Louisiana iris,Pb stress,accumulation,et al.Effect of Pb stress on Pb Accumulation and Non-protein Thiol Content in Louisiana Iris[J].Northern Horticulture,2015,39(21):77-82.[doi:10.11937/bfyy.201521022]
铅胁迫下路易斯安那鸢尾铅吸收量和非蛋白巯基的变化
- Title:
- Effect of Pb stress on Pb Accumulation and Non-protein Thiol Content in Louisiana Iris
- Keywords:
- Louisiana iris; Pb stress; accumulation; non-protein thiol; GSH; Cys
- 文献标志码:
- A
- 摘要:
- 以路易斯安那鸢尾为试材,采用营养液培养方法,对铅(Pb)胁迫下路易斯安那鸢尾品种铅吸收量和非蛋白巯基(NPT)的变化等进行了研究。结果表明:路易斯安那鸢尾品种‘Professor Neil’对铅吸收和富集量相对较大且耐性最强。随着Pb浓度的升高,叶片、根状茎和根的Pb含量增加,增加量依次为根>根状茎>叶片。根在高浓度1 200 mg/L Pb时达到最大,其含量为108 366 mg/kg DW;根状茎在800 mg/L Pb时达到最大,其含量为7 966 mg/kg DW,呈先缓慢上升再下降的趋势;叶片在高浓度800 mg/L Pb时达到最大,其含量为4 011 mg/kg DW。随着Pb浓度的升高,根系耐受指数(IT)逐渐下降,在Pb含量大于600 mg/L后存在显著性差异。根至茎转移率(R/R)呈先上升再下降的趋势,在800 mg/L Pb 处理时达到最大值10.02%。茎至叶转移率(R/L)呈先上升再下降的趋势,在600 mg/L Pb 处理时达到最大值57.78%。Pb胁迫下随着0~600 mg/L浓度的升高和1~7 d的时间推移,GSH和Cys含量呈增加的趋势并产生显著差异,尤其GSH起着重要的Pb解毒作用。
- Abstract:
- Taking Louisiana iris as material,the effects of lead (Pb) stress on Pb content and the contents of non-protein thiols (NPT) in roots,rhizomes and leaves of Louisiana iris were studied by hydroponic culture.The results showed that Louisiana iris variety ‘Professor Neil’ accumulated and enriched relatively large amount of Pb and was the highest Pb tolerant variety.Pb contents in leaves,rhizomes and roots increased with the Pb level enhanced in the liquid and the content order from highest to the least were root>rhizome>leaf.Pb content in the leaves of ‘Professor Neil’ under 800 mg/L Pb treatment were the maximum and reached to 4 011 mg/kg DW.Pb transfer rate (R/R) from root to rhizome showed a trend of rise first and then dropped and in 800 mg/L Pb treatment maximum and reached 10.02%,and Pb transfer rate (R/L) from rhizome to leaf showed similar trend with R/R,in 600 mg/L Pb reached the maximum and was 57.78%.As the Pb concentrations (0-600 mg/L) increased and the stress time prolonged,the contents of GSH and Cys were significantly increased,showing these biochemical compounds might play an important role in Pb detoxification.
参考文献/References:
[1]YU X Z,GU J D,HUANG S Z.Hexavalent chromium induced stress and metabolic responses in hybrid willows[J].Ecotoxicology,2007,16(3):299-309. [2]MARCHIOL L,SACCO P,ASSOLARI S,et al.Reclamation of polluted soil:phytoremediation potential of crop-relatedBrassica species[J].Water,Air,and Soil Pollution,2004,158(1):345-356. [3]PANICH-PAT T,POKETHITIYOOK P,KRUATRACHUE M,et al.Removal of lead from contaminated soils by Typha angustifolia[J].Water,Air,and Soil Pollution,2004,155(1-4):159-171. [4]何冰,杨肖娥,倪吾钟.一种新的铅富集植物:富集生态型东南景天[J].植物学报,2002,44(11):1365-1370. [5]CHEHREGANI A,NOORI M,YAZDI H L.Phytoremediation of heavy-metal-polluted soils:screening for new accumulator plants in Angouran mine (Iran) and evaluation of removal ability[J].Ecotoxicology Environment Safety,2009,72(5):1349-1353. [6]HAN Y L,HUANG S Z,GU J G,et al.Tolerance and accumulation of lead by species of Iris L.[J].Ecotoxicology,2008,17(8):853-859. [7]YUAN H Y,HUANG S Z,GUO Z,et al.Effects of Zn on the growth,Cd accumulation and physiological resistance of Iris lactea var.chinensis under Cd stress[J].Chinese Journal of Applied Ecology,2007,18(9):2111-2116. [8]原海燕,郭智,黄苏珍.Pb污染对马蔺生长、体内重金属元素积累以及叶绿体超微结构的影响[J].生态学报,2011,31(12):3350-3357. [9]王鸿燕,佟海英,黄苏珍,等.柠檬酸和草酸对Pb胁迫下马蔺生长和生理的影响[J].生态学杂志,2010(7):1340-1346. [10]ZHOU Y Q,HUANG S Z,YU S L,et al.The physiological response and sub-cellular localization of lead and cadmium in Iris pseudacorus L.[J].Ecotoxicology,2010,19(1):69-76. [11]FU J J,HAN Y L,LI Y Y,et al.Effects of single and combined stresses of Pb,Cd on growth and some physiological indexes of Iris ensata var.hortensis seedling[J].Journal of Plant Resources and Environment,2010,19(3):23-27. [12]黄苏珍,韩玉林,谢明云,等.中国鸢尾属观赏植物资源的研究与利用[J].中国野生植物资源,2003,22(1):4-7. [13]SUN Y,HUANG S,HAN Y,et al.Cu uptake and distribution in two species of Iris L.grown on abandoned tailings[J].Fresenius Environmental Bulletin,2012,21(2):357-363. [14]YUAN H,HUANG S,HAN Y,et al.The growth,lead accumulation and oxidative stress response of Iris lactea var. chinensis under lead stress[J].Fresenius Environmental Bulletin,2013,22(7):1887-1894. [15]YUAN H,HUANG S,HAN Y,et al.The effect of planting Iris lactea var.chinensis on Pbfractionations and activities of enzymes in artificial Pb contaminated soils[J].Fresenius Environmental Bulletin,2012,21(6):1486-1492. [16]郭晋燕,张金政,孙国峰,等.根茎鸢尾园艺学研究进展[J].园艺学报,2006,33(5):1149-1156. [17]CAILLET M.The Louisiana iris:the taming of a native American wildflower[M].Portland:Timber Press,2000:57. [18]朱旭东,田松青,蔡曾煜.水生常绿杂种鸢尾新品种[J].中国花卉园艺,2007(12):46-47. [19]ZHU X,TIAN S,HUANG S,et al.Effects of Pb on growth and subcellular structure of Louisiana iris,and its localization in the plant[J].Fresenius Environmental Bulletin,2014,23(10):2395-2400. [20]朱旭东,原海燕,黄苏珍,等.铅(Pb)胁迫对路易斯安那鸢尾生长和生理生化特性的影响[J].植物资源与环境学报,2014,23(4):62-67. [21]HALL J L,WILLIAMS L E.Transition metal transporters in plants[J].Journal of Experimental Botany,2003,54(393):2601-2613. [22]MALECKA A,JARMUSZKIEWICZ W,TOMASZEWSKA B.Antioxidative defense to lead stress in subcellular compartments of pea root cells[J].Acta Biochimica Polonica,2001,48(3):687-698. [23]孙琴,王超.土壤外源Cd和Pb复合污染对小麦(Triticun aestivum L.)根系植物络合素和谷胱甘肽合成的影响[J].生态环境,2008,17(5):1833-1838. [24]GUPTA D K,HUANG H G,YANG X E,et al.The detoxification of lead in Sedum alfredii H.is not related to phytochelatins but the glutathione[J].Journal of Hazardous Materials,2010,177(1-3):437-444. [25]原海燕,郭智,佟海英,等.Pb胁迫下外源GSH对马蔺体内Pb积累和非蛋白巯基化合物含量的影响[J].水土保持学报,2013,27(4):212-216. [26]原海燕,黄钢,佟海英,等.Cd胁迫下马蔺根和叶中非蛋白巯基肽含量的变化[J].生态环境学报,2013,22(7):1214-1219. [27]NOCTOR G,FOYER C H.Ascorbate and glutathione:keeping active oxygen under control[J].Annual Review of Plant Physiology and Plant Molecular Biology,1998,49:249-279. [28]SCHICKLER H,CASPI H.Response of antioxidative enzymes to nickel and cadmium stress in hyperaccumulator plants of the genus Alyssum[J].Physiologia Plantarum,1999,105:39-44. [29]WILKINS D A.A technique for the measurement of lead tolerance in plants[J].Nature,1957,180(1):37-38. [30]HE B,YANG X,NI W,et al.Sedum alfredii:a new lead-accumulating ecotype[J].Acta Botanica Sinica,2001,44(11):1365-1370. [31]PIECHALAK A,TOMASZEWSKA B,BARALKIEWICZ D,et al.Accumulation and detoxification of lead ions in legumes[J].Phytochemistry,2002,60(2):153-162. [32]王鸿燕,黄苏珍,原海燕,等.Pb和Cd单一及复合胁迫条件下溪荪(Iris sanguinea)生长及金属离子积累特征分析[J].植物资源与环境学报,2011,20(3):24-28. [33]高可辉,葛滢,张春华.缺硫对镉胁迫下水稻幼苗非蛋白巯基物质含量和谷胱甘肽硫转移酶活性的影响[J].应用生态学报,2011,22(7):1796-1802.
相似文献/References:
[1]仇恒佳,周玉珍,林德明,等.路易斯安娜鸢尾栽培管理技术与园林应用[J].北方园艺,2014,38(05):65.
QIU Heng-jia,ZHOU Yu-zhen,LIN De-ming,et al.The Application of Louisiana iris in Gardens and Its Cultivation Management[J].Northern Horticulture,2014,38(21):65.
备注/Memo
第一作者简介:田松青(1974-),女,硕士,副教授,高级工程师,现主要从事观赏植物资源与环境修复等研究工作。E-mail:tiansongqing@126.com.责任作者:朱旭东(1972-),男,博士,教授,现主要从事花卉育种和产业化等研究工作。E-mail:13862130525@163.com.基金项目:江苏省教育厅‘青蓝工程’科技创新团队资助项目(2014-24);江苏省教育厅‘青蓝工程’中青年学术带头人资助项目(2012-246);苏州市科技支撑计划资助项目(SNG201209)。