Chin J Plant Ecol ›› 2012, Vol. 36 ›› Issue (8): 763-773.DOI: 10.3724/SP.J.1258.2012.00763
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WANG Guo-Dong1,2, LÜ Xian-Guo1, JIANG Ming1,*(), WANG Ming1,2, ZHAO Kui-Yi1, LOU Yan-Jing1
Received:
2012-01-09
Accepted:
2012-04-25
Online:
2012-01-09
Published:
2012-08-21
Contact:
JIANG Ming
WANG Guo-Dong, LÜ Xian-Guo, JIANG Ming, WANG Ming, ZHAO Kui-Yi, LOU Yan-Jing. Characteristics of the soil seed banks and relationships with the vegetation in restored wetlands in Sanjiang Plain, northeast of China[J]. Chin J Plant Ecol, 2012, 36(8): 763-773.
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URL: https://www.plant-ecology.com/EN/10.3724/SP.J.1258.2012.00763
生活型 Life form | 物种 Species | 种子密度 Seed density (individuals·m-2) | |||
---|---|---|---|---|---|
开垦湿地 FW | 恢复7年湿地 RW-7 | 恢复14年湿地 RW-14 | 天然湿地 NW | ||
灌木 | 细叶沼柳 Salix rosmarinifolia | 16 ± 16 | 144 ± 41 (64) | 256 ± 98 (80) | 244 ± 49 (40) |
Shrub | 越桔柳 Salix myrtilloides | 0 | 16 ± 16 | 32 ± 32 | 8 ± 8 |
粉花绣线菊 Spiraea japonica | 0 | 0 | 16 ± 16 (16) | 96 ± 37 (56) | |
多年生草本 | 小叶章 Calamagrostis angustifolia | 0 | 160 ± 40 (16) | 608 ± 115 (288) | 856 ± 209 (376) |
Perennial herb | 湿薹草 Carex humida | 0 | 0 | 0 | 64 ± 29 (56) |
薹草 Carex dispalata | 0 | 0 | 96 ± 30 (16) | 8 ± 8 | |
毛薹草 Carex duriuscula | 0 | 0 | 0 | 8 ± 8 | |
球尾花 Lysimachia thyrsiflora | 0 | 64 ± 47 | 0 | 0 | |
五脉山黧豆 Lathyrus quinquenervius | 0 | 0 | 0 | 40 ± 27 (40) | |
水苏 Stachys japonica | 0 | 64 ± 21 (16) | 16 ± 8 (16) | 24 ± 12 | |
三裂慈菇 Sagittaria trifolia | 0 | 16 ± 16 | 0 | 0 | |
龙江凤毛菊 Saussurea amurensis | 16 ± 16 | 0 | 288 ± 162 | 40 ± 40 (40) | |
宽叶香蒲 Typha latifolia | 160 ± 59 | 176 ± 45 | 144 ± 49 (64) | 200 ± 35 (24) | |
苣荬菜 Sonchus brachyotus | 0 | 0 | 48 ± 32 | 128 ± 66 (48) | |
线叶黑三棱 Sparganium angustifolium | 0 | 0 | 0 | 72 ± 29 | |
菹草 Potamogeton crispus | 96 ± 40 | 192 ± 80 | 825 ± 360 | 160 ± 16 | |
沼泽早熟禾 Poa palustris | 0 | 384 ± 108 (112) | 112 ± 80 | 16 ± 10 | |
灯芯草 Juncus effusus | 0 | 1712 ± 825 (224) | 464 ± 203 (32) | 16 ± 10 | |
地瓜苗 Lycopus lucidus | 0 | 80 ± 29 (64) | 32 ± 20 (16) | 0 | |
老鹳草 Geranium wilfordii | 0 | 0 | 48 ± 48 (48) | 0 | |
泽芹 Sium suave | 0 | 48 ± 48 (48) | 0 | 0 | |
垂穗粉花地榆 Sanguisorba tenuifolia | 0 | 96 ± 49 (48) | 0 | 16 ± 16 (16) | |
山酢浆草 Oxalis acetosella | 0 | 16 ± 16 (16) | 0 | 0 | |
兴安拉拉藤 Galium dahuricum | 0 | 0 | 0 | 8 ± 8 | |
堇菜 Viola verecunda | 0 | 16 ± 16 (16) | 0 | 8 ± 8 | |
东北婆婆纳 Veronica rotunda | 0 | 16 ± 16 (16) | 0 | 72 ± 42 (32) | |
车前 Plantago asiatica | 0 | 0 | 0 | 8 ± 8 | |
牛鞭草 Hemarthria sibirica | 0 | 0 | 80 ± 29 | 24 ± 17 | |
乌腺金丝桃 Hepericum attenuatum | 0 | 48 ± 32 (16) | 16 ± 16 | 8 ± 8 | |
苦草 Vallisneria spiralis | 0 | 0 | 0 | 8 ± 8 | |
鳞毛羽节蕨 Gymnocarpium dryopteris | 80 ± 16 | 1216 ± 429 (232) | 2896 ± 1374 (50) | 5280 ± 2475 (1624) | |
还阳参 Crepis crocea | 0 | 0 | 96 ± 35 (16) | 80 ± 37 (32) | |
草莓 Fragaria ananassa | 0 | 0 | 0 | 8 ± 8 | |
苋属一种 Amaranthus sp. | 0 | 0 | 16 ± 16 (16) | 0 | |
大活 Angelica dahurica | 0 | 208 ± 72 (64) | 144 ± 73 (32) | 112 ± 49 (16) | |
金鱼藻 Ceratophyllum demersum | 0 | 0 | 16 ± 16 | 216 ± 115 | |
宽叶山蒿 Artemisia stolonifera | 0 | 0 | 64 ± 32 (20) | 8 ± 8 | |
一、二年生草本 | 赛繁缕 Stellaria neglecta | 0 | 16 ± 16 | 80 ± 80 | 8 ± 8 |
One biennial herb | 东北鼠曲草 Gnaphalium mandshuricum | 16 ± 8 | 176 ± 109 | 272 ± 94 | 304 ± 155 |
野稗 Echinochloa crusgalli | 16 ± 8 | 0 | 96 ± 24 | 104 ± 52 | |
荠菜 Capsella bursa-pastoris | 32 ± 16 | 352 ± 314 | 752 ± 497 | 288 ± 116 | |
卵穗荸荠 Eleocharis ovata | 0 | 144 ± 98 | 16 ± 16 | 16 ± 10 | |
水蓼 Polygonum hydropiper | 0 | 0 | 0 | 24 ± 12 | |
芒剪股颖 Agrostis trinii | 0 | 0 | 0 | 16 ± 16 | |
灰绿藜 Chenopodium glaucum | 0 | 16 ± 16 | 48 ± 21 | 48 ± 25 | |
狗尾草 Setaria viridis | 0 | 0 | 48 ± 21 | 8 ± 8 | |
总数 Total | 432 ± 51 | 5376 ± 1042 (952) | 7625 ± 1213 (690) | 8632 ± 1526 (2400) |
Table 1 Germination species and seed density of farmed wetland, restored wetlands and natural wetlands in the Sanjiang Plain (mean ± SE)
生活型 Life form | 物种 Species | 种子密度 Seed density (individuals·m-2) | |||
---|---|---|---|---|---|
开垦湿地 FW | 恢复7年湿地 RW-7 | 恢复14年湿地 RW-14 | 天然湿地 NW | ||
灌木 | 细叶沼柳 Salix rosmarinifolia | 16 ± 16 | 144 ± 41 (64) | 256 ± 98 (80) | 244 ± 49 (40) |
Shrub | 越桔柳 Salix myrtilloides | 0 | 16 ± 16 | 32 ± 32 | 8 ± 8 |
粉花绣线菊 Spiraea japonica | 0 | 0 | 16 ± 16 (16) | 96 ± 37 (56) | |
多年生草本 | 小叶章 Calamagrostis angustifolia | 0 | 160 ± 40 (16) | 608 ± 115 (288) | 856 ± 209 (376) |
Perennial herb | 湿薹草 Carex humida | 0 | 0 | 0 | 64 ± 29 (56) |
薹草 Carex dispalata | 0 | 0 | 96 ± 30 (16) | 8 ± 8 | |
毛薹草 Carex duriuscula | 0 | 0 | 0 | 8 ± 8 | |
球尾花 Lysimachia thyrsiflora | 0 | 64 ± 47 | 0 | 0 | |
五脉山黧豆 Lathyrus quinquenervius | 0 | 0 | 0 | 40 ± 27 (40) | |
水苏 Stachys japonica | 0 | 64 ± 21 (16) | 16 ± 8 (16) | 24 ± 12 | |
三裂慈菇 Sagittaria trifolia | 0 | 16 ± 16 | 0 | 0 | |
龙江凤毛菊 Saussurea amurensis | 16 ± 16 | 0 | 288 ± 162 | 40 ± 40 (40) | |
宽叶香蒲 Typha latifolia | 160 ± 59 | 176 ± 45 | 144 ± 49 (64) | 200 ± 35 (24) | |
苣荬菜 Sonchus brachyotus | 0 | 0 | 48 ± 32 | 128 ± 66 (48) | |
线叶黑三棱 Sparganium angustifolium | 0 | 0 | 0 | 72 ± 29 | |
菹草 Potamogeton crispus | 96 ± 40 | 192 ± 80 | 825 ± 360 | 160 ± 16 | |
沼泽早熟禾 Poa palustris | 0 | 384 ± 108 (112) | 112 ± 80 | 16 ± 10 | |
灯芯草 Juncus effusus | 0 | 1712 ± 825 (224) | 464 ± 203 (32) | 16 ± 10 | |
地瓜苗 Lycopus lucidus | 0 | 80 ± 29 (64) | 32 ± 20 (16) | 0 | |
老鹳草 Geranium wilfordii | 0 | 0 | 48 ± 48 (48) | 0 | |
泽芹 Sium suave | 0 | 48 ± 48 (48) | 0 | 0 | |
垂穗粉花地榆 Sanguisorba tenuifolia | 0 | 96 ± 49 (48) | 0 | 16 ± 16 (16) | |
山酢浆草 Oxalis acetosella | 0 | 16 ± 16 (16) | 0 | 0 | |
兴安拉拉藤 Galium dahuricum | 0 | 0 | 0 | 8 ± 8 | |
堇菜 Viola verecunda | 0 | 16 ± 16 (16) | 0 | 8 ± 8 | |
东北婆婆纳 Veronica rotunda | 0 | 16 ± 16 (16) | 0 | 72 ± 42 (32) | |
车前 Plantago asiatica | 0 | 0 | 0 | 8 ± 8 | |
牛鞭草 Hemarthria sibirica | 0 | 0 | 80 ± 29 | 24 ± 17 | |
乌腺金丝桃 Hepericum attenuatum | 0 | 48 ± 32 (16) | 16 ± 16 | 8 ± 8 | |
苦草 Vallisneria spiralis | 0 | 0 | 0 | 8 ± 8 | |
鳞毛羽节蕨 Gymnocarpium dryopteris | 80 ± 16 | 1216 ± 429 (232) | 2896 ± 1374 (50) | 5280 ± 2475 (1624) | |
还阳参 Crepis crocea | 0 | 0 | 96 ± 35 (16) | 80 ± 37 (32) | |
草莓 Fragaria ananassa | 0 | 0 | 0 | 8 ± 8 | |
苋属一种 Amaranthus sp. | 0 | 0 | 16 ± 16 (16) | 0 | |
大活 Angelica dahurica | 0 | 208 ± 72 (64) | 144 ± 73 (32) | 112 ± 49 (16) | |
金鱼藻 Ceratophyllum demersum | 0 | 0 | 16 ± 16 | 216 ± 115 | |
宽叶山蒿 Artemisia stolonifera | 0 | 0 | 64 ± 32 (20) | 8 ± 8 | |
一、二年生草本 | 赛繁缕 Stellaria neglecta | 0 | 16 ± 16 | 80 ± 80 | 8 ± 8 |
One biennial herb | 东北鼠曲草 Gnaphalium mandshuricum | 16 ± 8 | 176 ± 109 | 272 ± 94 | 304 ± 155 |
野稗 Echinochloa crusgalli | 16 ± 8 | 0 | 96 ± 24 | 104 ± 52 | |
荠菜 Capsella bursa-pastoris | 32 ± 16 | 352 ± 314 | 752 ± 497 | 288 ± 116 | |
卵穗荸荠 Eleocharis ovata | 0 | 144 ± 98 | 16 ± 16 | 16 ± 10 | |
水蓼 Polygonum hydropiper | 0 | 0 | 0 | 24 ± 12 | |
芒剪股颖 Agrostis trinii | 0 | 0 | 0 | 16 ± 16 | |
灰绿藜 Chenopodium glaucum | 0 | 16 ± 16 | 48 ± 21 | 48 ± 25 | |
狗尾草 Setaria viridis | 0 | 0 | 48 ± 21 | 8 ± 8 | |
总数 Total | 432 ± 51 | 5376 ± 1042 (952) | 7625 ± 1213 (690) | 8632 ± 1526 (2400) |
物种平均数 Mean number of species | 幼苗数 Number of seedlings | |||
---|---|---|---|---|
F | p | F | p | |
湿地类型 Wetland type (wt) | 42.880 | < 0.001** | 24.138 | < 0.001** |
水分条件 Water regime (wr) | 481.945 | < 0.001** | 246.576 | < 0.001** |
土壤层次 Soil layer (sl) | 20.770 | < 0.001** | 21.920 | < 0.001** |
湿地类型×水分条件 wt × wr | 32.467 | < 0.001** | 13.088 | < 0.001** |
湿地类型×土壤层次 wt × sl | 1.759 | 0.111 | 1.774 | 0.108 |
水分条件×土壤层次 wr × sl | 1.788 | 0.171 | 10.304 | < 0.001** |
湿地类型×水分条件×土壤层次 wt × wr × db | 1.848 | 0.093 | 1.651 | 0.137 |
Table 2 Analysis of variance (three-way ANOVA) on the effects of wetland type, water regime and soil layer for mean number of germination species and seedling emergence from seed bank of wetland
物种平均数 Mean number of species | 幼苗数 Number of seedlings | |||
---|---|---|---|---|
F | p | F | p | |
湿地类型 Wetland type (wt) | 42.880 | < 0.001** | 24.138 | < 0.001** |
水分条件 Water regime (wr) | 481.945 | < 0.001** | 246.576 | < 0.001** |
土壤层次 Soil layer (sl) | 20.770 | < 0.001** | 21.920 | < 0.001** |
湿地类型×水分条件 wt × wr | 32.467 | < 0.001** | 13.088 | < 0.001** |
湿地类型×土壤层次 wt × sl | 1.759 | 0.111 | 1.774 | 0.108 |
水分条件×土壤层次 wr × sl | 1.788 | 0.171 | 10.304 | < 0.001** |
湿地类型×水分条件×土壤层次 wt × wr × db | 1.848 | 0.093 | 1.651 | 0.137 |
Fig. 1 Effects of water regime and soil layer on mean number of species in different restoration succession stages (mean ± SE). FW, farmed wetland; RW-7, 7-year restored wetland; RW-14, 14-year restored wetland; NW, natural wetland.
Fig. 2 Effects of water regime and soil layer on mean number of seedlings in different restoration succession stages (mean ± SE). FW, farmed wetland; RW-7, 7-year restored wetland; RW-14, 14-year restored wetland; NW, natural wetland.
物种 Species | 湿地类型 Wetland type | ||
---|---|---|---|
天然湿地 NW | 恢复7年 RW-7 | 恢复14年 RW-14 | |
小叶章 Calamagrostis angustifoliaP | 1.882√ | 0.518√ | 1.482√ |
宽叶山蒿 Artemisia stoloniferP | 0.173√ | 0.672 | 0.421√ |
垂穗粉花地榆 Sanguisorba tenuifoliaP | 0.087√ | 0.238 | |
芦苇 Phragmites communisP | 0.085 | 0.239 | 0.052 |
粉花绣线菊 Spiraea japonicaP | 0.060√ | 0.241 | |
地瓜苗 Lycopus lucidusP | 0.042 | 0.061√ | |
野火球 Trilolium lupinasterP | 0.039 | 0.003 | |
赛繁缕 Stellaria neglectaa | 0.036 | 0.041√ | 0.011√ |
草莓 Fragaria ananassaP | 0.033√ | 0.038 | 0.057 |
越桔柳 Salix myrtilloidesP | 0.033√ | 0.037√ | |
苣荬菜 Sonchus brachyotusP | 0.028√ | 0.032 | |
兴安拉拉藤 Galium dahuricumP | 0.027√ | 0.003 | |
沼泽早熟禾 Poa palustrisP | 0.02√ | 0.215√ | 0.172√ |
毛薹草 Carex duriusculaP | 0.003√ | 0.072 | |
球尾花 Lysimachia thyrsifloraP | 0.007√ | 0.003 | |
山杨 Populus davidianaP | 0.152 | 0.172 | |
毒芹 Cicuta virosaP | 0.007 | 0.013 | |
千屈菜 Lythrum salicariaP | 0.203 | 0.132 | |
山酢浆草 Oxalis acetosellaP | 0.003√ | ||
细叶沼柳 Salix rosmarinifoliaP | 0.083√ | 0.152√ | |
东北鼠曲草 Gnaphalium mandshuricuma | 0.010√ | 0.013√ | |
灰绿黎 Chenopodium glaucuma | 0.003√ | 0.006√ | |
黄莲花 Lysimachia davuricaP | 0.007 | ||
泽芹 Sium suaveP | 0.003√ | 0.003 | |
问荆 Equisetum arvenseP | 0.054 | 0.003 | |
狭叶黄岑 Scutellaria regelianaP | 0.008 | 0.025 | |
五脉山黧豆 Lathyrus quinquenerviusP | 0.113 | ||
野大豆 Glycine sojaa | 0.004 | ||
柳蒿 Artemisia integrifoliaP | 0.007 | ||
老鹳草 Geranium wilfordiiP | 0.015√ |
Table 3 Species composition and important value of vegetation in different restoration succession stages
物种 Species | 湿地类型 Wetland type | ||
---|---|---|---|
天然湿地 NW | 恢复7年 RW-7 | 恢复14年 RW-14 | |
小叶章 Calamagrostis angustifoliaP | 1.882√ | 0.518√ | 1.482√ |
宽叶山蒿 Artemisia stoloniferP | 0.173√ | 0.672 | 0.421√ |
垂穗粉花地榆 Sanguisorba tenuifoliaP | 0.087√ | 0.238 | |
芦苇 Phragmites communisP | 0.085 | 0.239 | 0.052 |
粉花绣线菊 Spiraea japonicaP | 0.060√ | 0.241 | |
地瓜苗 Lycopus lucidusP | 0.042 | 0.061√ | |
野火球 Trilolium lupinasterP | 0.039 | 0.003 | |
赛繁缕 Stellaria neglectaa | 0.036 | 0.041√ | 0.011√ |
草莓 Fragaria ananassaP | 0.033√ | 0.038 | 0.057 |
越桔柳 Salix myrtilloidesP | 0.033√ | 0.037√ | |
苣荬菜 Sonchus brachyotusP | 0.028√ | 0.032 | |
兴安拉拉藤 Galium dahuricumP | 0.027√ | 0.003 | |
沼泽早熟禾 Poa palustrisP | 0.02√ | 0.215√ | 0.172√ |
毛薹草 Carex duriusculaP | 0.003√ | 0.072 | |
球尾花 Lysimachia thyrsifloraP | 0.007√ | 0.003 | |
山杨 Populus davidianaP | 0.152 | 0.172 | |
毒芹 Cicuta virosaP | 0.007 | 0.013 | |
千屈菜 Lythrum salicariaP | 0.203 | 0.132 | |
山酢浆草 Oxalis acetosellaP | 0.003√ | ||
细叶沼柳 Salix rosmarinifoliaP | 0.083√ | 0.152√ | |
东北鼠曲草 Gnaphalium mandshuricuma | 0.010√ | 0.013√ | |
灰绿黎 Chenopodium glaucuma | 0.003√ | 0.006√ | |
黄莲花 Lysimachia davuricaP | 0.007 | ||
泽芹 Sium suaveP | 0.003√ | 0.003 | |
问荆 Equisetum arvenseP | 0.054 | 0.003 | |
狭叶黄岑 Scutellaria regelianaP | 0.008 | 0.025 | |
五脉山黧豆 Lathyrus quinquenerviusP | 0.113 | ||
野大豆 Glycine sojaa | 0.004 | ||
柳蒿 Artemisia integrifoliaP | 0.007 | ||
老鹳草 Geranium wilfordiiP | 0.015√ |
植被 Vegetation | 种子库 Seed bank | ||||||
---|---|---|---|---|---|---|---|
恢复7年湿地RW-7 | 恢复14年湿地 RW-14 | 天然湿地 NW | 恢复7年湿地 RW-7 | 恢复14年湿地 RW-14 | 天然湿地 NW | ||
恢复7年湿地 RW-7 | 1.00 | 0.53 | 0.35 | 1.00 | 0.47 | 0.43 | |
恢复14年湿地 RW-14 | 1.00 | 0.39 | 1.00 | 0.62 | |||
天然湿地 NW | 1.00 | 1.00 |
Table 4 Similarity coefficient of the vegetation species and seed banks between natural and restored wetlands
植被 Vegetation | 种子库 Seed bank | ||||||
---|---|---|---|---|---|---|---|
恢复7年湿地RW-7 | 恢复14年湿地 RW-14 | 天然湿地 NW | 恢复7年湿地 RW-7 | 恢复14年湿地 RW-14 | 天然湿地 NW | ||
恢复7年湿地 RW-7 | 1.00 | 0.53 | 0.35 | 1.00 | 0.47 | 0.43 | |
恢复14年湿地 RW-14 | 1.00 | 0.39 | 1.00 | 0.62 | |||
天然湿地 NW | 1.00 | 1.00 |
湿地类型 Wetland type | 植被 Vegetation | 种子库 Seed bank | 共有物种数 Common species | 相似性系数 Similarity coefficient |
---|---|---|---|---|
恢复7年湿地 RW-7 | 21 | 24 | 9 | 0.25 |
恢复14年湿地 RW-14 | 25 | 29 | 10 | 0.23 |
天然湿地 NW | 14 | 39 | 10 | 0.23 |
Table 5 Similarity of the seed bank and standing vegetation
湿地类型 Wetland type | 植被 Vegetation | 种子库 Seed bank | 共有物种数 Common species | 相似性系数 Similarity coefficient |
---|---|---|---|---|
恢复7年湿地 RW-7 | 21 | 24 | 9 | 0.25 |
恢复14年湿地 RW-14 | 25 | 29 | 10 | 0.23 |
天然湿地 NW | 14 | 39 | 10 | 0.23 |
Fig. 3 Diversity indexes of the vegetation and seed bank in the natural and restored wetlands. RW-7, 7-year restored wetland; RW-14, 14-year restored wetland; NW, natural wetland.
[1] |
Brown SC, Bedford BL (1997). Restoration of wetland vegetation with transplanted wetland soil: an experimental study. Wetlands, 17, 424-437.
DOI URL |
[2] |
Budelsky RA, Galatowitsch SM (1999). Effects of moisture, temperature, and time on seed germination of five wetland Carices: implications for restoration. Restoration Ecology, 7, 86-97.
DOI URL |
[3] | Chen GQ (陈刚起), Niu HG (牛焕光), Lü XG, ( 吕宪国), Yang Q (杨青) (1996). Mire-wetlands and its agricultural reclamation in the Sanjiang Plain. In: Chen GQ ed. Study on Marsh in the Sanjing Plain (三江平原沼泽研究). Science Press, Beijing. 152-158. (in Chinese) |
[4] |
Craft CB, Reader JM, Sacco JN, Broome SW (1999). Twenty-five years of ecosystem development of constructed Spartina alterniflora (Loisel) marshes. Ecological Applications, 9, 1405-1419.
DOI URL |
[5] |
Falińska K (1999). Seed bank dynamics in abandoned meadows during a 20-year period in the Białowieża National Park. Journal of Ecology, 87, 461-475.
DOI URL |
[6] |
Galatowitsch SM, van der Valk AG (1996). The vegetation of restored and natural prairie wetlands. Ecological Applications, 6, 102-112.
DOI URL |
[7] | Hou ZY (侯志勇), Xie YH (谢永宏), Yu XY (于晓英), Li F (李峰) (2009). Characteristics of soil seed banks in different water level areas after returning farmland into lake in Qingshanyuan of Dongting Lake. Chinese Journal of Applied Ecology (应用生态学报), 20, 1323-1328. (in Chinese with English abstract) |
[8] |
Kalisz S, Peek MA (1993). Extinction dynamics, population growth and seed banks. Oecologia, 95, 314-320.
DOI URL |
[9] |
Kettenring KM, Galatowitsch SM (2011). Carex seedling emergence in restored and natural prairie wetlands. Wetlands, 31, 273-281.
DOI URL |
[10] |
Leck MA (2003). Seed-bank and vegetation development in a created tidal freshwater wetland on the Delaware River, Trenton, New Jersey, USA. Wetlands, 23, 310-343.
DOI URL |
[11] | Li W (李伟), Liu GH (刘贵华), Zhou J (周进), Huang DS (黄德四) (2002). Studies on the seed bank of freshwater wetland: a review. Acta Ecologica Sinica (生态学报), 22, 395-402. (in Chinese with English abstract) |
[12] | Liu GH (刘贵华), Xiao C (肖蒇), Chen SF (陈漱飞), Zhang QF (张全发) (2007). The role of soil seed bank in wetland restoration and biodiversity conservation in the middle and lower reaches of Yangtze River. Progress in Natural Science (自然科学进展), 17, 741-747. (in Chinese) |
[13] |
Liu GH, Li W, Zhou J, Liu WZ, Yang D, Davy AJ (2006). How does the propagule bank contribute to cyclic vegetation change in a lakeshore marsh with seasonal drawdown? Aquatic Botany, 84, 137-143.
DOI URL |
[14] |
Liu GH, Zhou J, Li W, Cheng Y (2005). The seed bank in a subtropical freshwater marsh: implications for wetland restoration. Aquatic Botany, 81, 1-11.
DOI URL |
[15] | Lü XG (吕宪国) (2008). Wetland Ecosystem Study in China (中国湿地与湿地研究). Hebei Science and Technology Publishing House, Shijiazhuang. (in Chinese) |
[16] | Luan JH (栾金花) (2008). Physio-Ecological Characteristics and Adaptation Mechanism of Carex lasiocarpa under Different Hydrological Regime in Sanjiang Plain Wetland (不同水文情势下三江平原湿地毛薹草生理生态特性及适应机制研究). PhD dissertation, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun. 114-119. (in Chinese with English abstract) |
[17] | Ma KP (马克平) (1994). Methods to measure the community biodiversity. In: Qian YQ (钱迎倩), Ma KP (马克平) eds. Theories and Methods of the Biodiversity Research (生物多样性研究的原理与方法). Chinese Science and Technology Press, Beijing. 141-165. (in Chinese) |
[18] |
May RM (1972). Will a large complex system be stable? Nature, 238, 413-414.
DOI URL |
[19] |
Middleton BA (2003). Soil seed banks and the potential restoration of forested wetlands after farming. Journal of Applied Ecology, 40, 1025-1034.
DOI URL |
[20] |
Middleton BA, Wu XB (2008). Landscape spatial distribution and anthropogenic change of seed banks in forested wetlands in the northern Mississippi River Alluvial Valley. EcoScience, 15, 231-240.
DOI URL |
[21] | Mire Department of Changchun Institute of Geography, CAS ( 中国科学院长春地理研究所沼泽研究室) (1983). Mire of Sanjiang Plain (三江平原沼泽). Science Press, Beijing. 1-28. (in Chinese) |
[22] | Mulhouse JM, Galatowitsch SM (2003). Revegetation of prairie pothole wetlands in the mid-continental US: twelve years post-reflooding. Plant Ecology, 169, 143-159. |
[23] | Peterson JE, Baldwin AH (2004). Seedling emergence from seed banks of tidal freshwater wetlands: response to inundation and sedimentation. Aquatic Botany, 78, 243-254. |
[24] | Poiani KA, Johnson WC (1989). Effect of hydroperiod on seed-bank composition in semipermanent prairie wetlands. Canadian Journal of Botany, 67, 856-864. |
[25] | Reinartz JA, Warne EL (1993). Development of vegetation in small created wetlands in southeastern Wisconsin. Wetlands, 13, 153-164. |
[26] | Stroh PA, Hughes FMR, Sparks TH, Mountford JO (2012). The influence of time on the soil seed bank and vegetation across a landscape-scale wetland restoration project. Restoration Ecology, 20, 103-112. |
[27] | van der Valk AG (1981). Succession in wetlands: a Gleasonian approach. Ecology, 62, 688-696. |
[28] | van der Valk AG, Davis CB (1978). The role of seed banks in the vegetation dynamics of prairie glacial marshes. Ecology, 59, 322-325. |
[29] | Vosse S, Esler KJ, Richardson DM, Holmes PM (2008). Can riparian seed banks initiate restoration after alien plant invasion? Evidence from the Western Cape, South Africa. South African Journal of Botany, 74, 432-444. |
[30] | Wang XH (王雪宏), Lü XG (吕宪国), Bao X (暴晓), Wu HT (武海涛), Guo Y (郭岳) (2009). Natural restoration of plant species diversity on reclaimed Calamagrostis angustifolia wetland. Chinese Journal of Ecology (生态学杂志), 28, 1808-1812. (in Chinese with English abstract) |
[31] | Wang XL (王相磊), Zhou J (周进), Li W (李伟), Liu GH (刘贵华), Zhang XJ (张学江) (2003). Seasonal dynamics of soil seed bank in Honghu wetland withdrawn from long term rice culture. Acta Phytoecologica Sinica (植物生态学报), 27, 352-359. (in Chinese with English abstract) |
[32] | Wang XR (王晓荣), Cheng RM (程瑞梅), Feng XH (封晓辉), Guo QS (郭泉水), Xiao WF (肖文发) (2009). Characteristics of soil seed banks in backwater area of Three Gorges Reservoir water-level-fluctuating zone at initial stage of river-flooding. Chinese Journal of Applied Ecology (应用生态学报), 20, 2891-2897. (in Chinese with English abstract) |
[33] | Wang ZR, Xu HL, Yin LK, Li JM, Zhang ZJ, Li Y (2009). Effects of water treatments on the activation of soil seed banks—A case study on the lower reaches of the Tarim River. Progress in Natural Science, 19, 733-740. |
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