植物生态学报 ›› 2006, Vol. 30 ›› Issue (6): 947-953.DOI: 10.17521/cjpe.2006.0120 cstr: 32100.14.cjpe.2006.0120
收稿日期:2005-10-20
接受日期:2006-01-22
出版日期:2006-10-20
发布日期:2006-11-30
作者简介:* E-mail: xfyan@mail.hl.cn基金资助:Received:2005-10-20
Accepted:2006-01-22
Online:2006-10-20
Published:2006-11-30
摘要:
喜树(Camptotheca acuminata)是我国特有的多年生亚热带落叶阔叶树种,因其次生代谢产物喜树碱具有良好的抗肿瘤活性而受到人们的广泛关注。该文通过温室盆栽接种试验,观察了2属6种丛枝菌根真菌即蜜色无梗囊霉(Acaulospora mellea)、光壁无梗囊霉(A. laevis)、木薯球囊霉(Glomus manihot)、地表球囊霉(G. versiforme)、幼套球囊霉(G. etunicatum)和透光球囊霉(G. diaphanum)对喜树幼苗生长和氮、磷养分吸收的影响。结果表明,丛枝菌根的形成对喜树幼苗的生长以及氮、磷营养的吸收均有影响。从生物量看,除幼套球囊霉和光壁无梗囊霉侵染形成的丛枝菌根喜树幼苗与无菌根幼苗(CK)差异不显著外,其余菌根幼苗的生物量均明显大于无菌根幼苗,透光球囊霉和蜜色无梗囊霉菌根幼苗尤为突出,分别达到无菌根幼苗的1.9和1.4倍。丛枝菌根的形成似乎不利于喜树幼苗的氮素营养吸收,并且主要体现在叶片的氮含量上。相反,丛枝菌根形成总体上促进喜树幼苗对磷素营养的吸收,并且主要体现在根的磷含量上。与无菌根幼苗比,所有菌根幼苗根的氮、磷分配比例增加,而叶片的氮、磷分配比例减少。
赵昕, 阎秀峰. 丛枝菌根对喜树幼苗生长和氮、磷吸收的影响. 植物生态学报, 2006, 30(6): 947-953. DOI: 10.17521/cjpe.2006.0120
ZHAO Xin, YAN Xiu-Feng. EFFECTS OF ARBUSCULAR MYCORRHIZAL FUNGI ON THE GROWTH AND ABSORPTION OF NITROGEN AND PHOSPHORUS IN CAMPTOTHECA ACUMINATA SEEDLINGS. Chinese Journal of Plant Ecology, 2006, 30(6): 947-953. DOI: 10.17521/cjpe.2006.0120
| 处理 Treatment | 菌根侵染率(%) Mycorrhizal colonization rate | 根系的菌根侵染强度(%) Mycorrhizal colonization intensity of root | 侵染根段的菌根侵染强度(%) Mycorrhizal colonization intensity of infected root fragment | |||||
|---|---|---|---|---|---|---|---|---|
| CK | 0a | 0a | 0a | |||||
| Gm | 83.18±8.75b | 56.22±5.87b | 67.47±6.77b | |||||
| Gv | 84.54±9.03b | 53.30±5.37b | 63.96±6.59b | |||||
| Ge | 88.54±9.03c | 33.61±3.31c | 40.33±4.03c | |||||
| Gd | 74.15±8.12d | 41.36±4.06d | 49.63±5.13d | |||||
| Am | 70.54±6.87d | 56.14±4.76b | 55.32±5.71e | |||||
| Al | 49.01±5.81e | 26.72±2.34e | 32.04±2.95f | |||||
表1 6种丛枝菌根真菌的侵染情况
Table 1 Colonization status of Camptotheca acuminata inoculated with arbuscular mycorrhizal fungi among six species
| 处理 Treatment | 菌根侵染率(%) Mycorrhizal colonization rate | 根系的菌根侵染强度(%) Mycorrhizal colonization intensity of root | 侵染根段的菌根侵染强度(%) Mycorrhizal colonization intensity of infected root fragment | |||||
|---|---|---|---|---|---|---|---|---|
| CK | 0a | 0a | 0a | |||||
| Gm | 83.18±8.75b | 56.22±5.87b | 67.47±6.77b | |||||
| Gv | 84.54±9.03b | 53.30±5.37b | 63.96±6.59b | |||||
| Ge | 88.54±9.03c | 33.61±3.31c | 40.33±4.03c | |||||
| Gd | 74.15±8.12d | 41.36±4.06d | 49.63±5.13d | |||||
| Am | 70.54±6.87d | 56.14±4.76b | 55.32±5.71e | |||||
| Al | 49.01±5.81e | 26.72±2.34e | 32.04±2.95f | |||||
| 处理 Treatment | 株高(cm) Height | 生物量 Biomass | 根冠比 Root/shoot ratio | |||
|---|---|---|---|---|---|---|
| 根系干重(g·plant-1) Root dry weight | 茎干重(g·plant-1) Stem dry weight | 叶干重(g·plant-1) Leaf dry weight | 全株干重(g·plant-1) Whole plant dry weight | |||
| CK | 18.50a | 0.37a | 0.30a | 0.58a | 1.25a | 0.42ab |
| Gm | 19.14a | 0.51b | 0.34a | 0.62a | 1.47b | 0.53b |
| Gv | 16.80a | 0.64c | 0.29a | 0.57a | 1.50b | 0.75c |
| Ge | 19.53a | 0.35a | 0.29a | 0.52a | 1.16a | 0.43ab |
| Gd | 20.63a | 0.45b | 0.48b | 0.78b | 1.71c | 0.36a |
| Am | 20.13a | 0.88d | 0.56c | 0.96c | 2.40d | 0.58bc |
| Al | 18.27a | 0.48b | 0.32a | 0.48a | 1.29ab | 0.60bc |
表2 丛枝菌根对喜树幼苗生长的影响
Table 2 Effects of arbuscular mycorrhiza on the seedling growth of Camptotheca acuminata
| 处理 Treatment | 株高(cm) Height | 生物量 Biomass | 根冠比 Root/shoot ratio | |||
|---|---|---|---|---|---|---|
| 根系干重(g·plant-1) Root dry weight | 茎干重(g·plant-1) Stem dry weight | 叶干重(g·plant-1) Leaf dry weight | 全株干重(g·plant-1) Whole plant dry weight | |||
| CK | 18.50a | 0.37a | 0.30a | 0.58a | 1.25a | 0.42ab |
| Gm | 19.14a | 0.51b | 0.34a | 0.62a | 1.47b | 0.53b |
| Gv | 16.80a | 0.64c | 0.29a | 0.57a | 1.50b | 0.75c |
| Ge | 19.53a | 0.35a | 0.29a | 0.52a | 1.16a | 0.43ab |
| Gd | 20.63a | 0.45b | 0.48b | 0.78b | 1.71c | 0.36a |
| Am | 20.13a | 0.88d | 0.56c | 0.96c | 2.40d | 0.58bc |
| Al | 18.27a | 0.48b | 0.32a | 0.48a | 1.29ab | 0.60bc |
图1 不同丛枝菌根喜树幼苗的氮、磷含量 CK、Gm、Gv、Ge、Gd、Am、Al:见表1 See Table 1 图中具有不同字母的柱体间差异显著(p<0.05) The bars with different letters are significantly different (p<0.05)
Fig.1 N and P contents of Camptotheca acuminata seedlings with different arbuscular mycorrhiza
图2 不同丛枝菌根喜树幼苗中氮、磷的器官分配 CK、Gm、Gv、Ge、Gd、Am、Al:见表1 See Table 1
Fig.2 Allocation of N and P to organs of Camptotheca acuminata seedlings with different arbuscular mycorrhiza
| [1] | Abu-Zeyad R, Khan AG, Khoo C (1999). Occurrence of arbuscular mycorrhiza in Castanospermum australe A. Cunn. & C. Fraser and effects on growth and production of castanospermine. Mycorrhiza, 9,111-117. |
| [2] | Ahiabor BD, Hirata H (1994). Characteristic responses of three tropical legumes to the inoculation of two species of VAM fungi in Andosol soils with different fertilizers. Mycorrhiza, 5,63-70. |
| [3] | Bi YL(毕银丽), Ding BJ(丁保建), Li XL(李晓林) (2001). Effects of VA mycorrhiza on utilizing nutrient and water of winter wheat. Chinese Journal of Soil Science (土壤通报), 32,99-101. (in Chinese with English abstract) |
| [4] | Cui XY(崔晓阳) (1998). Modern Experimental Analysis Technology for Forestry Soil (森林土壤现代实验分析技术). Northeast Forestry University Press, Harbin,73-78,95-99. (in Chinese) |
| [5] | Dodd JC, Dougall TA, Clapp JP (2002). The role of arbuscular mycorrhizal fungi in plant community establishment at samphire Hoe, Kent, UK—the reclamation platform created during the building of the Channel tunnel between France and the UK. Biodiversity and Conservation, 11,39-58. |
| [6] | Feng G(冯固), Li XL(李晓林), Li SX(李生秀) (2000). Effect of AM fungi on water and nutrition status of cornplants under salt stress. Chinese Journal of Applied Ecology (应用生态学报), 11,595-598. (in Chinese with English abstract) |
| [7] | Feng JC(冯建灿), Zhang YJ(张玉洁), Tan YD(谭运德), Zhang WJ(张文杰) (2000). The development in research on Camptotheca acuminata and utilization of camptothecin. Scientia Silvae Sinicae (林业科学), 36(5),100-108. (in Chinese with English abstract) |
| [8] | Gai JP(盖京苹), Feng G(冯固), Li XL(李晓林) (2004). The effect of AM fungi on the growth of sweet potato. Chinese Journal of Eco-Agriculture (中国生态农业学报), 12(1),111-113. (in Chinese with English abstract) |
| [9] | Gai JP(盖京苹), Feng G(冯固), Li XL(李晓林) (2005). Field distribution pattern and metabolic activity of AM fungi and their effects on Ipomoea batatas growth. Chinese Journal of Applied Ecology (应用生态学报), 16,147-150. (in Chinese with English abstract) |
| [10] | Hamel C (1996). Prospects and problems pertaining to the management of arbuscular mycorrhizae in agriculture. Agriculture, Ecosystems and Environment, 60,197-210. |
| [11] | He XL(贺学礼), Li SX(李生秀) (1999). Effect of VA mycorrhizal fungi on the growth and drought resistance of maize. Acta Universitatis Agriculturalis Boreali-Occidentalis (西北农业大学学报), 27(6),49-53. (in Chinese with English abstract) |
| [12] | He XL(贺学礼), Zhao LL(赵丽莉), Li SX(李生秀) (1999). Effects of water stress and VA mycorrhizal fungi on the growth of mungbean. Acta Agriculturae Nucleatae Sinica (核农学报), 14,290-294. (in Chinese with English abstract) |
| [13] | Huang YF(黄永芳), Li HH(李海华), Chen HY(陈红跃), Li Y(李勇) (2003). Preliminary study on the mycorrhiza inoculation on the seedling of Camptotheca acuminata. Guangdong Forestry Science and Technology (广东林业科技), 19(1),40-42. (in Chinese with English abstract) |
| [14] | Koide RT, Schreiner RP (1992). Regulation of the vesicular-arbuscular mycorrhizal symbiosis. Annual Review of Plant Physiology and Plant Molecular Biology, 43,557-581. |
| [15] | Leng PS(冷平生), Su SC(苏淑钗), Li YH(李月华), Wang SS(王沙生), Jiang XN(蒋湘宁) (2001). Effects of fertilier and drought stress on growth as well as flavonol glycosides and terpene lactone content of Ginkgo biloba seedlings. Journal of Beijing Agriculture College (北京农学院学报), 16(1),32-37. (in Chinese with English abstract) |
| [16] | Li FL(李凤兰), Cao HY(曹弘瑜), Li JQ(李俊清) (1998). Comparison on the anatomical structure of secondary xylem in stem between Davidiain volucrata and Camptotheca acuminata. Journal of Beijing Forestry University (北京林业大学学报), 20(1),75-78. (in Chinese with English abstract) |
| [17] | Lu WL(陆文龙), Zheng HL(郑鹤龄), Pan J(潘洁), Wang DF(王德芳) (1994). Effect of VA mycorrhiza fungi on maize absorption of phosphorus and nitrogen nutrition under unsterilized conditions. Acta Agriculturae Boreali-Sinica (华北农学报), 9(4),94-97. (in Chinese with English abstract) |
| [18] |
Mahendra R, Deepak A, Singh A (2001). Positive growth responses of the medicinal plants Spilanthes calva and Withania somnifera to inoculation by Piriformospora indica in a field trial. Mycorrhiza, 11,123-128.
URL PMID |
| [19] | Phillips JM, Hayman DS (1970). Improved procedures for clearing and attaining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infection. Transactions of the British Mycological Society, 55,158-161. |
| [20] | Plenchette C, Duponnois R (2005). Growth responses of the saltbush (Atriplex nummularia L.) to inoculation with the arbuscular mycorrhizal fungus Glomus intraradices. Journal of Arid Environments, 61,535-540. |
| [21] | Shi BL(石柏林), Zhou GM(周国模), Ying YQ(应叶青), Wu JS(吴家胜), Chu JM(储家淼), Xu SY(许绍远) (1999). Height growth of Camptotheca acuminata yearlings from various provenances. Journal of Zhejiang Forestry College (浙江林学院学报), 16,353-357. (in Chinese with English abstract) |
| [22] | Smith SE, Read DJ (1997). Mycorrhizal Symbiosis 2nd edn. Academic Press Inc., San Diego, 605. |
| [23] | Song YC(宋勇春), Li XL(李晓林), Feng G(冯固) (2001). Effect of inoculated Glomus versiforme of utilization of organic phosphorus by red clover. Chinese Journal of Applied & Environmental Biology (应用与环境生物学报), 7,134-137. (in Chinese with English abstract) |
| [24] |
Strack D, Fester T, Hause B, Schliemann W, Walter MH (2003). Arbuscular mycorrhiza: biological, chemical, and molecular aspects. Journal of Chemical Ecology, 29,1955-1979.
URL PMID |
| [25] | Tao HQ(陶红群), Li XL(李晓林), Zhang JL(张俊铃) (1997). Effect of VA-mycorrhizal infection on growth and nutrient uptake of red clover at different Zn supply levels. Chinese Journal of Applied & Environmental Biology (应用与环境生物学报), 3,263-267. (in Chinese with English abstract) |
| [26] | Varma A (1998). Mycorrhizae, the friendly fungi: what we know, what should we know and how do we know?? In: Varma A ed. Modern Laboratory Manual—Mycorrhizae. Springer, Berlin, Heidelberg, New York,1-24. |
| [27] | Wang CX(王倡宪), Qin L(秦岭), Feng G(冯固), Li XL(李晓林) (2003). Effects of three arbuscular mycorrhizal fungi on growth of cucumber seedlings. Journal of Agro-Environment Science (农业环境科学学报), 22,301-303. (in Chinese with English abstract) |
| [28] | Wang WH(王维华), Li M(李敏), Liu RJ(刘润进), Li XL(李晓林) (2003). Effects of arbuscular mycorrhizal fungi on some physiological index of Zingiber officinace Rosc. Journal of Laiyang Agricultural College (莱阳农学院学报), 20,175-177. (in Chinese with English abstract) |
| [29] | Xi ML(席梦利), Bao SK(包少康) (1997). Study on the transition from procambium to cambium in Camptotheca acuminata. Acta Botanica Boreali-Occidentalia Sinica (西北植物学报), 17(5),83-87. (in Chinese with English abstract) |
| [30] | Yan XF, Wang Y, Yu T, Zhang YH, Dai SJ (2003). Variation in camptothecin content in Camptotheca acuminata leaves. Botanical Bulletin of Academia Sinica, 44,99-105. |
| [31] | Yao JX(姚建祥), Qian YC(钱银才), Shen XL(沈湘林), Jiang XF(蒋小凡), Li ZQ(李志勤), Yu SS(余水生), Xu SY(许绍远), Ying YQ(应叶青) (1997). Superiority of Camptotheca acuminta seedlings. Journal of Zhejiang Forestry College (浙江林学院学报), 14,134-141. (in Chinese with English abstract) |
| [32] | Zandavalli RB, Dillenburg LR, de Souza PV (2004). Growth responses of Araucaria angustifolia (Araucariaceae) to inoculation with the mycorrhizal fungus Glomus clarum. Applied Soil Ecology, 25,245-255. |
| [33] | Zhang G(张功), Wang Q(旺庆), Zheng R(峥嵘), Wang RJ(王瑞君) (2001). Effect of different VA mycorrhizal fungi on the growth of potatoes. Acta Agriculturae Boreali-Sinica (华北农学报), 16(4),115-118. (in Chinese with English abstract) |
| [34] | Zhang QJ(张秋娟), Li SL(李淑玲), Feng JC(冯建灿), Wang XJ(王新建), Zheng L(郑蕾) (2000). The Camptotheca acuminata seedling's growth and changes of its physiological indexes under different pH stress. Journal of Henan Agricultural University (河南农业大学学报), 34,193-195. (in Chinese with English abstract) |
| [35] | Zhao LL(赵丽莉), Wang H(王虹) (1998). The basal physiological study on promoting growth of wheat of VA mycorrhiza. Tritical Crops (麦类作物), 18(1),33-35. (in Chinese) |
| [36] | Zhou GM(周国模), Li XQ(李孝青), Chu JM(储家淼), Chen ZA(陈祖安), Xu SY(许绍远) (2000). Camptotheca acuminata: the law of growth and character correlation of young trees and sprouting branches. Journal of Zhejiang Forestry College (浙江林学院学报), 17,355-359. (in Chinese with English abstract) |
| [37] | Zhu HH(朱红惠), Yao Q(姚青), Yang SZ(羊宋贞) (2005). The influence of different AM fungi inoculation on the vegetative growth and reproduction of tomato. China Vegetables (中国蔬菜), (2),9-11. (in Chinese with English abstract) |
| [1] | 魏莉, 王鹏森, 刘珊, 樊锐, 黄楠, 张建国, 其美拉姆, 苟扬, 刘沫含, 黄婷, 周冀琼. 丛枝菌根真菌对豆禾混播植物垂直生态位养分吸收的影响[J]. 植物生态学报, 2026, 50(3): 760-773. |
| [2] | 周春菡, 熊智诚, 杨明新, 史海兰, 周亚星, 唐玉, 张静, 纪宝明, 代心灵. 黄河源园区高寒湿地菌根真菌群落特征及其影响因素[J]. 植物生态学报, 2026, 50(3): 625-638. |
| [3] | 姜庆宏, 丁露, 王哲, 郑春丽, 冯昭绰. 丛枝菌根真菌与不同功能细菌联用对苜蓿的促生作用[J]. 植物生态学报, 2026, 50(3): 774-788. |
| [4] | 马建辉, 童鑫, 张思榕, 毛子昆, 秦俊, 马克平. 菌根真菌生理生态功能研究进展及展望[J]. 植物生态学报, 2026, 50(3): 498-514. |
| [5] | 王海浪, 付伟, 伍松林, 陈保冬. 丛枝菌根真菌生态功能及群落调控[J]. 植物生态学报, 2026, 50(3): 515-535. |
| [6] | 方迪, 马宁, 李胜功, 郑甲佳, 褚云馨, 杨锦昌, 杨赞明, 张龙宁, 孟盛旺, 高德才, 戴晓琴, 付晓莉, 王辉民, 寇亮. 菌根共生类型对森林养分内循环的调控作用[J]. 植物生态学报, 2026, 50(3): 552-565. |
| [7] | 秦斐斐, 唐朝辉, 司彤, 慈敦伟. 盐碱耐受型和敏感型花生生长发育及根际土壤特性对丛枝菌根真菌的响应[J]. 植物生态学报, 2026, 50(3): 742-759. |
| [8] | 邹纪开, 吴佳怡, 谷云懿, 陈宝明. 不同形态氮添加与丛枝菌根真菌对外来入侵植物白花鬼针草竞争力的影响[J]. 植物生态学报, 2026, 50(3): 722-730. |
| [9] | 何正嘉, 曾歆然, 王琳影, 薛昕宇, 苏钦泽, 李宇, 张寅杰, 吴辉煌, 陈成聪, 吴良泉, 魏安妮, 仇云鹏, 郭梨锦. 茶园丛枝菌根真菌群落和土壤有机碳对镁肥的响应[J]. 植物生态学报, 2026, 50(3): 700-709. |
| [10] | 段世龙, 余成瑾, 许心垚, 冯固, 谢贤安, 张林. 植物-丛枝菌根真菌-细菌连续体及其维持机制[J]. 植物生态学报, 2026, 50(3): 600-611. |
| [11] | 江康威, 吕程, 王亚菲, 李宏, 张芷晴, 王雨, 张青青, 吐尔逊娜依•热依木. 放牧干扰下丛枝菌根真菌群落对土壤多功能性的影响[J]. 植物生态学报, 2026, 50(3): 685-699. |
| [12] | 何堂庆, 王变变, 曹鑫鑫, 张康成, 汪晓东, 王浩, 白彤硕, 赵叶新, 张艺, 王益, 仇云鹏, 胡水金. 半干旱草地植物和丛枝菌根真菌群落对长期降水增加的响应[J]. 植物生态学报, 2026, 50(3): 674-684. |
| [13] | 刘润洪, 阳柳蓉, 梁慧婷, 申卫军. 丛枝菌根和外生菌根植物磷获取与利用策略研究进展与展望[J]. 植物生态学报, 2026, 50(3): 566-583. |
| [14] | 王梦雪, 胡明艳, 储诚进, 陈阳, 罗文启, 马子龙. 亚热带森林不同菌根真菌树种叶片和细根的碳氮磷化学计量特征[J]. 植物生态学报, 2026, 50(2): 334-343. |
| [15] | 张静, 陈洁, 李艳朋, 盘李军, 许涵, 李意德, 何海生. 南亚热带针阔混交人工林植物生物量比较及其影响因子分析[J]. 植物生态学报, 2026, 50(2): 400-416. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||
Copyright © 2026 版权所有 《植物生态学报》编辑部
地址: 北京香山南辛村20号, 邮编: 100093
Tel.: 010-62836134, 62836138; Fax: 010-82599431; E-mail: apes@ibcas.ac.cn, cjpe@ibcas.ac.cn
备案号: 京ICP备16067583号-19
