1 |
左忠,沈爱红,黄婷,等.宁夏荒漠草原保护与利用主要问题及对策[J].生物资源,2024,46(5):494-499.
|
2 |
张茹,李建平,彭文栋,等.柠条枝条覆盖对宁夏荒漠草原土壤水热及补播牧草生物量的影响[J].草业学报,2021,30(4):58-67.
|
3 |
白永飞,黄建辉,郑淑霞,等.草地和荒漠生态系统服务功能的形成与调控机制[J].植物生态学报,2014,38(2):93-102.
|
4 |
王海燕,王红梅,张振杰,等.宁夏东部典型荒漠草原植物群落与土壤耦合特征[J].中国草地学报,2024,46(11):35-47.
|
5 |
冯星星,陈清.草原生态系统影响草本-灌木竞争的主要因素[J].中国草地学报,2024,46(8):137-148.
|
6 |
刘嘉怡,张军,张帆,等.围封对短花针茅荒漠草原优势种群种间联结性的影响[J].生态环境学报,2025,34(2):247-255.
|
7 |
古琛,潘占磊,乌力吉,等.短花针茅荒漠草原引种牧草适应性评价[J].草业与畜牧,2016(1):25-30.
|
8 |
海宝双,全松梅,郭丽珍.北美三种冰草属牧草引种试验[J].内蒙古草业,2000(2):50-52.
|
9 |
宁夏回族自治区林业和草原局.宁夏林业草原志:1996-2020年[M].银川:阳光出版社,2022:1-4.
|
10 |
蔡静如,钱瑭璜,许建新,等.牡荆等6种乡土植物的抗旱性[J].福建林业科技,2016,43(3):133-137.
|
11 |
陈林,陈高路,宋乃平,等.宁夏东部荒漠草原猪毛蒿光合特征和水分利用效率对降水变化的响应[J].草业学报,2022,31(10):87-98.
|
12 |
赵雅欣,张翼,罗叙,等.宁夏荒漠草原地上净初级生产力对降水变化的响应及其影响因子分析[J].草原与草坪,2025,45(2):206-215.
|
13 |
王学琴,张小菊,沈艳,等.宁夏荒漠草原4种典型植物群落生物量时空动态特征及其影响因素[J].草原与草坪,2024,44(6):109-118.
|
14 |
鲍平安,季波,孙果,等.光伏电站建设对植物群落与土壤特征的影响[J].草业学报,2024,33(12):23-33.
|
15 |
苏荣霞.宁夏东部荒漠草原灌木去除初期植物群落与土壤变化特征[D].银川:宁夏大学,2024.
|
16 |
李云飞,张雪,刘智贤,等.宁夏荒漠草原蒙古冰草功能性状和根际效应对土壤性状的响应[J].生态学报,2023,43(21):8683-8691.
|
17 |
张鹏,沈艳,张小菊,等.宁夏荒漠草原优势植物叶片C、N、P生态化学计量特征及群落稳定性研究[J].中国草地学报,2022,44(6):18-26.
|
18 |
Li X, Ryu Y, Xiao J,et al.New-generation geostationary satellite reveals widespread midday depression in dryland photosynthesis during 2020 western U.S.heatwave[J].Science Advances,2023,9(31):15.
|
19 |
Liu S Y, Zheng J M.Adaptive strategies based on shrub leaf-stem anatomy and their environmental interpretations in the eastern Qaidam Basin[J].BMC Plant Biology,2024,24(1):323.
|
20 |
Alhaithloul H A S.Impact of combined heat and drought stress on the potential growth responses of the desert grass artemisia sieberi alba:relation to biochemical and molecular adaptation[J].Plants,2019,8(10):416.
|
21 |
Ahmed Z G, Radwan U, El-sayed M A.Eco-physiological responses of desert and riverain legume plant species to extreme environmental stress[J].Biocatalysis and Agricultural Biotechnology,2020,24:101531.
|
22 |
Madouh T A.Eco-physiological responses of native desert plant species to drought and nutritional levels:case of kuwait[J].Frontiers in Environmental Science,2022,10:785517.
|
23 |
Zavaleta E S, Shaw M R, Chiariello N R,et al.Additive effects of simulated climate changes,elevated CO2,and nitrogen deposition on grassland diversity[J].Proceedings of the National Academy of Sciences,2003,100(13):7650-7654.
|
24 |
Compton J E, Watrud L S, Arlene Porteous L,et al.Response of soil microbial biomass and community composition to chronic nitrogen additions at Harvard forest[J].Forest Ecology and Management,2004,196(1):143-158.
|
25 |
Liu H, Wang Z, Qi F,et al.effects of an eight-year nitrogen and phosphorous addition on leaf photosynthesis and chemistry of mature Castanopsis sclerophylla trees in subtropical China[J].Applied Ecology and Environmental Research,2021,19(5):3737-3751.
|
26 |
Aber J D, Nadelhoffer K J, Steudler P,et al.Nitrogen saturation in northern forest ecosystems[J].BioScience,1989,39(6):378-386.
|
27 |
Zhou X, Zhang Y, Ji X,et al.Combined effects of nitrogen deposition and water stress on growth and physiological responses of two annual desert plants in Northwestern China[J].Environmental and Experimental Botany,2011,74:1-8.
|
28 |
He Y, Geng Y, Han B,et al.Water controls the divergent responses of terrestrial plant photosynthesis under nitrogen enrichment[J].Journal of Ecology,2024,112(11):2638-2651.
|
29 |
Lin Y, Chen Y, Zhang J,et al. Erodium oxyrhinchum sustains severe drought stress by maintaining stable photosynthetic electron transport under progressive drought conditions[J].Environmental and Experimental Botany,2023,211:105374.
|
30 |
Bashir N, Athar H ur R, Kalaji H M,et al.Is photoprotection of PSII one of the key mechanisms for drought tolerance in maize?[J].International Journal of Molecular Sciences,2021,22(24):13490.
|
31 |
Baccari S, Elloumi O, Chaari-rkhis A,et al.Linking leaf water potential,photosynthesis and chlorophyll loss with mechanisms of photo and antioxidant protection in juvenile olive trees subjected to severe drought[J].Frontiers in Plant Science,2020,11:614144.
|
32 |
Ranawana C, Siddique K H M, Palta J A,et al.Stomata coordinate with plant hydraulics to regulate transpiration response to vapour pressure deficit in wheat[J].Functional Plant Biology,2021,48(9):839-850.
|
33 |
Cai G, König M, Carminati A,et al.Transpiration response to soil drying and vapor pressure deficit is soil texture specific[J].Plant and Soil,2022,500(1/2):129-145.
|
34 |
Farooq M, Wahid A, Kobayashi N,et al.Plant drought stress:effects,mechanisms and management[J].Agronomy for Sustainable Development,2009,9:185-212.
|
35 |
Flexas J.Drought-inhibition of photosynthesis in C3 plants:stomatal and non-stomatal limitations revisited[J].Annals of Botany,2002,89(2):183-189.
|
36 |
Flexas J, Ribas-Carbó M, Bota J,et al.Decreased Rubisco activity during water stress is not induced by decreased relative water content but related to conditions of low stomatal conductance and chloroplast CO2 concentration[J].New Phytologist,2006,172(1):73-82.
|
37 |
Tezara W, Mitchell V J, Driscoll S D,et al.Water stress inhibits plant photosynthesis by decreasing coupling factor and ATP[J].Nature,1999,401:914-917.
|
38 |
Xu Z, Zhou G, Shimizu H.Plant responses to drought and rewatering[J].Plant Signaling & Behavior,2010,5(6):649-654.
|
39 |
Flexas J, Gallé A, Galmés J,et al.The response of photosynthesis to soil water stress[M]//Plant Responses to Drought Stress.Berlin,Germany:Springer,2012:129-144.
|
40 |
Perez-Martin A, Michelazzo C, Torres-Ruiz J M,et al.Regulation of photosynthesis and stomatal and mesophyll conductance under water stress and recovery in olive trees:correlation with gene expression of carbonic anhydrase and aquaporins[J].Journal of Experimental Botany,2014,65(12):3143-3156.
|
41 |
Zheng M, Chen H, Li D,et al.Biological nitrogen fixation and its response to nitrogen input in two mature tropical plantations with and without legume trees[J].Biology and Fertility of Soils,2016,52:665-674.
|
42 |
Bahulikar R A, Chaluvadi S R, Torres-Jerez I,et al.Nitrogen fertilization reduces nitrogen fixation activity of diverse diazotrophs in switchgrass roots[J].Phytobiomes Journal,2021,5(1):80-87.
|
43 |
Zhao K, Gao H, Sun Z,et al.Growth of Stipa breviflora does not respond to nitrogen addition because of its conservative nitrogen utilization[J].Frontiers in Ecology and Evolution,2023,11:1106089.
|