植物生态学报 ›› 2010, Vol. 34 ›› Issue (5): 505-516.DOI: 10.3773/j.issn.1005-264x.2010.05.004
张志祥1,2, 刘鹏1,*(), 徐根娣1, 张家银3, 李洪军1, 廖进平3, 巫松标3
收稿日期:
2009-02-11
接受日期:
2010-01-20
出版日期:
2010-02-11
发布日期:
2010-05-01
通讯作者:
刘鹏
作者简介:
* E-mail: sky79@zjnu.cn
ZHANG Zhi-Xiang1,2, LIU Peng1,*(), XU Gen-Di1, ZHANG Jia-Yin3, LI Hong-Jun1, LIAO Jin-Ping3, WU Song-Biao3
Received:
2009-02-11
Accepted:
2010-01-20
Online:
2010-02-11
Published:
2010-05-01
Contact:
LIU Peng
摘要:
在九龙山国家级自然保护区内, 针对濒危植物南方铁杉(Tsuga chinensis var. tchekiangensis)的分布特点, 设置了40个具有代表性的样地。采用群落分类的双向指示种分析法(TWINSPAN)进行群落类型的划分, 并在此基础上, 研究了不同群落类型下南方铁杉植株和土壤中金属元素的含量差异及其与土壤养分因子的关系。结果表明: 1) TWINSPAN分类将九龙山南方铁杉群落分为5种类型, 代表5种不同生境和物种组成的群落类型。2)不同群落类型下南方铁杉植株和土壤中的金属元素存在一定的差异, 在群落类型II和V中, 植株金属元素总量相对较高, 且K、Ca、Fe、Mg、Ba和Cr 6种元素含量也较高, 大部分土壤金属元素以群落类型II为最高。3)不同金属元素在南方铁杉植株和土壤中的含量具有很大差异, 植株中Ca、K、Mg、Fe和Mn含量较高, 土壤中Al和Fe的含量较高。4)南方铁杉不同器官金属元素的含量存在一定的差异, 各元素在不同器官中的排列顺序和变异程度不一致。5)富集系数和相关性分析表明, 南方铁杉对Mg和Zn的吸收具有相似性, 对Fe和Al的吸收也相似。6) 南方铁杉植株的大多数金属元素与土壤金属元素没有相关性, 究其原因可能是植株元素虽主要来源于土壤, 但受植物种类和生长发育状况、林地土壤类型、肥力及pH等因素的影响。
张志祥, 刘鹏, 徐根娣, 张家银, 李洪军, 廖进平, 巫松标. 不同群落类型下南方铁杉金属元素含量差异及其与土壤养分因子的关系. 植物生态学报, 2010, 34(5): 505-516. DOI: 10.3773/j.issn.1005-264x.2010.05.004
ZHANG Zhi-Xiang, LIU Peng, XU Gen-Di, ZHANG Jia-Yin, LI Hong-Jun, LIAO Jin-Ping, WU Song-Biao. Metal element contents of Tsuga chinensis var. tchekiangensis in different community types and its relationship with soil nutrient factors in eastern China. Chinese Journal of Plant Ecology, 2010, 34(5): 505-516. DOI: 10.3773/j.issn.1005-264x.2010.05.004
图1 南方铁杉群落40个样方的TWINSPAN分类树状图。 图中I、II、III、IV、V分别表示5个不同的群落类型, 数字1-40分别表示40个不同的样方。
Fig. 1 Dendrogram of the TWINSPAN classification of 40 plots of Tsuga chinensis var. tchekiangensis community. The I, II, III, IV, V denote five different community types respectively, and the digits 1-40 denote forty different plots respectively.
环境因子 Environment factor | 群落类型 Community type | ||||
---|---|---|---|---|---|
群落I Community I | 群落II Community II | 群落III Community III | 群落IV Community IV | 群落V Community V | |
海拔 Altitude (m) | 1 350-1 530 | 1 300-1 620 | 1 320-1 550 | 1 320-1 550 | 1 300-1 620 |
坡向 Slope aspect | N, S | N, S | N, S, SW | N, S, SW | N, S |
坡度 Slope gradient ( o) | 45-65 | 35-70 | 45-70 | 60-70 | 20-70 |
岩石裸露率 Bare rock ratio (%) | 10-30 | 10-50 | 10-40 | 10-35 | 10-45 |
乔木层盖度 Tree layer coverage (%) | 80- 95 | 70-90 | 85-95 | 75-97 | 65-90 |
种群平均密度 Population mean density (ind:·100 m-2) | 10 | 9 | 16 | 9 | 14 |
土壤水分含量 Soil water content (%) | 54.00 ± 4.56 | 46.28 ± 5.21 | 43.37 ± 3.80 | 36.62 ± 3.43 | 38.84 ± 5.55 |
土壤pH值 Soil pH | 5.5 ± 0.2 | 5.5 ± 0.2 | 5.4 ± 0.3 | 5.5 ± 0.1 | 5.6 ± 0.3 |
土壤电导率 Soil electrical conductivity (S·m-1) | 193.8 ± 13.4 | 170.5 ± 24.5 | 167.6 ± 10.2 | 164.8 ± 9.3 | 148.9 ± 7.8 |
土壤有机质含量 Soil organic content (%) | 5.91 ± 0.98 | 5.03 ± 0.77 | 4.39 ± 0.54 | 5.40 ± 0.80 | 5.50 ± 0.51 |
土壤全N Soil total nitrogen (mg·kg-1) | 0.788 ± 0.221 | 1.288 ± 0.291 | 0.746 ± 0.213 | 0.936 ± 0.165 | 0.838 ± 0.089 |
土壤速效N Soil available nitrogen (mg·kg-1) | 7.49 ± 0.45 | 7.62 ± 0.36 | 6.99 ± 0.28 | 7.89 ± 0.76 | 6.33 ± 0.22 |
土壤全P Soil total phosphorus (mg·kg-1) | 0.230 ± 0.023 | 0.258 ± 0.097 | 0.265 ± 0.167 | 0.276 ± 0.028 | 0.272 ± 0.855 |
土壤速效P Soil available phosphorus (mg·kg-1) | 0.144 ± 0.046 | 0.156 ± 0.039 | 0.193 ± 0.311 | 0.178 ± 0.234 | 0.149 ± 0.079 |
表1 不同群落所在区域的环境因子统计(平均值±标准偏差)
Table 1 The statistics of environmental factors in areas of different communities (mean ± SD)
环境因子 Environment factor | 群落类型 Community type | ||||
---|---|---|---|---|---|
群落I Community I | 群落II Community II | 群落III Community III | 群落IV Community IV | 群落V Community V | |
海拔 Altitude (m) | 1 350-1 530 | 1 300-1 620 | 1 320-1 550 | 1 320-1 550 | 1 300-1 620 |
坡向 Slope aspect | N, S | N, S | N, S, SW | N, S, SW | N, S |
坡度 Slope gradient ( o) | 45-65 | 35-70 | 45-70 | 60-70 | 20-70 |
岩石裸露率 Bare rock ratio (%) | 10-30 | 10-50 | 10-40 | 10-35 | 10-45 |
乔木层盖度 Tree layer coverage (%) | 80- 95 | 70-90 | 85-95 | 75-97 | 65-90 |
种群平均密度 Population mean density (ind:·100 m-2) | 10 | 9 | 16 | 9 | 14 |
土壤水分含量 Soil water content (%) | 54.00 ± 4.56 | 46.28 ± 5.21 | 43.37 ± 3.80 | 36.62 ± 3.43 | 38.84 ± 5.55 |
土壤pH值 Soil pH | 5.5 ± 0.2 | 5.5 ± 0.2 | 5.4 ± 0.3 | 5.5 ± 0.1 | 5.6 ± 0.3 |
土壤电导率 Soil electrical conductivity (S·m-1) | 193.8 ± 13.4 | 170.5 ± 24.5 | 167.6 ± 10.2 | 164.8 ± 9.3 | 148.9 ± 7.8 |
土壤有机质含量 Soil organic content (%) | 5.91 ± 0.98 | 5.03 ± 0.77 | 4.39 ± 0.54 | 5.40 ± 0.80 | 5.50 ± 0.51 |
土壤全N Soil total nitrogen (mg·kg-1) | 0.788 ± 0.221 | 1.288 ± 0.291 | 0.746 ± 0.213 | 0.936 ± 0.165 | 0.838 ± 0.089 |
土壤速效N Soil available nitrogen (mg·kg-1) | 7.49 ± 0.45 | 7.62 ± 0.36 | 6.99 ± 0.28 | 7.89 ± 0.76 | 6.33 ± 0.22 |
土壤全P Soil total phosphorus (mg·kg-1) | 0.230 ± 0.023 | 0.258 ± 0.097 | 0.265 ± 0.167 | 0.276 ± 0.028 | 0.272 ± 0.855 |
土壤速效P Soil available phosphorus (mg·kg-1) | 0.144 ± 0.046 | 0.156 ± 0.039 | 0.193 ± 0.311 | 0.178 ± 0.234 | 0.149 ± 0.079 |
金属元素 Metal element | 群落类型 Community type | |||||
---|---|---|---|---|---|---|
I | II | III | IV | V | ||
K | 植株 Plant | 36.940 ± 11.385ab | 39.427 ± 15.446ab | 34.703 ± 9.910b | 40.076 ± 12.591ab | 42.650 ± 15.354a |
土壤 Soil | 46.466 ± 19.415a | 41.702 ± 24.759a | 36.703 ± 19.042a | 36.101 ± 17.035a | 42.625 ± 23.027a | |
Ca | 植株 Plant | 42.344 ± 11.512a | 43.532 ± 8.428a | 41.625 ± 10.081a | 42.279 ± 8.550a | 44.016 ± 9.188a |
土壤 Soil | 27.353 ± 7.115a | 38.837 ± 11.382a | 39.909 ± 13.427a | 30.952 ± 10.887a | 32.249 ± 14.919a | |
Fe | 植株 Plant | 1.660 ± 1.078a | 2.026 ± 1.606a | 1.734 ± 1.390a | 1.943 ± 1.440a | 2.114 ± 1.568a |
土壤 Soil | 42.947 ± 32.624a | 64.322 ± 62.839a | 36.160 ± 22.287a | 53.001 ± 28.886a | 49.221 ± 41.540a | |
Al | 植株 Plant | 2.165 ± 2.054a | 2.125 ± 1.460a | 3.522 ± 2.549a | 3.554 ± 2.857a | 3.091 ± 2.995a |
土壤 Soil | 109.309 ± 100.793a | 71.577 ± 47.578a | 61.003 ± 27.460a | 119.023 ± 50.860a | 105.913 ± 80.751a | |
Mg | 植株 Plant | 2.954 ± 1.192a | 3.448 ± 1.640a | 3.182 ± 1.399a | 3.031 ± 1.835a | 3.199 ± 1.984a |
土壤 Soil | 5.390 ± 2.486a | 5.652 ± 4.193a | 4.027 ± 1.943a | 5.378 ± 2.418a | 4.397 ± 2.877a | |
Cu | 植株 Plant | 0.416 ± 0.288a | 0.320 ± 0.220a | 0.416 ± 0.273a | 0.372 ± 0.260a | 0.421 ± 0.383a |
土壤 Soil | 1.488 ± 1.643ab | 2.836 ± 2.502a | 0.889 ± 0.222b | 1.268 ± 1.191b | 0.734 ± 0.599b | |
Mo | 植株 Plant | 0.306 ± 0.231a | 0.209 ± 0.143ab | 0.244 ± 0.207ab | 0.183 ± 0.156b | 0.219 ± 0.215ab |
土壤 Soil | 0.564 ± 0.099b | 2.036 ± 1.556a | 0.567 ± 0.267b | 0.367 ± 0.110b | 0.392 ± 0.019b | |
Zn | 植株 Plant | 0.447 ± 0.232a | 0.414 ± 0.262a | 0.512 ± 0.267a | 0.483 ± 0.222a | 0.453 ± 0.292a |
土壤 Soil | 0.670 ± 0.290b | 1.385 ± 0.840a | 0.546 ± 0.253b | 0.563 ± 0.508b | 0.597 ± 0.406b | |
Mn | 植株 Plant | 0.664 ± 0.441a | 0.556 ± 0.324a | 0.624 ± 0.441a | 0.667 ± 0.614a | 0.532 ± 0.423a |
土壤 Soil | 0.284 ± 0.185a | 0.348 ± 0.234a | 0.255 ± 0.145a | 0.245 ± 0.135a | 0.292 ± 0.185a | |
Ba | 植株 Plant | 0.437 ± 0.205a | 0.441 ± 0.212a | 0.416 ± 0.166a | 0.397 ± 0.227a | 0.453 ± 0.190a |
土壤 Soil | 0.433 ± 0.136a | 0.586 ± 0.209a | 0.445 ± 0.175a | 0.415 ± 0.106a | 0.484 ± 0.179a | |
Cr | 植株 Plant | 0.084 ± 0.068a | 0.081 ± 0.050a | 0.067 ± 0.050a | 0.073 ± 0.055a | 0.075 ± 0.037a |
土壤 Soil | 0.267 ± 0.101b | 0.516 ± 0.263a | 0.266 ± 0.163b | 0.236 ± 0.167b | 0.293 ± 0.148b | |
Pb | 植株 Plant | 0.092 ± 0.077a | 0.076 ± 0.043ab | 0.077 ± 0.048ab | 0.057 ± 0.034b | 0.069 ± 0.045ab |
土壤 Soil | 0.019 ± 0.015a | 0.043 ± 0.031a | 0.026 ± 0.022a | 0.027 ± 0.017a | 0.030 ± 0.020a |
表2 不同群落类型中南方铁杉的植株及土壤的金属元素含量(平均值±标准偏差)
Table 2 Metal element contents in plant and forest soil of Tsuga chinensis var. tchekiangensis in different community types (mean ± SD) (mg·kg-1)
金属元素 Metal element | 群落类型 Community type | |||||
---|---|---|---|---|---|---|
I | II | III | IV | V | ||
K | 植株 Plant | 36.940 ± 11.385ab | 39.427 ± 15.446ab | 34.703 ± 9.910b | 40.076 ± 12.591ab | 42.650 ± 15.354a |
土壤 Soil | 46.466 ± 19.415a | 41.702 ± 24.759a | 36.703 ± 19.042a | 36.101 ± 17.035a | 42.625 ± 23.027a | |
Ca | 植株 Plant | 42.344 ± 11.512a | 43.532 ± 8.428a | 41.625 ± 10.081a | 42.279 ± 8.550a | 44.016 ± 9.188a |
土壤 Soil | 27.353 ± 7.115a | 38.837 ± 11.382a | 39.909 ± 13.427a | 30.952 ± 10.887a | 32.249 ± 14.919a | |
Fe | 植株 Plant | 1.660 ± 1.078a | 2.026 ± 1.606a | 1.734 ± 1.390a | 1.943 ± 1.440a | 2.114 ± 1.568a |
土壤 Soil | 42.947 ± 32.624a | 64.322 ± 62.839a | 36.160 ± 22.287a | 53.001 ± 28.886a | 49.221 ± 41.540a | |
Al | 植株 Plant | 2.165 ± 2.054a | 2.125 ± 1.460a | 3.522 ± 2.549a | 3.554 ± 2.857a | 3.091 ± 2.995a |
土壤 Soil | 109.309 ± 100.793a | 71.577 ± 47.578a | 61.003 ± 27.460a | 119.023 ± 50.860a | 105.913 ± 80.751a | |
Mg | 植株 Plant | 2.954 ± 1.192a | 3.448 ± 1.640a | 3.182 ± 1.399a | 3.031 ± 1.835a | 3.199 ± 1.984a |
土壤 Soil | 5.390 ± 2.486a | 5.652 ± 4.193a | 4.027 ± 1.943a | 5.378 ± 2.418a | 4.397 ± 2.877a | |
Cu | 植株 Plant | 0.416 ± 0.288a | 0.320 ± 0.220a | 0.416 ± 0.273a | 0.372 ± 0.260a | 0.421 ± 0.383a |
土壤 Soil | 1.488 ± 1.643ab | 2.836 ± 2.502a | 0.889 ± 0.222b | 1.268 ± 1.191b | 0.734 ± 0.599b | |
Mo | 植株 Plant | 0.306 ± 0.231a | 0.209 ± 0.143ab | 0.244 ± 0.207ab | 0.183 ± 0.156b | 0.219 ± 0.215ab |
土壤 Soil | 0.564 ± 0.099b | 2.036 ± 1.556a | 0.567 ± 0.267b | 0.367 ± 0.110b | 0.392 ± 0.019b | |
Zn | 植株 Plant | 0.447 ± 0.232a | 0.414 ± 0.262a | 0.512 ± 0.267a | 0.483 ± 0.222a | 0.453 ± 0.292a |
土壤 Soil | 0.670 ± 0.290b | 1.385 ± 0.840a | 0.546 ± 0.253b | 0.563 ± 0.508b | 0.597 ± 0.406b | |
Mn | 植株 Plant | 0.664 ± 0.441a | 0.556 ± 0.324a | 0.624 ± 0.441a | 0.667 ± 0.614a | 0.532 ± 0.423a |
土壤 Soil | 0.284 ± 0.185a | 0.348 ± 0.234a | 0.255 ± 0.145a | 0.245 ± 0.135a | 0.292 ± 0.185a | |
Ba | 植株 Plant | 0.437 ± 0.205a | 0.441 ± 0.212a | 0.416 ± 0.166a | 0.397 ± 0.227a | 0.453 ± 0.190a |
土壤 Soil | 0.433 ± 0.136a | 0.586 ± 0.209a | 0.445 ± 0.175a | 0.415 ± 0.106a | 0.484 ± 0.179a | |
Cr | 植株 Plant | 0.084 ± 0.068a | 0.081 ± 0.050a | 0.067 ± 0.050a | 0.073 ± 0.055a | 0.075 ± 0.037a |
土壤 Soil | 0.267 ± 0.101b | 0.516 ± 0.263a | 0.266 ± 0.163b | 0.236 ± 0.167b | 0.293 ± 0.148b | |
Pb | 植株 Plant | 0.092 ± 0.077a | 0.076 ± 0.043ab | 0.077 ± 0.048ab | 0.057 ± 0.034b | 0.069 ± 0.045ab |
土壤 Soil | 0.019 ± 0.015a | 0.043 ± 0.031a | 0.026 ± 0.022a | 0.027 ± 0.017a | 0.030 ± 0.020a |
金属元素 Metal element | 器官 Organ | |||
---|---|---|---|---|
根 Root | 茎 Stem | 皮 Bark | 叶 Leaf | |
K | 35.020 ± 9.977b | 37.276 ± 12.967ab | 41.748 ± 17.685a | 43.242 ± 11.347a |
Ca | 47.869 ± 6.896a | 39.514 ± 8.100b | 38.071 ± 9.852b | 46.150 ± 8.450a |
Fe | 2.559 ± 1.292a | 1.288 ± 1.027b | 1.331 ± 0.704b | 2.562 ± 1.952a |
Al | 3.486 ± 1.858b | 1.377 ± 1.105c | 1.733 ± 1.565c | 5.252 ± 3.165a |
Mg | 2.550 ± 0.904b | 1.978 ± 1.024c | 2.947 ± 1.004b | 5.234 ± 1.584a |
Cu | 0.363 ± 0.218b | 0.324 ± 0.217b | 0.272 ± 0.164b | 0.594 ± 0.419a |
Mo | 0.240 ± 0.178b | 0.154 ± 0.132c | 0.179 ± 0.172bc | 0.324 ± 0.232a |
Zn | 0.433 ± 0.200ab | 0.485 ± 0.239ab | 0.380 ± 0.216b | 0.549 ± 0.336a |
Mn | 0.410 ± 0.164b | 0.349 ± 0.232b | 0.860 ± 0.551a | 0.781 ± 0.522a |
Ba | 0.433 ± 0.156ab | 0.384 ± 0.220b | 0.491 ± 0.215a | 0.411 ± 0.195ab |
Cr | 0.081 ± 0.048a | 0.082 ± 0.069a | 0.067 ± 0.026a | 0.073 ± 0.049b |
Pb | 0.058 ± 0.030b | 0.063 ± 0.039b | 0.098 ± 0.062a | 0.069 ± 0.050a |
表3 南方铁杉不同器官的金属元素含量(平均值±标准偏差)
Table 3 Metal element contents of different organs of Tsuga chinensis var. tchekiangensis (mean ± SD) (mg·kg-1)
金属元素 Metal element | 器官 Organ | |||
---|---|---|---|---|
根 Root | 茎 Stem | 皮 Bark | 叶 Leaf | |
K | 35.020 ± 9.977b | 37.276 ± 12.967ab | 41.748 ± 17.685a | 43.242 ± 11.347a |
Ca | 47.869 ± 6.896a | 39.514 ± 8.100b | 38.071 ± 9.852b | 46.150 ± 8.450a |
Fe | 2.559 ± 1.292a | 1.288 ± 1.027b | 1.331 ± 0.704b | 2.562 ± 1.952a |
Al | 3.486 ± 1.858b | 1.377 ± 1.105c | 1.733 ± 1.565c | 5.252 ± 3.165a |
Mg | 2.550 ± 0.904b | 1.978 ± 1.024c | 2.947 ± 1.004b | 5.234 ± 1.584a |
Cu | 0.363 ± 0.218b | 0.324 ± 0.217b | 0.272 ± 0.164b | 0.594 ± 0.419a |
Mo | 0.240 ± 0.178b | 0.154 ± 0.132c | 0.179 ± 0.172bc | 0.324 ± 0.232a |
Zn | 0.433 ± 0.200ab | 0.485 ± 0.239ab | 0.380 ± 0.216b | 0.549 ± 0.336a |
Mn | 0.410 ± 0.164b | 0.349 ± 0.232b | 0.860 ± 0.551a | 0.781 ± 0.522a |
Ba | 0.433 ± 0.156ab | 0.384 ± 0.220b | 0.491 ± 0.215a | 0.411 ± 0.195ab |
Cr | 0.081 ± 0.048a | 0.082 ± 0.069a | 0.067 ± 0.026a | 0.073 ± 0.049b |
Pb | 0.058 ± 0.030b | 0.063 ± 0.039b | 0.098 ± 0.062a | 0.069 ± 0.050a |
器官 Organ | 金属元素 Metal element | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
K | Ca | Fe | Al | Mg | Cu | Mo | Zn | Mn | Ba | Cr | Pb | |
根 Root | 0.822 | 1.408 | 0.051 | 0.037 | 0.517 | 0.188 | 0.350 | 0.580 | 1.439 | 0.912 | 0.209 | 0.209 |
茎 Stem | 0.875 | 1.162 | 0.026 | 0.015 | 0.401 | 0.168 | 0.225 | 0.649 | 1.225 | 0.808 | 0.211 | 0.227 |
皮 Bark | 0.979 | 1.120 | 0.027 | 0.018 | 0.598 | 0.141 | 0.261 | 0.509 | 3.018 | 1.034 | 0.173 | 0.353 |
叶 Leaf | 1.014 | 1.357 | 0.051 | 0.056 | 1.062 | 0.308 | 0.473 | 0.735 | 2.740 | 0.865 | 0.188 | 0.248 |
整株 Whole plant | 0.923 | 1.262 | 0.039 | 0.031 | 0.645 | 0.201 | 0.327 | 0.617 | 2.105 | 0.905 | 0.196 | 0.259 |
表4 不同器官中金属元素的富集系数
Table 4 Enrichment coefficients of metal element in different organs
器官 Organ | 金属元素 Metal element | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
K | Ca | Fe | Al | Mg | Cu | Mo | Zn | Mn | Ba | Cr | Pb | |
根 Root | 0.822 | 1.408 | 0.051 | 0.037 | 0.517 | 0.188 | 0.350 | 0.580 | 1.439 | 0.912 | 0.209 | 0.209 |
茎 Stem | 0.875 | 1.162 | 0.026 | 0.015 | 0.401 | 0.168 | 0.225 | 0.649 | 1.225 | 0.808 | 0.211 | 0.227 |
皮 Bark | 0.979 | 1.120 | 0.027 | 0.018 | 0.598 | 0.141 | 0.261 | 0.509 | 3.018 | 1.034 | 0.173 | 0.353 |
叶 Leaf | 1.014 | 1.357 | 0.051 | 0.056 | 1.062 | 0.308 | 0.473 | 0.735 | 2.740 | 0.865 | 0.188 | 0.248 |
整株 Whole plant | 0.923 | 1.262 | 0.039 | 0.031 | 0.645 | 0.201 | 0.327 | 0.617 | 2.105 | 0.905 | 0.196 | 0.259 |
金属元素 Metal element | K | Ca | Fe | Al | Mg | Cu | Mo | Zn | Mn | Ba | Cr | Pb |
---|---|---|---|---|---|---|---|---|---|---|---|---|
K | 1.000 | |||||||||||
Ca | 0.116 | 1.000 | ||||||||||
Fe | 0.079 | 0.118 | 1.000 | |||||||||
Al | -0.051 | 0.154 | 0.364** | 1.000 | ||||||||
Mg | 0.179* | 0.138 | 0.166* | 0.483** | 1.000 | |||||||
Cu | -0.028 | -0.051 | 0.376** | 0.352** | 0.387** | 1.000 | ||||||
Mo | -0.228** | -0.073 | 0.318** | 0.365** | 0.274** | 0.222** | 1.000 | |||||
Zn | -0.223** | -0.096 | 0.296** | 0.336** | 0.232** | 0.457** | 0.301** | 1.000 | ||||
Mn | 0.177* | 0.062 | -0.284** | 0.175* | 0.210** | -0.109 | -0.006 | 0.013 | 1.000 | |||
Ba | 0.074 | 0.249** | -0.049 | -0.096 | 0.008 | -0.167 | -0.046 | -0.224** | -0.027 | 1.000 | ||
Cr | -0.056 | -0.182* | 0.193* | 0.123 | -0.047 | 0.200* | 0.146 | 0.369** | -0.148 | -0.122 | 1.000 | |
Pb | -0.006 | -0.281** | 0.018 | -0.097 | 0.079 | 0.140 | 0.046 | 0.116 | -0.080 | 0.156 | 0.267** | 1.000 |
表5 南方铁杉植株各金属元素间的相关性
Table 5 Correlation among different metal elements of Tsuga chinensis var. tchekiangensis
金属元素 Metal element | K | Ca | Fe | Al | Mg | Cu | Mo | Zn | Mn | Ba | Cr | Pb |
---|---|---|---|---|---|---|---|---|---|---|---|---|
K | 1.000 | |||||||||||
Ca | 0.116 | 1.000 | ||||||||||
Fe | 0.079 | 0.118 | 1.000 | |||||||||
Al | -0.051 | 0.154 | 0.364** | 1.000 | ||||||||
Mg | 0.179* | 0.138 | 0.166* | 0.483** | 1.000 | |||||||
Cu | -0.028 | -0.051 | 0.376** | 0.352** | 0.387** | 1.000 | ||||||
Mo | -0.228** | -0.073 | 0.318** | 0.365** | 0.274** | 0.222** | 1.000 | |||||
Zn | -0.223** | -0.096 | 0.296** | 0.336** | 0.232** | 0.457** | 0.301** | 1.000 | ||||
Mn | 0.177* | 0.062 | -0.284** | 0.175* | 0.210** | -0.109 | -0.006 | 0.013 | 1.000 | |||
Ba | 0.074 | 0.249** | -0.049 | -0.096 | 0.008 | -0.167 | -0.046 | -0.224** | -0.027 | 1.000 | ||
Cr | -0.056 | -0.182* | 0.193* | 0.123 | -0.047 | 0.200* | 0.146 | 0.369** | -0.148 | -0.122 | 1.000 | |
Pb | -0.006 | -0.281** | 0.018 | -0.097 | 0.079 | 0.140 | 0.046 | 0.116 | -0.080 | 0.156 | 0.267** | 1.000 |
植株中的金属元素 Metal element of plant | 土壤中的金属元素 Metal element of soil | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
K | Ca | Fe | Al | Mg | Cu | Mo | Zn | Mn | Ba | Cr | Pb | |
K | -0.111 | -0.004 | -0.083 | -0.015 | -0.104 | -0.248 | -0.196 | -0.017 | -0.027 | -0.173 | -0.078 | 0.007 |
Ca | 0.204 | -0.062 | 0.321 | 0.216 | 0.135 | -0.154 | -0.108 | 0.252 | 0.175 | -0.003 | -0.006 | -0.133 |
Fe | -0.326* | 0.066 | 0.125 | 0.127 | 0.057 | -0.098 | -0.021 | 0.071 | 0.171 | -0.025 | 0.190 | 0.226 |
Al | -0.118 | -0.046 | -0.108 | -0.041 | -0.115 | -0.279 | -0.108 | -0.228 | -0.128 | -0.115 | -0.180 | -0.158 |
Mg | -0.086 | 0.313 | -0.396* | -0.397* | -0.258 | -0.141 | 0.026 | 0.130 | -0.261 | -0.144 | -0.207 | 0.181 |
Cu | 0.081 | 0.198 | -0.205 | -0.191 | -0.160 | -0.325* | -0.174 | -0.134 | -0.096 | -0.242 | -0.236 | 0.258 |
Mo | -0.244 | 0.048 | -0.217 | -0.120 | -0.024 | 0.039 | -0.092 | -0.089 | -0.105 | 0.024 | -0.120 | 0.025 |
Zn | 0.105 | -0.010 | -0.055 | -0.028 | -0.020 | -0.068 | -0.138 | 0.016 | 0.026 | -0.023 | -0.104 | 0.098 |
Mn | 0.080 | -0.300 | -0.074 | -0.024 | -0.103 | 0.256 | 0.138 | 0.121 | -0.142 | 0.097 | 0.004 | -0.265 |
Ba | 0.152 | -0.110 | 0.063 | -0.002 | -0.028 | -0.213 | -0.212 | -0.204 | 0.119 | -0.194 | -0.041 | 0.057 |
Cr | 0.174 | -0.140 | -0.293 | -0.204 | -0.321 | 0.146 | -0.062 | 0.033 | -0.157 | -0.118 | -0.133 | -0.118 |
Pb | -0.202 | 0.127 | -0.175 | -0.125 | -0.128 | 0.154 | 0.010 | 0.157 | 0.071 | 0.142 | 0.102 | 0.177 |
表6 南方铁杉的植株与土壤中的金属元素含量相关性
Table 6 Correlation among metal element contents of plant and soil of Tsuga chinensis var. tchekiangensis community
植株中的金属元素 Metal element of plant | 土壤中的金属元素 Metal element of soil | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
K | Ca | Fe | Al | Mg | Cu | Mo | Zn | Mn | Ba | Cr | Pb | |
K | -0.111 | -0.004 | -0.083 | -0.015 | -0.104 | -0.248 | -0.196 | -0.017 | -0.027 | -0.173 | -0.078 | 0.007 |
Ca | 0.204 | -0.062 | 0.321 | 0.216 | 0.135 | -0.154 | -0.108 | 0.252 | 0.175 | -0.003 | -0.006 | -0.133 |
Fe | -0.326* | 0.066 | 0.125 | 0.127 | 0.057 | -0.098 | -0.021 | 0.071 | 0.171 | -0.025 | 0.190 | 0.226 |
Al | -0.118 | -0.046 | -0.108 | -0.041 | -0.115 | -0.279 | -0.108 | -0.228 | -0.128 | -0.115 | -0.180 | -0.158 |
Mg | -0.086 | 0.313 | -0.396* | -0.397* | -0.258 | -0.141 | 0.026 | 0.130 | -0.261 | -0.144 | -0.207 | 0.181 |
Cu | 0.081 | 0.198 | -0.205 | -0.191 | -0.160 | -0.325* | -0.174 | -0.134 | -0.096 | -0.242 | -0.236 | 0.258 |
Mo | -0.244 | 0.048 | -0.217 | -0.120 | -0.024 | 0.039 | -0.092 | -0.089 | -0.105 | 0.024 | -0.120 | 0.025 |
Zn | 0.105 | -0.010 | -0.055 | -0.028 | -0.020 | -0.068 | -0.138 | 0.016 | 0.026 | -0.023 | -0.104 | 0.098 |
Mn | 0.080 | -0.300 | -0.074 | -0.024 | -0.103 | 0.256 | 0.138 | 0.121 | -0.142 | 0.097 | 0.004 | -0.265 |
Ba | 0.152 | -0.110 | 0.063 | -0.002 | -0.028 | -0.213 | -0.212 | -0.204 | 0.119 | -0.194 | -0.041 | 0.057 |
Cr | 0.174 | -0.140 | -0.293 | -0.204 | -0.321 | 0.146 | -0.062 | 0.033 | -0.157 | -0.118 | -0.133 | -0.118 |
Pb | -0.202 | 0.127 | -0.175 | -0.125 | -0.128 | 0.154 | 0.010 | 0.157 | 0.071 | 0.142 | 0.102 | 0.177 |
植株金属元素 Plant metal element | 土壤肥力因素 Soil fertility factor | |||||||
---|---|---|---|---|---|---|---|---|
土壤水分含量 Soil water content | 土壤pH值 Soil pH | 土壤电导率 Soil electrical conductivity | 土壤有机质含量 Soil organism content | 土壤全N Soil total nitrogen | 土壤速效N Soil available nitrogen | 土壤全P Soil total phosphorus | 土壤速效P Soil available phosphorus | |
K | -0.293 | -0.332* | 0.002 | -0.064 | -0.127 | -0.080 | -0.098 | 0.007 |
Ca | -0.225 | -0.207 | -0.056 | 0.220 | 0.065 | 0.035 | -0.133 | 0.080 |
Fe | 0.117 | 0.262 | -0.199 | 0.043 | -0.201 | -0.292 | 0.229 | -0.244 |
Al | -0.183 | 0.057 | -0.257 | -0.307 | -0.228 | -0.076 | 0.103 | -0.105 |
Mg | -0.129 | -0.323 | 0.031 | -0.130 | -0.227 | 0.025 | -0.051 | 0.192 |
Cu | -0.084 | -0.405 | 0.293 | 0.116 | 0.315 | 0.186 | -0.130 | 0.297 |
Mo | -0.299 | -0.107 | 0.074 | 0.009 | -0.107 | -0.310 | -0.003 | -0.153 |
Zn | 0.417** | 0.082 | 0.297 | 0.020 | -0.090 | -0.035 | -0.177 | 0.142 |
Mn | -0.160 | -0.355* | 0.086 | -0.135 | -0.296 | 0.158 | -0.147 | 0.100 |
Ba | 0.138 | 0.026 | 0.236 | 0.353* | 0.041 | -0.079 | -0.156 | -0.027 |
Cr | -0.005 | 0.149 | -0.105 | -0.110 | -0.179 | -0.362* | 0.020 | -0.173 |
Pb | 0.082 | -0.471** | 0.226 | 0.008 | 0.025 | 0.159 | -0.244 | 0.112 |
表7 植物中金属元素的含量与土壤肥力因素的相关性
Table 7 Correlation among metal element content of Tsuga chinensis var. tchekiangensis and soil fertility factors
植株金属元素 Plant metal element | 土壤肥力因素 Soil fertility factor | |||||||
---|---|---|---|---|---|---|---|---|
土壤水分含量 Soil water content | 土壤pH值 Soil pH | 土壤电导率 Soil electrical conductivity | 土壤有机质含量 Soil organism content | 土壤全N Soil total nitrogen | 土壤速效N Soil available nitrogen | 土壤全P Soil total phosphorus | 土壤速效P Soil available phosphorus | |
K | -0.293 | -0.332* | 0.002 | -0.064 | -0.127 | -0.080 | -0.098 | 0.007 |
Ca | -0.225 | -0.207 | -0.056 | 0.220 | 0.065 | 0.035 | -0.133 | 0.080 |
Fe | 0.117 | 0.262 | -0.199 | 0.043 | -0.201 | -0.292 | 0.229 | -0.244 |
Al | -0.183 | 0.057 | -0.257 | -0.307 | -0.228 | -0.076 | 0.103 | -0.105 |
Mg | -0.129 | -0.323 | 0.031 | -0.130 | -0.227 | 0.025 | -0.051 | 0.192 |
Cu | -0.084 | -0.405 | 0.293 | 0.116 | 0.315 | 0.186 | -0.130 | 0.297 |
Mo | -0.299 | -0.107 | 0.074 | 0.009 | -0.107 | -0.310 | -0.003 | -0.153 |
Zn | 0.417** | 0.082 | 0.297 | 0.020 | -0.090 | -0.035 | -0.177 | 0.142 |
Mn | -0.160 | -0.355* | 0.086 | -0.135 | -0.296 | 0.158 | -0.147 | 0.100 |
Ba | 0.138 | 0.026 | 0.236 | 0.353* | 0.041 | -0.079 | -0.156 | -0.027 |
Cr | -0.005 | 0.149 | -0.105 | -0.110 | -0.179 | -0.362* | 0.020 | -0.173 |
Pb | 0.082 | -0.471** | 0.226 | 0.008 | 0.025 | 0.159 | -0.244 | 0.112 |
[1] | Basu U, Godbold D, Taylor GJ (1994). Aluminum resistance in Triticum aestivum associated with enhanced exudation of malate. Journal of Plant Physiology, 144, 745-753. |
[2] | Ding YX, Chen JL (1995). Effect of continuous plantation of Chinese fir on soil fertility. Pedosphere, 5, 57-66. |
[3] | Guo LJ (郭连金), Hong SR (洪森荣), Xia HY (夏华炎) (2006). Analysis on the number dynamic of Tsuga tchekiangensis population in Wuyishan Nature Reserve. Journal of Shangrao Normal College (上饶师范学院学报), 26(6), 74-78. (in Chinese with English abstract) |
[4] | He HQ (何惠琴), Li SC (李绍才), Sun HL (孙海龙), Liu SC (刘世昌), Xiong WL (熊文兰) (2008). Quantitative classification and ordination of Jinping hydropower station, Sichuan Province, China. Acta Ecologica Sinica (生态学报), 28, 3706-3712. (in Chinese with English abstract) |
[5] |
Helmisaari HS (1992). Nutrient retranslocation within the foliage of Pinus sylvestris. Tree Physiology, 10, 45-48.
URL PMID |
[6] | Jhala YV (1997). Seasonal effects on the nutitional ecology of blackbuck Antelope cervicara. Journal of Applied Ecology, 34, 1348-1358. |
[7] | Jugsujinda A, Patrick WH Jr (1993). Evaluation of toxic conditions associated with oranging symptoms of rice in a flooded Oxisol in Sumatra, Indonesia. Plant and Soil, 152, 237-243. |
[8] | Kuang YW (旷远文), Wen DZ (温达志), Zhou GY (周国逸), Zhang DQ (张德强) (2006). Distribution of elements along the length of different aged needles of Pinus massoniana at Dinghushan. Journal of Plant Ecology (Chinese Version) (植物生态学报), 30, 33-39. (in Chinese with English abstract) |
[9] | Kong LS (孔令韶), Li BS (李渤生), Guo K (郭柯), Ma MH (马茂华) (1995). Characteristics of element contents in plant species of the Karakorum and Kunlun Mountains. Acta Phytoecologica Sinica (植物生态学报), 19, 13-22. (in Chinese with English abstract) |
[10] | Liang QB (梁其彪), Li RT (李瑞棠), Tang RQ (唐润琴), Ning SJ (宁世江), Zhao TL (赵天林), Mo QH (莫权辉) (1998). Preliminary analysis on the element background values of rare and endangered plants in Mulun forest area. Guihaia (广西植物), 18, 229-236. (in Chinese with English abstract) |
[11] | Liu P (刘鹏), Hao CY (郝朝运), Chen ZL (陈子林), Zhang ZX (张志祥), Wei FM (韦福民), Xu SZ (许士珍) (2008). Nutrient element distribution in organs of Heptacodium miconioides in different communities and its relationship with soil nutrients. Acta Pedologica Sinica (土壤学报), 45, 304-312. (in Chinese with English abstract) |
[12] | Liu WJ, Zhu YG, Smith FA, Smith SE (2004). Do phosphorus nutrition and iron plaque alter arsenate (As) uptake by rice seedlings in hydroponic culture? New Phytologist, 162, 481-488. |
[13] | Luo CD (罗承德), Zhang J (张健), Liu J (刘继龙) (2000). Researches on the threshold of aluminum toxicity and the decline of Chinese fir plantation in hilly area around the Sichuan basin. Scientia Silvae Sinicae (林业科学), 36(1), 9-14. (in Chinese with English abstract) |
[14] | Lu RK (鲁如坤) (1999). Soil Agriculture Chemistry Analysis Method (土壤农业化学分析方法). China Agricultural Science and Technology Press, Beijing. (in Chinese) |
[15] | Pan KW (潘开文), Liu ZG (刘照光) (2001). The distribution and circulation of nutrient element contents and accumulation in the young artificial Cercidiphyllum japonicum community. Scientia Silvae Sinicae (林业科学), 37(2), 1-12. (in Chinese with English abstract) |
[16] | Pan QM (潘庆民), Bai YF (白永飞), Han XG (韩兴国), Yang JP (杨景成) (2005). Effects of nitrogen additions on a Leymus chinensis population in typical steppe of Inner Mongolia. Acta Phytoecologica Sinica (植物生态学报), 29, 311-317. (in Chinese with English abstract) |
[17] | Pellet DM, Grunes DL, Kochian LV (1995). Organic acid exudation as an aluminum tolerance mechamism in maize (Zea mays L.). Planta, 196, 788-795. |
[18] | Richards AE, Shapcott A, Playford J, Morrison B, Critchley C, Schmidt S (2003). Physiological profiles of restricted endemic plants and their widespread congenors in the North Queensland wet tropics, Australia. Biological Conservation, 111, 41-52. |
[19] | Sequeira R, Mackauer M (1992). Nutritional ecology of an insect host-parasitoid association: the pea aphid― Aph- idius ervi system. Ecology, 73, 183-189. |
[20] | Su ZM (苏宗明) (1983). The subtropical mid-montane coniferous and broad-leaf mixed forest in Guangxi. Guihaia (广西植物), 3, 33-42. (in Chinese with English abstract) |
[21] | Wang DB (汪殿蓓), Ji SY (暨淑仪), Chen FP (陈飞鹏), Peng SL (彭少麟) (2007). Relationship between modules and soil nutrient factors of Cycas fairylakea population. Journal of Northeast Forestry University (东北林业大学学报), 35(4), 22-24, 55. (in Chinese with English abstract) |
[22] | Zhang FG (张方钢) (1996). A Study on the Natural Resources of Jiulongshan Nature Reserve in Zhejiang Province (浙江省九龙山自然保护区自然资源研究). China Forestry Publishing House, Beijing. 1-15. (in Chinese) |
[23] | Zhang WH (张文辉), Zu YG (祖元刚), Liu GB (刘国彬) (2002). Population ecological characteristics and analysis on endangered cause of ten endangered plant species. Acta Ecologica Sinica (生态学报), 22, 1512-1520. (in Chinese with English abstract) |
[24] | Zhang ZX (张志祥), Kang HJ (康华靖), Liu P (刘鹏), Li CH (李成惠), Liao CC (廖成川), Zheng CH (郑春浩), Ye KK (叶侃侃) (2008c). A study on element distribution of endangered plants Ulmus elongata and its relationship with soil factors based on ICP-AES. Journal of Soil and Water Conservation (水土保持学报), 22(3), 95-100. (in Chinese with English abstract) |
[25] | Zhang ZX (张志祥), Liu P (刘鹏), Cai MZ (蔡妙珍), Kuang HJ (康华靖), Liao CC (廖承川), Liu CS (刘春生), Lou ZH (楼中华) (2008a). Population quantitative characteristics and dynamics of rare and endangered Tsuga tchekiangensis in Jiulongshan Nature Reserve of China. Journal of Plant Ecology (Chinese Version) (植物生态学报), 32, 1146-1156. |
[26] | Zhang ZX (张志祥), Liu P (刘鹏), Liu CS (刘春生), Liao CC (廖承川), Cai MZ (蔡妙珍), Huang BW (黄帮文) (2008b). The structure characteristics and dominant population regeneration types of Tsuga tchekiangensis communities in the Jiulongshan National Natural Reserve of Zhejiang Province. Acta Ecologica Sinica (生态学报), 28, 4547-4558. (in Chinese with English abstract) |
[27] | Zhu YX (朱育新), Qian JL (钱君龙), Huang JS (黄景苏), Ke SZ (柯善哲) (1995). A preliminary study on accumulation of tree elements in Mining area of Xixia mountain, Nanjing. Acta Phytoecologica Sinica (植物生态学报), 19, 261-269. (in Chinese with English abstract) |
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