 杨劲松,姚荣江.我国盐碱地的治理与农业高效利用[J].中国科学院院刊,2015,30(增刊1):162-170. Yang Jingsong, Yao Rongjiang. Management and efficient agricultural utilization of salt-affectedsoil in China [J]. Bulletin of Chinese Academy of Sciences, 2015,30(Sulppl.1):162-170.
    [5] Yu Junbao, Li Yunzhao, Han Guangxuan, et al. The spatial distribution characteristicsof soil salinity in coastal zone of the Yellow River delta [J]. Environmental Earth Sciences, 2014,72(2):589-599.
    [6] 欧阳竹,王竑晟,来剑斌,等.黄河三角洲农业高质量发展新模式[J].中国科学院院刊,2020,35(2):145-153. Ouyang Zhu, Wang Hongsheng, Lai Jianbin, et al. New approach of high-quality agricultural development in the Yellow River delta [J]. Bulletin of Chinese Academy of Sciences, 2020,35(2):145-153.
    [7] 刘小京,郭凯,封晓辉,等.农业高效利用盐碱地资源探讨[J].中国生态农业学报(中文),2023,31(3):345-353. Liu Xiaojing, Guo Kai, Feng Xiaohui, et al. Discussion on the agricultural efficient utilization of saline-alkali land resources [J]. Chinese Journal of Eco-Agriculture, 2023,31(3):345-353.
    [8] 王倩姿,王玉,孙志梅,等.腐植酸类物质的施用对盐碱地的改良效果[J].应用生态学报,2019,30(4):1227-1234. Wang Qianzi, Wang Yu, Sun Zhimei, et al. Amelioration effect of humic acid on saline-alkali soil [J]. Chinese Journalof Applied Ecology, 2019,30(4):1227-1234.
    [9] 姜展博,宁松瑞,王全九.脱硫石膏改良盐碱土壤综合效果评价研究[J].土壤学报,2024,61(3):699-713. Jiang Zhanbo, Ning Songrui, Wang Quanjiu. A comprehensive evaluation of the effect of desulfurized gypsum for improving saline-alkali soil [J]. Acta Pedologica Sinica,2024,61(3):699-713.
    [10] Xia Jiangbao, Ren Jiayun, Zhang Shuyong, et al. Forest and grass composite patternsimprove the soil quality in the coastal saline-alkali land of the Yellow River delta, China [J]. Geoderma, 2019,349:25-35.
    [11] 杨策,陈环宇,李劲松,等.盐地碱蓬生长对滨海重盐碱地的改土效应[J].中国生态农业学报(中英文),2019,27(10):1578-1586. Yang Ce, Chen Huanyu, Li Jinsong, et al. Soil improving effect of Suaeda salsa on heavycoastal saline-alkaline land [J]. Chinese Journal of Eco-Agriculture, 2019,27(10):1578-1586.
    [12] Ijaz B, Sudiro C, Jabir R, et al. Adaptive behaviour of roots under salt stress correlates with morpho-physiologicalchanges and salinity tolerance in rice [J]. International Journal of Agriculture and Biology, 2019,21(3):667-674.
    [13] 尹德洁,张洁,荆瑞,等.山东滨海盐渍区植物群落与土壤化学因子的关系[J].应用生态学报,2018,29(11):3521-3529. Yin Dejie, Zhang Jie, Jing Rui, et al. Relationships between plant community and soil chemical factors in coastal saline area of Shandong, China [J]. Chinese Journal of Applied Ecology, 2018,29(11):3521-3529.
    [14] Schmidt R, Mitchell J, Scow K. Cover cropping and no-till increase diversity and symbiotroph: Saprotroph ratios of soil fungal communities [J]. Soil Biology and Biochemistry, 2019,129:99-109.
    [15] 王瑞燕,孔沈彬,许璐,等.黄河三角洲不同地表覆被类型和微地貌的土壤盐分空间分布[J].农业工程学报,2020,36(19):132-141. Wang Ruiyan, Kong Shenbin, Xu Lu, et al. Spatial distribution of soil salinity under different surface land cover types and micro-topography in the Yellow River delta [J]. Transactions of the Chinese Society of Agricultural Engineering, 2020,36(19):132-141.
    [16] 马龙,李亚玲,刘诗琪,等.高原湿地公路工程边坡不同恢复措施下土壤理化性质及酶活性[J].水土保持通报,2024,44(4):157-167. Ma Long, Li Yaling, Liu Shiqi, et al. Effeets of different restoration measures on soilphysicochemical properties and enzyme activity of slopes in plateau wetland after highway engineering disturbance [J]. Bulletin of Soil and Water Conservation, 2024,44(4):157-167.
    [17] Muchate N S, Nikalje G C, Rajurkar N S, et al. Physiological responses of the halophyte Sesuvium portulacastrum to salt stress and their relevance for saline soil bio-reclamation [J]. Flora, 2016,224:96-105.
    [18] Liang Wenji, Ma Xiaoli, Wan Peng, et al. Plant salt-tolerance mechanism: A review [J]. Biochemical and Biophysical Research Communications, 2018,495(1):286-291.
    [19] 许盼云,吴玉霞,何天明.植物对盐碱胁迫的适应机理研究进展[J].中国野生植物资源,2020,39(10):41-49. Xu Panyun, Wu Yuxia, He Tianming. Research progress on adaptation mechanism of plants to saline-alkali stress [J]. Chinese Wild Plant Resources, 2020,39(10):41-49.
    [20] Adolf V I, Jacobsen S E, Shabala S. Salt tolerance mechanisms in quinoa (Chenopodium quinoa Willd) [J]. Environmental and Experimental Botany, 2013,92:43-54.
    [21] 刘雪,陈涛,蒋亚蓉,等.6种宿根花卉在土壤干旱胁迫下的生理变化与抗旱性关系[J].西北农业学报,2017,26(1):70-78. Liu Xue, Chen Tao, Jiang Yarong, et al. Relationship between physiological change and drought tolerance in six perennial flowers under drought stress [J]. Acta Agriculturae Boreali-occidentalis Sinica, 2017,26(1):70-78.
    [22] 马玉蕾,王德,刘俊民,等.黄河三角洲典型植被与地下水埋深和土壤盐分的关系[J].应用生态学报,2013,24(9):2423-2430. Ma Yulei, Wang De, Liu Junmin, et al. Relationships between typical vegetations, soil salinity, and groundwater depth in the Yellow River delta of China [J]. Chinese Journal of Applied Ecology, 2013,24(9):2423-2430.
    [23] 岳小红,曹靖,耿杰,等.盐分胁迫对啤酒大麦幼苗生长、离子平衡和根际pH变化的影响[J].生态学报,2018,38(20):7373-7380. Yue Xiaohong, Cao Jing, Geng Jie, et al. Effects of different types of salt stress on growth, ion balance and rhizosphere pH changes in beer barley seedlings [J]. Acta Ecologica Sinica, 2018,38(20):7373-7380.
    [24] 孙娟娟,于林清,赵金梅,等.盐分不均匀分布对紫花苜蓿生长和离子特征的影响[J].中国农业科学,2017,50(22):4299-4306. Sun Juanjuan, Yu Linqing, Zhao Jinmei, et al. Effects of heterogeneous root zone salinity on plant growth and ion characteristic in alfalfa [J]. Scientia Agricultura Sinica, 2017,50(22):4299-4306.
    [25] 张衡锋,杨绮,韦庆翠,等.盐胁迫对10个品种紫薇的影响及其耐盐性综合评价[J].东北林业大学学报,2023,51(9):34-40. Zhang Hengfeng, Yang Qi, Wei Qingcui, et al. Effects of salt stress and salt tolerance on ten Lagerstroemia indica varieties [J]. Journal of Northeast Forestry University, 2023,51(9):34-40.
    [26] 吴鹏,吕剑,郁继华,等.褪黑素对盐碱复合胁迫下黄瓜幼苗光合特性和渗透调节物质含量的影响[J].应用生态学报,2022,33(7):1901-1910. Wu Peng, Lyu Jian, Yu Jihua, et al. Effects of melatonin on photosynthetic properties and osmoregulatory substancecontents of cucumber seedlings under salt-alkali stress [J]. Chinese Journal of Applied Ecology, 2022,33(7):1901-1910.
    [27] 陈文瑞,蒋朝,周齐新,等.不同盐分条件下硅对两个高羊茅品种生物量分配和营养元素氮、磷、钾吸收利用的影响[J].草业学报,2022,31(5)51-60. Chen Wenrui, Jiang Zhao, Zhou Qixin, et al. Effects of silicon on biomass allocation and uptake and utilization of nitrogen, phosphorus, and potassium in two tall fescue (Festuca arundinacea) cultivars under different salinity conditions [J]. Acta Prataculturae Sinica, 2022,31(5):51-60.
    [28] Qu Fanzhu, Shao Hongbo, Meng Ling, et al. Forms and vertical distributions of soil phosphorus in newly formed coastal wetlands in the Yellow River delta estuary[J]. Land Degradation & Development, 2018,29(11):4219-4226.
    [29] 闫晓宇,郭文君,秦都林,等.滨海盐碱地棉花秸秆还田和深松对棉花干物质积累、养分吸收及产量的影响[J].作物学报,2022,48(5):1235-1247. Yan Xiaoyu, Guo Wenjun, Qin Dulin, et al. Effects of cotton stubble return and subsoiling on dry matter accumulation, nutrient uptake, and yield of cotton in coastal saline-alkali soil [J]. Acta Agronomica Sinica, 2022,48(5):1235-1247.
    [30] 慈华聪,田晓明,张楚涵,等.不同盐分处理对狼尾草和大油芒发芽与幼苗生长的影响[J].生态学杂志,2013,32(5):1168-1174. Ci Huacong, Tian Xiaoming, Zhang Chuhan, et al. Effects of salt stress on the seed germination and seedling growth of Pennisetum alopecuroides and Spodipogon sibiricus [J]. Chinese Journal of Ecology, 2013,32(5):1168-1174.
    [31] 咸敬甜,陈小兵,王上,等.盐渍土磷有效性研究进展与展望[J].土壤,2023,55(3):474-486. Xian Jingtian, Chen Xiaobing, Wang Shang, et al. Phosphorus availability in saline soil: A review [J]. Soils, 2023,55(3):474-486.
    [32] 孙军娜,徐刚,邵宏波.黄河三角洲新生湿地磷分布特征及吸附解吸规律[J].地球化学,2014,43(4):346-351. Sun Junna, Xu Gang, Shao Hongbo. Fractionation and adsorption-desorption characteristics of phosphorus in newly formed wetland soils of Yellow River delta, China [J]. Geochimica, 2014,43(4):346-351.
    [33] 刘盛林,丁效东,郑东峰,等.黄河三角洲盐渍化荒地种植植物对土壤改良、磷形态转化及有效性的影响[J].水土保持学报,2021,35(1):278-284. Liu Shenglin, Ding Xiaodong, Zheng Dongfeng, et al. Effect of different plants plantation on amelioration of uncultivated saline wasteland, soils phosphorus fraction and availability in the Yellow River delta [J]. Journal of Soil and Water Conservation, 2021,35(1):278-284.
    [34] 夏静,南丽丽,陈洁,等.低磷胁迫下不同根型苜蓿形态及生理响应[J].中国草地学报,2023,45(10):58-67. Xia Jing, Nan Lili, Chen Jie, et al. Morphological and physiological responses of different root types of alfalfa under low phosphorus stress [J]. Chinese Journal of Grassland, 2023,45(10):58-67.
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李仕辉,赵西梅,王元波,陈为峰,芦月,夏江宝,陈印平,张子涵,李怡然.种植不同宿根花卉对黄河三角洲盐渍土盐分和养分的影响[J].水土保持通报,2024,44(6):23-30,56

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  • 收稿日期:2024-05-20
  • 最后修改日期:2024-09-25
  • 在线发布日期: 2024-12-30