碱蓬和三角叶滨藜幼苗生长、光合特性对不同盐度的响应  被引量:18

Response of plant growth and photosynthetic characteristics in Suaeda glauca and Atriplex triangularis seedlings to different concentrations of salt treatments

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作  者:彭益全[1] 谢橦[1] 周峰[2,3] 万红建[4] 张春银 翟瑞婷[1] 郑青松[1] 郑春芳[6,7] 刘兆普[1] 

机构地区:[1]南京农业大学资源与环境科学学院江苏省海洋生物学重点实验室,江苏南京210095 [2]滨州学院山东省黄河三角洲生态环境重点实验室,山东滨州256603 [3]南京晓庄学院生物化工与环境工程学院,江苏南京211171 [4]浙江省农业科学院蔬菜研究所,浙江杭州320021 [5]江苏省盐城绿苑海蓬子有限公司,江苏盐城224002 [6]浙江省海洋水产养殖研究所 [7]浙江省永兴水产种业有限公司,浙江温州325005

出  处:《草业学报》2012年第6期64-74,共11页Acta Prataculturae Sinica

基  金:浙江省重大科技专项(2012C12017-3);南京农业大学SRT项目(1113A28);浙江省科技项目(2010F20007);山东省黄河三角洲生态环境重点实验室开放基金(2011KFJJ02);江苏省自然科学基金青年基金项目(BK2012073)资助

摘  要:为了探讨碱蓬和三角叶滨藜对不同盐度的响应机制,采用砂培试验,用含不同浓度NaCl的Hoagland营养液处理其幼苗30d,分析其生物量、株高、含水量(WC)、叶绿素(Chl)含量、类胡萝卜素(Car)含量、Chl/Car、Chl a/Chl b、净光合速率(Pn)、气孔导度(Gs)、细胞间CO2浓度(Ci)、蒸腾速率(Tr)、水分利用效率(WUE)和气孔限制值(Ls)的变化。结果表明,1)和对照(不加NaCl)相比,低盐(100mmol/L NaCl)显著提高碱蓬幼苗的干重(DW)、株高和地上部WC,三角叶滨藜的株高不受明显影响,而其地上部DW和WC显著下降;中盐(400mmol/L NaCl)胁迫下,碱蓬株高、地上部DW和WC无显著变化,而三角叶滨藜地上部DW和WC显著下降;高盐(800mmol/LNaCl)下,两植物DW和含水量均明显降低,且碱蓬干重和含水量的降幅要显著低于三角叶滨藜。2)低盐对两植物的Chl含量没有明显影响,随着盐度的增加,其Chl含量均显著下降,碱蓬Chl含量的降幅显著大于三角叶滨藜。低盐明显提高碱蓬叶片的Car含量,但是不影响三角叶滨藜叶片的Car含量,随着盐度的增加,两植物的Car含量均显著下降,碱蓬Car含量的降幅显著大于三角叶滨藜的。随着NaCl浓度增加,两植物的Chl a/Chl b均逐渐上升,而对三角叶滨藜的Chl/Car影响也不显著,但是随着盐度的增加,碱蓬叶片Chl/Car呈先降低后升高的趋势。3)100mmol/L NaCl处理显著提高碱蓬的Pn、Gs和Tr,但显著降低三角叶滨藜的Pn、Gs和Tr,随着盐度的进一步增加,二者的Pn、Tr、Gs均显著下降,其中碱蓬Pn、Tr的降幅要显著低于三角叶滨藜的。随着盐度的增加,碱蓬Ci逐渐显著下降;而随着盐度增加,三角叶滨藜的Ci呈先降低、再升高的趋势,800mmol/L NaCl处理的Ci显著高于对照。4)碱蓬生物量与Tr、Pn、地上部WC、Car含量、根WC、Gs、根冠比、株高、Chl含量、Ci有极显著的正相关,而与Chl/Car、Ls呈极显著负相关,与WUE显著负相关;三角叶滨藜生物�In order to get the response mechanism of Suaeda glauca and Atriplex triangularis to different salinity level,we investigated the alteration of different concentrations of NaCl with Hoagland solution on plant biomass,height,water content(WC),chlorophyll(Chl) content,carotenoid(Car) content,Chl/Car,Chl a/Chl b,Pn,Gs,Ci,Tr,water use efficiency(WUE) and stomatal limitation(Ls) in S.glauca and A.triangularis seedlings in this study.1) Compared with control,treatment with 100 mmol/L NaCl significantly increased the dry weight,height and shoot WC of S.glauca plant,however,100 mmol/L NaCl did not affect the plant height of A.triangularis,decreasing its shoot dry weight and WC markedly.Treatment with 400 mmol/L NaCl had no effect on the shoot dry weight(DW) and WC of S.glauca,but it heavily reduced shoot DW and WC of A.triangularis.With salinity of 800 mmol/L NaCl,DW and WC of two plants were decreased significantly,and the decrease of A.triangularis was much more than that of S.glauca.2) Treatment of 100 mmol/L NaCl did not affect the Chl content,and treatments of 200 and 400 mmol/L NaCl significantly decreased the Chl content in both two plants.However,the decrease was much more significantly in S.glauca than that in A.triangularis under 200 and 400 mmol/L NaCl.Treatment of 100 mmol/L NaCl significantly increased the Car content of S.glauca,but did not affect the Car content of A.triangularis.Treatments of 200 and 400 mmol/L NaCl significantly decreased the Chl content in both two plants.Similarly,the decrease was much more significantly in S.glauca than that in A.triangularis.All NaCl treatments did not affect Chl a/Chl b in both plants and Chl/Car in A.triangularis,but Chl/Car in S.glauca was descended in first and ascended at last as NaCl concentrations rising.3) We found that values of Pn,Gs and Tr in S.glauca were all ascended under treatment with 100 mmol/L NaCl,while 100 mmol/L NaCl significantly decreased the Pn,Gs and Tr in A.triangularis.Under stresses of 200 and 400 mmol/L NaCl,

关 键 词:碱蓬 三角叶滨藜 幼苗 耐盐性 光合特性 

分 类 号:X173[环境科学与工程—环境科学]

 

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