Arid Land Geography ›› 2023, Vol. 46 ›› Issue (11): 1848-1857.doi: 10.12118/j.issn.1000-6060.2023.055
• Biology and Pedology • Previous Articles Next Articles
GUO Fangjun1,2(),MA Quanlin1,3(),ZHANG Jinchun2,LI Delu2,YUAN Hongbo2,CHEN Fang2,WEI Linyuan2,ZHANG Dekui2
Received:
2022-02-13
Revised:
2023-05-16
Online:
2023-11-25
Published:
2023-12-05
GUO Fangjun, MA Quanlin, ZHANG Jinchun, LI Delu, YUAN Hongbo, CHEN Fang, WEI Linyuan, ZHANG Dekui. Vegetation types, distribution and quantitative characteristics in the desert area of Shiyang River Basin[J].Arid Land Geography, 2023, 46(11): 1848-1857.
Tab. 1
Vegetation types in the desert area of Shiyang River Basin"
植被型组 | 植被型 | 植被亚型 | 群系 |
---|---|---|---|
灌丛 | Ⅰ落叶阔叶灌丛 | (一)温性落叶阔叶灌丛 | 1.柠条锦鸡儿灌丛(Form. Caragana korshinskii) |
2.荒漠锦鸡儿灌丛(Form. Caragana roborovskyi) | |||
3.蒙古扁桃灌丛(Form. Prunus mongolica) | |||
4.多枝柽柳灌丛(Form. Tamarix ramosissima) | |||
5.黑果枸杞灌丛(Form. Lycium ruthenicum) | |||
6.白刺灌丛(Form. Nitraria tangutorum) | |||
草本植被(草地) | Ⅱ丛生草类草地 | (二)丛生草类荒漠草原 | 7.戈壁针茅荒漠草原(Form. Stipa tianschanica) |
8.沙生针茅荒漠草原(Form. Stipa caucasica) | |||
9.短花针茅荒漠草原(Form. Stipa breviflora) | |||
(三)丛生草类盐生草甸 | 10.芨芨草草甸(Form. Neotrinia splendens) | ||
Ⅲ杂类草草地 | (四)杂类草盐生草甸 | 11.马蔺草甸(Form. Iris lactea) | |
12.苦豆子盐生草甸(Form. Sophora alopecuroides) | |||
荒漠 | Ⅳ半乔木与灌木荒漠 | (五)温性灌木荒漠 | 13.膜果麻黄荒漠(Form. Ephedra przewalskii) |
14.霸王荒漠(Form. Zygophyllum xanthoxylum) | |||
15.霸王+驼绒藜荒漠(Form. Zygophyllum xanthoxylum+Krascheninnikovia ceratoides) | |||
16.梭梭荒漠(Form. Haloxylon ammodendron) | |||
17.沙木蓼荒漠(Form. Atraphaxis bracteata) | |||
18.沙拐枣荒漠(Form. Calligonum mongolicum) | |||
Ⅴ半灌木与草本荒漠 | (六)温性半灌木与草本荒漠 | 19.猫头刺荒漠(Form. Oxytropis aciphylla) | |
20.泡泡刺荒漠(Form. Nitraria sphaerocarpa) | |||
21.驼绒藜荒漠(Form. Krascheninnikovia ceratoides) | |||
22.绵刺荒漠(Form. Potaninia mongolica) | |||
23.红砂荒漠(Form. Reaumuria songarica) | |||
24.珍珠柴荒漠(Form. Caroxylon passerinum) | |||
25.合头藜荒莫(Form. Sympegma regelii) | |||
26.鹰爪柴荒漠(Form. Convolvulus gortschakovii) | |||
27.盐爪爪荒漠(Form. Kalidium foliatum) | |||
28.短叶假木贼荒漠(Form. Anabasis brevifolia) | |||
29.中亚紫菀木荒漠(Form. Asterothamnus centraliasiaticus) | |||
30.沙蒿荒漠(Form. Artemisia desertorum) | |||
31.黑沙蒿荒漠(Form. Artemisia ordosica) | |||
32.裸果木荒漠(Form. Gymnocarpos przewalskii) | |||
33.内蒙古旱蒿荒漠(Form. Artemisia xerophytica) | |||
34.灌木亚菊荒漠(Form. Ajania fruticulosa) | |||
35.白麻荒漠(Form. Apocynum pictum) | |||
36.红砂+珍珠柴荒漠(Form. Reaumuria songarica+Caroxylon passerinum) | |||
37.红砂+盐爪爪荒漠(Form. Reaumuria songarica+Kalidium foliatum) | |||
38.红砂+泡泡刺荒漠(Form. Reaumuria songarica+Nitraria sphaerocarpa) | |||
39.红砂+合头藜荒漠(Form. Reaumuria songarica+Sympegma regelii) | |||
沼泽与水生植被 | Ⅵ草本与苔藓沼泽 | (七)草本沼泽 | 40.芦苇沼泽(Form. Phragmites australis) |
Tab. 2
Plant life form classification system in the desert area of Shiyang River Basin"
生活型 | 木本 | 半木本 | 草本 | |||||||
---|---|---|---|---|---|---|---|---|---|---|
乔木 | 灌木 | 半灌木 | 小半灌木 | 多年生草本 | 一年生草本 | 寄生草本 | 水生草本 | |||
科数 | 5 | 20 | 6 | 5 | 33 | 23 | 4 | 8 | ||
百分比/% | 8.77 | 35.09 | 10.53 | 8.77 | 57.89 | 40.35 | 7.02 | 14.04 | ||
属数 | 6 | 27 | 17 | 9 | 116 | 88 | 4 | 10 | ||
百分比/% | 2.35 | 10.59 | 6.67 | 3.53 | 45.49 | 34.51 | 1.57 | 3.92 | ||
种数 | 7 | 57 | 23 | 12 | 241 | 123 | 9 | 14 | ||
百分比/% | 1.44 | 11.73 | 4.73 | 2.47 | 49.59 | 25.31 | 1.85 | 2.88 |
Tab. 3
Quantative characteristics of typical plant communities in Shiyang River Basin"
编号 | 植物群落类型 | 优势种 | 种群密株/hm2 | 种群高度/cm | 种群冠幅/cm2 | 种群盖度/% | 种群重要值 | 群落盖度/% |
---|---|---|---|---|---|---|---|---|
1 | 柠条锦鸡儿-沙生针茅群落 | 柠条锦鸡儿(Caragana korshinskii) 沙生针茅(Stipa caucasica) | 840.0±56.3 | 150.0±6.7 | 25553.3±2122.6 | 14.6±0.9 | 0.48±0.03 | 29.8±1.8 |
10000.0±927.6 | 24.0±1.7 | 1438.9±124.3 | 14.4±1.2 | 0.38±0.07 | ||||
2 | 白刺群落 | 白刺(Nitraria tangutorumi) | 260.0±11.8 | 68.9±4.8 | 174383.4±15428.6 | 12.0±0.8 | 0.69±0.06 | 12.5±1.1 |
3 | 黑果枸杞群落 | 黑果枸杞(Lycium ruthenicum) | 12233.3±489.4 | 20.5±2.1 | 638.1±42.1 | 2.9±0.1 | 0.77±0.12 | 3.4±0.3 |
尖叶盐爪爪(Kalidium cuspidatum) | 1400.0±98.6 | 18.5±1.7 | 561.9±43.8 | 0.4±0.1 | 0.19±0.06 | |||
4 | 内蒙古旱蒿群落 | 内蒙古旱蒿(Artemisia xerophytica) | 25266.7±212.3 | 18.3±1.7 | 605.1±51.2 | 6.8±0.7 | 0.63±0.08 | 7.0±0.2 |
5 | 膜果麻黄+沙拐枣群落 | 膜果麻黄(Ephedra przewalski) | 840.0±42.6 | 46.7±2.4 | 14747.5±1377.6 | 4.5±0.3 | 0.29±0.11 | 8.0±0.3 |
沙拐枣(Calligonum mongolicum) | 460.0±22.3 | 30.4±3.1 | 1281.8±124.6 | 2.2±0.2 | 0.21±0.08 | |||
6 | (霸王)-沙生针茅群落 | 霸王(Zygophyllum xanthoxylum) | 1133.3±89.6 | 50.4±3.4 | 6332.1±421.4 | 0.6±0.1 | 0.17±0.04 | 9.0±0.4 |
沙生针茅(Stipa caucasica) | 73000.0±1569.8 | 4.8±0.2 | 77.2±6.1 | 6.2±0.4 | 0.47±0.06 | |||
7 | 白刺+梭梭群落 | 白刺(Nitraria tangutorumi) | 1000.0±67.5 | 68.8±3.7 | 24664.8±1788.6 | 7.7±0.5 | 0.41±0.08 | 9.1±0.4 |
梭梭(Haloxylon ammodendron) | 220.0±11.2 | 105.7±8.6 | 12409.5±1124.2 | 1.4±0.4 | 0.23±0.07 | |||
8 | 沙木蓼群落 | 沙木蓼(Atraphaxis bracteata) | 27300.0±1493.4 | 64.4±4.7 | 2356.1±136.7 | 9.8±0.7 | 0.55±0.09 | 10.3±1.0 |
9 | (猫头刺)-沙生针茅群落 | 猫头刺(Oxytropis aciphylla) | 17066.7±1394.8 | 11.4±1.1 | 321.5±18.4 | 1.0±0.4 | 0.24±0.11 | 5.0±0.2 |
沙生针茅(Stipa caucasica) | 40000.0±2366.7 | 8.5±0.7 | 61.2±4.6 | 2.8±0.3 | 0.41±0.12 | |||
10 | 泡泡刺+白刺群落 | 泡泡刺(Nitraria sphaerocarpa) | 1850.0±112.4 | 24.6±1.1 | 6835.9±482.4 | 8.2±0.4 | 0.43±0.11 | 12.3±0.7 |
白刺(Nitraria tangutorumi) | 166.7±12.7 | 24.6±1.3 | 14378.2±1137.4 | 1.2±0.3 | 0.17±0.06 | |||
11 | 驼绒藜-戈壁针茅群落 | 驼绒藜(Krascheninnikovia ceratoides) | 4100.0±223.4 | 39.5±2.3 | 3075.5±312.4 | 9.5±0.6 | 0.33±0.07 | 15.1±0.9 |
戈壁针茅(Stipa tianschanica) | 26666.7±1728.3 | 5.6±0.3 | 111.9±8.3 | 3.1±0.2 | 0.24±0.03 | |||
12 | 绵刺+珍珠柴群落 | 绵刺(Potaninia mongolica) | 5120.0±431.4 | 17.3±1.2 | 1719.7±152.3 | 2.8±0.2 | 0.31±0.03 | 6.0±0.3 |
珍珠柴(Caroxylon passerinum) | 4480.0±328.6 | 16.7±1.5 | 766.7±43.5 | 1.7±0.4 | 0.26±0.07 | |||
13 | 红砂+刺旋花-中亚细柄茅群落 | 红砂(Reaumuria songarica) | 22260.0±1782.4 | 28.3±2.1 | 1886.1±144.7 | 23.9±1.1 | 0.34±0.06 | 31.6±1.6 |
刺旋花(Convolvulus tragacanthoides) | 2150.0±177.2 | 13.7±1.1 | 1244.2±89.6 | 3.6±0.2 | 0.10±0.02 | |||
中亚细柄茅(Ptilagrostis pelliotii) | 42500.0±2367.4 | 34.8±1.8 | 1007.7±67.4 | 2.1±0.2 | 0.13±0.03 | |||
14 | 珍珠柴+泡泡刺+尖叶盐爪爪群落 | 珍珠柴(Caroxylon passerinum) | 7733.3±423.4 | 18.9±2.0 | 799.5±66.2 | 2.6±0.2 | 0.32±0.04 | 5.0±0.2 |
泡泡刺(Nitraria sphaerocarpa) | 2533.3±211.3 | 17.0±1.6 | 1169.3±68.9 | 1.3±0.1 | 0.15±0.06 | |||
尖叶盐爪爪(Kalidium cuspidatum) | 1600.0±197.4 | 16.2±0.9 | 1087.3±82.4 | 0.8±0.1 | 0.11±0.02 | |||
15 | 合头藜群落 | 合头藜(Sympegma regelii) | 20000.0±1760.4 | 23.3±1.2 | 392.5±26.3 | 7.9±0.6 | 0.58±0.03 | 8.9±0.7 |
16 | (鹰爪柴)-骆驼蒿+沙生针茅群落 | 鹰爪柴(Convolvulus gortschakovii) | 21933.3±1781.4 | 10.6±1.2 | 273.9±16.7 | 0.7±0.1 | 0.10±0.02 | 12.2±0.6 |
骆驼蒿(Peganum nigellastrum) | 30333.3±2444.5 | 6.3±0.6 | 12.1±0.8 | 3.7±0.3 | 0.27±0.12 | |||
沙生针茅(Stipa caucasica) | 13333.3±986.3 | 6.2±0.3 | 36.7±1.8 | 4.0±0.3 | 0.18±0.03 | |||
17 | 盐爪爪群落 | 盐爪爪(Kalidium foliatum) | 8300.0±678.4 | 27.7±1.4 | 2694.7±134.6 | 21.6±1.1 | 0.86±0.04 | 21.8±1.7 |
18 | 短叶假木贼+红砂群落 | 短叶假木贼(Anabasis brevifolia) | 42033.3±3421.4 | 6.0±0.9 | 1046.0±45.6 | 0.7±0.2 | 0.45±0.03 | 3.2±0.2 |
红砂(Reaumuria songarica) | 1866.7±142.6 | 16.7±1.1 | 35385.5±2449.6 | 0.6±0.1 | 0.31±0.06 | |||
19 | 中亚紫菀木群落 | 中亚紫菀木(Asterothamnus centraliasiaticus) | 25500.0±2114.9 | 30.5±1.9 | 44217.4±2887.6 | 17.4±1.2 | 0.73±0.07 | 47.2±2.7 |
20 | 沙蒿+黑沙蒿群落 | 沙蒿(Artemisia desertorum) | 3040.0±265.7 | 53.9±3.8 | 4865.1±366.7 | 1.5±0.2 | 0.33±0.08 | 6.4±0.3 |
黑沙蒿(Artemisia ordosica) | 2320.0±178.6 | 45.5±2.8 | 2102.0±168.9 | 1.4±0.3 | 0.26±0.04 | |||
21 | 黑沙蒿群落 | 黑沙蒿(Artemisia ordosica) | 4400.0±361.4 | 68.0±4.7 | 566.9±42.2 | 21.3±1.7 | 0.80±0.03 | 21.4±1.7 |
22 | 红砂+珍珠柴群落 | 红砂(Reaumuria songarica) | 6666.7±488.3 | 16.2±1.3 | 1046.0±76.4 | 0.6±0.1 | 0.31±0.07 | 5.0±0.3 |
珍珠柴(Caroxylon passerinum) | 6233.3±271.4 | 13.3±1.1 | 35385.5±2356.6 | 0.6±0.1 | 0.23±0.08 | |||
23 | 红砂+泡泡刺群落 | 泡泡刺(Nitraria sphaerocarpa) | 1333.3±56.9 | 22.1±1.6 | 5779.6±374.8 | 2.8±0.3 | 0.30±0.04 | 7.1±0.4 |
红砂(Reaumuria songarica) | 1333.3±47.8 | 25.4±1.4 | 2490.5±198.6 | 2.3±0.4 | 0.29±0.06 | |||
24 | 黑沙蒿-芦苇群落 | 黑沙蒿(Artemisia ordosica) | 2480.0±137.6 | 62.5±2.3 | 9115.7±121.4 | 14.7±0.5 | 0.30±0.07 | 34.5±2.1 |
芦苇(Phragmites australis) | 15000.0±1369.4 | 49.5±2.4 | 294.4±13.6 | 13.8±0.6 | 0.25±0.06 | |||
25 | (黑沙蒿)-蒙古韭群落 | 黑沙蒿(Artemisia ordosica) | 3520.0±264.5 | 47.1±2.1 | 5305.6±239.7 | 6.6±0.3 | 0.19±0.04 | 27.7±2.6 |
蒙古韭(Allium mongolicum) | 92000.0±6754.3 | 23.7±2.2 | 251.9±14.9 | 17.3±1.7 | 0.32±0.03 |
Tab. 4
Species diversity index of typical plant communities in the desert area of Shiyang River Basin"
编号 | 植物群落类型 | 物种丰富度 | Simpson多样性指数 | Shannon-Wiener多样性指数 | 种间相遇率 | Pielou均匀度 | 群落生态优势度 |
---|---|---|---|---|---|---|---|
1 | 柠条锦鸡儿-沙生针茅群落(Caragana korshinskii-Stipa caucasica) | 5.8±0.6 | 0.29±0.09 | 0.55±0.12 | 0.29±0.07 | 0.34±0.07 | 0.71±0.06 |
2 | 白刺群落(Nitraria tangutorumi) | 2.7±0.1 | 0.23±0.07 | 0.39±0.22 | 0.25±0.03 | 0.57±0.08 | 0.77±0.05 |
3 | 黑果枸杞群落(Lycium ruthenicum-Kalidium cuspidatum) | 4.6±0.3 | 0.22±0.04 | 0.44±0.18 | 0.22±0.02 | 0.32±0.09 | 0.78±0.04 |
4 | 内蒙古旱蒿群落(Artemisia xerophytica) | 5.3±0.4 | 0.74±0.11 | 1.41±0.22 | 0.74±0.12 | 0.88±0.17 | 0.26±0.04 |
5 | 膜果麻黄+沙拐枣群落(Ephedra przewalski+Calligonum mongolicum) | 8.4±0.6 | 0.58±0.21 | 1.03±0.19 | 0.58±0.13 | 0.50±0.12 | 0.42±0.07 |
6 | (霸王)-沙生针茅群落((Zygophyllum xanthoxylum)-Stipa caucasica) | 6.2±0.5 | 0.39±0.07 | 0.85±0.17 | 0.40±0.14 | 0.47±0.03 | 0.61±0.07 |
7 | 白刺+梭梭群落(Nitraria tangutorumi+Haloxylon ammodendron) | 6.5±0.3 | 0.21±0.03 | 0.46±0.09 | 0.22±0.07 | 0.26±0.07 | 0.79±0.06 |
8 | 沙木蓼群落(Atraphaxis bracteata) | 9.7±0.4 | 0.69±0.07 | 1.40±0.30 | 0.69±0.04 | 0.64±0.12 | 0.31±0.07 |
9 | 猫头刺-沙生针茅群落(Oxytropis aciphylla-Stipa caucasica) | 4.3±0.2 | 0.47±0.13 | 0.78±0.10 | 0.47±0.12 | 0.57±0.04 | 0.53±0.03 |
10 | 泡泡刺+白刺群落(Nitraria sphaerocarpa+Nitraria tangutorumi) | 9.2±0.7 | 0.44±0.18 | 0.99±0.20 | 0.44±0.09 | 0.45±0.08 | 0.56±0.02 |
11 | 驼绒藜-戈壁针茅群落(Krascheninnikovia ceratoides-Stipa tianschanica) | 7.2±0.4 | 0.56±0.12 | 1.10±0.24 | 0.56±0.11 | 0.56±0.06 | 0.44±0.08 |
12 | 绵刺+珍珠柴群落(Potaninia mongolica+Caroxylon passerinum) | 5.2±0.2 | 0.71±0.14 | 1.38±0.31 | 0.72±0.12 | 0.86±0.07 | 0.29±0.08 |
13 | 红砂+刺旋花-中亚细柄茅群落(Reaumuria songarica+Convolvulus tragacanthoides-Ptilagrostis pelliotii) | 10.1±1.0 | 0.79±0.22 | 1.71±0.22 | 0.79±0.11 | 0.74±0.08 | 0.21±0.03 |
14 | 珍珠柴+泡泡刺+尖叶盐爪爪群落(Caroxylon passerinum+Nitraria sphaerocarpa+Kalidium cuspidatum) | 14.5±1.2 | 0.81±0.07 | 1.95±0.24 | 0.81±0.14 | 0.74±0.11 | 0.19±0.03 |
15 | 合头藜群落(Sympegma regelii) | 2.6±0.2 | 0.24±0.08 | 0.41±0.17 | 0.25±0.07 | 0.59±0.09 | 0.76±0.11 |
16 | (鹰爪柴)-骆驼蒿+沙生针茅群落(Convolvulus gortschakovii)-Peganum nigellastrum+Stipa caucasica) | 11.3±1.8 | 0.71± 0.07 | 1.62±0.09 | 0.71±0.06 | 0.68±0.06 | 0.29±0.02 |
17 | 盐爪爪群落(Kalidium foliatum) | 2.1±0.2 | 0.21±0.11 | 0.36±0.07 | 0.21±0.03 | 0.52±0.14 | 0.79±0.04 |
18 | 短叶假木贼+红砂群落(Anabasis brevifolia+Reaumuria songarica) | 8.2±0.8 | 0.76±0.14 | 1.61±0.16 | 0.76±0.11 | 0.77±0.12 | 0.24±0.04 |
19 | 中亚紫菀木群落(Asterothamnus centraliasiaticus) | 12.7±1.1 | 0.73±0.14 | 1.66±0.19 | 0.73±0.06 | 0.67±0.19 | 0.27±0.06 |
20 | 沙蒿+黑沙蒿群落(Artemisia desertorum+Artemisia ordosica) | 4.3±0.4 | 0.63±0.07 | 1.14±0.22 | 0.63±0.09 | 0.82±0.11 | 0.37±0.08 |
21 | 黑沙蒿群落(Artemisia ordosica) | 2.6±0.2 | 0.42±0.06 | 0.62±0.13 | 0.43±0.12 | 0.89±0.09 | 0.58±0.07 |
22 | 红砂+珍珠柴群落(Reaumuria songarica+Caroxylon passerinum) | 13.1±1.9 | 0.62±0.03 | 1.25±0.11 | 0.62±0.09 | 0.49±0.14 | 0.38±0.03 |
23 | 红砂+泡泡刺群落(Reaumuria songarica+Nitraria sphaerocarpa) | 16.3±1.2 | 0.87±0.02 | 2.23±0.37 | 0.87±0.22 | 0.81±0.07 | 0.13±0.02 |
24 | 黑沙蒿-芦苇群落(Artemisia ordosica-Phragmites australis) | 6.4±0.8 | 0.81±0.04 | 1.69±0.21 | 0.78±0.21 | 0.94±0.05 | 0.19±0.02 |
25 | (黑沙蒿)-蒙古韭群落((Artemisia ordosica)-Allium mongolicum) | 8.2±1.1 | 0.63±0.06 | 1.26±0.21 | 0.63±0.17 | 0.61±0.04 | 0.37±0.05 |
[1] | 张华, 张玉红, 张改改. 民勤绿洲青土湖植被优势种地上生物量估算[J]. 干旱区地理, 2020, 43(1): 201-210. |
[ Zhang Hua, Zhang Yuhong, Zhang Gaigai. Aboveground biomass estimation of the dominant species of vegetation in the Qingtu Lake at Minqin Qasis[J]. Arid Land Geography, 2020, 43(1): 201-210. ] | |
[2] | 李小玉, 肖笃宁. 石羊河流域中下游绿洲土地利用变化与水资源动态研究[J]. 水科学进展, 2005, 16(5): 643-648. |
[ Li Xiaoyu, Xiao Duning. Dynamics of water resources and land use in oases in middle and lower reaches of Shiyang River watershed, northwest China[J]. Advances in Water Science, 2005, 16(5): 643-648. ] | |
[3] | 常兆丰, 韩福贵, 仲生年, 等. 石羊河下游沙漠化的自然因素和人为因素及其位移[J]. 干旱区地理, 2005, 28(2): 150-155. |
[ Chang Zhaofeng, Han Fugui, Zhong Shengnian, et al. Natural and artificial factors and their transfer on sandy desertification of lower reaches of Shiyang River Basin[J]. Arid Land Geography, 2005, 28(2): 150-155. ] | |
[4] | 刘虎俊, 王继和, 常兆丰, 等. 石羊河下游荒漠植物区系及其植被特征[J]. 生态学杂志, 2006, 25(2): 113-118. |
[ Liu Hujun, Wang Jihe, Chang Zhaofeng, et al. Characteristics of desert flora and vegetation in lower reach of Shiyang River Basin[J]. Chinese Journal of Ecology, 2006, 25(2): 113-118. ] | |
[5] | 王琪, 史基安, 张中宁, 等. 石羊河流域环境现状及其演化趋势分析[J]. 中国沙漠, 2003, 23(1): 46-54. |
[ Wang Qi, Shi Ji’an, Zhang Zhongning, et al. Current situation of the environment in Shiyang River Basin and its evolutionary trends[J]. Journal of Desert Research, 2003, 23(1): 46-54. ] | |
[6] | 吴征镒. 中国植被[M]. 北京: 科学出版社, 1980: 145-187. |
[ Wu Zhengyi. Vegetation of China[M]. Beijing: Science Press, 1980: 145-187. ] | |
[7] | 张新时. 中国植被及其地理格局: 中华人民共和国植被图集1:100万说明书[M]. 北京: 地质出版社, 2007. |
[ Zhang Xinshi. Vegetation and its geographic pattern in China: A 1: 1 million manual for the vegetation atlas of the People’s Republic of China[M]. Beijing: Geological Publishing House, 2007. ] | |
[8] |
郭柯, 方精云, 王国宏, 等. 中国植被分类系统修订方案[J]. 植物生态学报, 2020, 44(2): 111-127.
doi: 10.17521/cjpe.2019.0271 |
[ Guo Ke, Fang Jingyun, Wang Guohong, et al. A revised scheme of vegetation classification system of China[J]. Chinese Journal of Plant Ecology, 2020, 44(2): 111-127. ]
doi: 10.17521/cjpe.2019.0271 |
|
[9] |
方精云, 郭柯, 王国宏, 等. 《中国植被志》的植被分类系统、植被类型划分及编排体系[J]. 植物生态学报, 2020, 44(2): 96-110.
doi: 10.17521/cjpe.2019.0259 |
[ Fang Jingyun, Guo Ke, Wang Guohong, et al. Vegetation classification system and classification of vegetation types used for the compilation “vegetation of China”[J]. Chinese Journal of Plant Ecology, 2020, 44(2): 96-110. ]
doi: 10.17521/cjpe.2019.0259 |
|
[10] | 黄大燊. 甘肃植被[M]. 兰州: 甘肃科学技术出版社, 1997. |
[ Huang Dashen. Vegetation of Gansu[M]. Lanzhou: Gansu Science and Technology Press, 1997. ] | |
[11] | 中国科学院内蒙古宁夏综合考察队. 内蒙古植被[M]. 北京: 科学出版社, 1985. |
[ Integrated Expedition to Inner Mongolia and Ningxia,Chinese Academy of Sciences. Vegetation of Inner Mongolia[M]. Beijing: Science Press, 1985. ] | |
[12] | 同文轩. 甘肃草场植被与草地生态系统[M]. 兰州: 甘肃科学技术出版社, 2010. |
[ Tong Wenxuan. Grassland vegetation and grassland ecosystems in Gansu[M]. Lanzhou: Gansu Science and Technology Press, 2010. ] | |
[13] |
李得禄, 马全林, 张锦春, 等. 腾格里沙漠植被特征[J]. 中国沙漠, 2020, 40(4): 223-233.
doi: 10.7522/j.issn.1000-694X.2020.00053 |
[ Li Delu, Ma Quanlin, Zhang Jinchun, et al. Vegetation characteristics of the Tengger Desert[J]. Journal of Desert Research, 2020, 40(4): 223-233. ]
doi: 10.7522/j.issn.1000-694X.2020.00053 |
|
[14] | 汪殿蓓, 暨淑仪, 陈飞鹏. 植物群落物种多样性研究综述[J]. 生态学杂志, 2001, 20(4): 55-60. |
[ Wang Dianbei, Ji Shuyi, Chen Feipeng. A review on the species diversity of plant community[J]. Chinese Journal of Ecology, 2001, 20(4): 55-60. ] | |
[15] | 马全林, 袁宏波, 张锦春, 等. 乌兰布和沙漠植被[M]. 兰州: 甘肃科学技术出版社, 2018: 32-36. |
[ Ma Quanlin, Yuan Hongbo, Zhang Jinchun, et al. Vegetation in the Ulan Buh Desert[M]. Lanzhou: Gansu Science and Technology Press, 2018: 32-36. ] | |
[16] | 李得禄, 刘世增, 纪永福, 等. 民勤连古城自然保护区异质生境中沙木蓼群落结构及物种多样性[J]. 西北林学院学报, 2016, 31(5): 85-89, 181. |
[ Li Delu, Liu Shizeng, Ji Yongfu, et al. Community structure and species diversity of Atraphaxis bracteata in Minqin Liangucheng Nature Reserve[J]. Journal of Northwest Forestry University, 2016, 31(5): 85-89, 181. ] | |
[17] | 王蒙, 董治宝, 罗万银, 等. 巴丹吉林沙漠南缘植被物种多样性及其与土壤特性的关系[J]. 西北植物学报, 2015, 35(2): 379-388. |
[ Wang Meng, Dong Zhibao, Luo Wanyin, et al. Species diversity of vegetation and its relationship with soil characteristics in the southern marginal zone of the Badain Jaran Desert[J]. Acta Botanica Boreali-Occidentalia Sinica, 2015, 35(2): 379-388. ] | |
[18] |
Asem S O, Roy W Y. Biodiversity and climate change in Kuwait[J]. International Journal of Climate Change Strategies and Management, 2010, 2(1): 68-83.
doi: 10.1108/17568691011020265 |
[19] |
靳虎甲, 马全林, 何明珠, 等. 石羊河下游白刺灌丛演替过程中群落结构及数量特征[J]. 生态学报, 2013, 33(7): 2248-2259.
doi: 10.5846/stxb |
[ Jin Hujia, Ma Quanlin, He Mingzhu, et al. Analysis on community structure and quantitative characteristics of Nitraria tangutorum nebkhas at different succession stage in lower reaches of Shiyang River[J]. Acta Ecologica Sinica, 2013, 33(7): 2248-2259. ]
doi: 10.5846/stxb |
|
[20] | 胡秀芳, 吴家祺, 鲁凤. 1995—2015年石羊河流域生物多样性维持服务时空格局研究[J]. 南通大学学报(自然科学版), 2018, 17(4): 42-47. |
[ Hu Xiufang, Wu Jiaqi, Lu Feng. Spatiotemporal pattern study on biodiversity maintenance service of Shiyang River Basin in 1995—2015[J]. Journal of Nantong University (Natural Science Edition), 2018, 17(4): 42-47. ] | |
[21] | 高超, 赵军, 王玉纯, 等. 石羊河流域自然植被对生态系统服务的约束效应[J]. 生态学报, 2020, 40(9): 2851-2862. |
[ Gao Chao, Zhao Jun, Wang Yuchun, et al. Study on the constraint effect of natural vegetation on ecosystem services in the Shiyang River Basin[J]. Acta Ecologica Sinica, 2020, 40(9): 2851-2862. ] | |
[22] | 赵鹏, 徐先英, 姜生秀, 等. 石羊河下游不同衰退程度多枝柽柳灌丛水分利用格局研究[J]. 生态学报, 2022, 42(17): 7187-7197. |
[ Zhao Peng, Xu Xianying, Jiang Shengxiu, et al. Water utilization pattern of Tamarix ramosissima Ledeb. Nebkhas with different decline degrees in the lower reaches of Shiyang River[J]. Acta Ecologica Sinica, 2022, 42(17): 7187-7197. ] | |
[23] | 杜佳倩, 刘彤, 王寒月, 等. 新疆荒漠一年生植物区系组成、分布及资源类型[J]. 干旱区研究, 2022, 39(1): 185-209. |
[ Du Jiaqian, Liu Tong, Wang Hanyue, et al. Floristic composition, distribution, and resource types of desert annual plants in Xinjiang[J]. Arid Zone Research, 2022, 39(1): 185-209. ] | |
[24] |
曾晓玲, 刘彤, 张卫宾, 等. 古尔班通古特沙漠西部地下水位和水质变化对植被的影响[J]. 生态学报, 2012, 32(5): 1490-1501.
doi: 10.5846/stxb |
[ Zeng Xiaoling, Liu Tong, Zhang Weibin, et al. Variations in groundwater levels and quality and their effects on vegetation in the western Grurbantonggut Desert[J]. Acta Ecologica Sinica, 2012, 32(5): 1490-1501. ]
doi: 10.5846/stxb |
|
[25] |
李丽丽, 王大为, 韩涛. 2000—2015年石羊河流域植被覆盖度及其对气候变化的响应[J]. 中国沙漠, 2018, 38(5): 1108-1118.
doi: 10.7522/j.issn.1000-694X.2017.00061 |
[ Li Lili, Wang Dawei, Han Tao. Vegetation cover in the Shiyang River Basin and its response to climate change from 2000—2015[J]. Journal of Desert Research, 2018, 38(5): 1108-1118. ]
doi: 10.7522/j.issn.1000-694X.2017.00061 |
|
[26] | 戴文渊, 郭武, 郑志祥, 等. 石羊河流域水生态安全影响因子及驱动机制研究[J]. 干旱区研究, 2022, 39(5): 1555-1563. |
[ Dai Wenyuan, Guo Wu, Zheng Zhixiang, et al. Water ecological security influence factor and driving mechanism research in Shiyang River Basin[J]. Arid Zone Research, 2022, 39(5): 1555-1563. ] | |
[27] | 叶静芸, 吴波, 贾晓红, 等. 极干旱区稀疏荒漠植被地上生物量遥感估算[J]. 干旱区地理, 2022, 45(2): 478-487. |
[ Ye Jingyun, Wu Bo, Jia Xiaohong, et al. Estimation of aboveground biomass of sparse desert vegetation based on remote sensing techniques in hyper-arid area[J]. Arid Land Geography, 2022, 45(2): 478-487. ] | |
[28] | 魏士禹, 郭云彤, 崔亚莉, 等. 1985—2016年民勤地下水位及储变量动态特征分析[J]. 干旱区地理, 2021, 44(5): 1272-1280. |
[ Wei Shiyu, Guo Yuntong, Cui Yali, et al. Dynamic characteristics of groundwater level and storage variables in Minqin from 1985 to 2016[J]. Arid Land Geography, 2021, 44(5): 1272-1280. ] |
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