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作 者:张志坚[1] 高健[1] 蔡春菊[1] 范少辉[1]
机构地区:[1]国际竹藤网络中心国家林业局竹藤科学与技术重点实验室,北京100102
出 处:《林业科学》2011年第1期153-157,共5页Scientia Silvae Sinicae
基 金:科技部"863"计划项目(2006AA100109);"十一五"科技支撑计划(2006BAD19B0203;2006BAD19B0204)资助
摘 要:随着矿产、化工、冶金等工业排放的"三废"剧增以及汽车尾气排放量的增加,人类生存环境中的土壤、水体以及空气受重金属污染现象日趋严重,有些重金属通过食物链在人体内蓄积,严重危害人体健康(Kambhampati et al.,2003)。Effects of lead stress on absorption and distribution of mineral nutrients in Pleioblastus fortunei were studied using a clone that was cultivated in 1 /2 Hoagland nutrient solution supplemented with different Pb^2+ concentration (0,828.8,1 657.6,2 486.4 and 3 315.2 mg·kg^ -1).Roots,rhizomes,stems and leaves were harvested after the seedlings became wilting,and the contents of lead (Pb),sodium (Na),potassium (K),phosphorus (P),magnesium (Mg),calcium (Ca),iron (Fe),manganese (Mn),zinc (Zn),copper (Cu),boron (B) and molybdenum (Mo) in different organs were measured.The results showed that the contents of mineral nutrients in the organs significantly changed with Pb increasing.The Na content in P.fortunei was positively correlated with Pb concentration in the solution,the correlation coefficient were 0.876,0.938,0.938 and 0.954 respectively for root,rhizome,stem and leaf.However the content of B and K obviously decreased with Pb concentration rising.Among the measured elements the concentrations of Na and K changed the most obviously.Meanwhile Mg,P,Ca and Fe also changed to some extent in different organs.It was suggested that the normal balance among mineral elements was broken by lead stress,especially between Na^ + and K^ + ,which might be the major cause for lead potentially toxic to the plant.P.fortunei had a maximum tolerance to Pb of 828.8 mg·kg ^-1,and it was able to effectively accumulate Pb and the enrichment coefficient reached to 1.87 and 2.48 in roots and leaves.Some elements related with chlorophyll synthesis,such as Ca,Mg,Fe and Cu,did not reduce,which,therefore,suggested that chlorosis of the leaves by lead stress was not caused by deficit of Ca,Mg,Fe and Cu.
关 键 词:铅胁迫 菲白竹 矿质营养 Na^+/K^+平衡
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