Crop Cultivation & Genetic Breeding

Effects of Physiological Barrier on Growth and Cd,As and Micronutrient Accumulation of Wheat at Seedling Stage

Expand
  • (1.Forestry Institute,Henan Agricultural University,Zhengzhou 450002,China; 2.College of Life Sciences,Henan Agricultural University,Zhengzhou 450002,China; 3.Plant Nutrition & Resources and Environment Research Institute,Henan Academy of Agricultural Sciences,Zhengzhou 450002,China;4.Institute of International Education, Henan Agricultural University,Zhengzhou 450002,China)

Received date: 2019-06-08

  Online published: 2020-01-15

Abstract

In order to investigate the changes of Cd and As contents in wheat under physiological barrier treatment in calcareous soils of northern China,a pot experiment was conducted to compare the effects of 8 physiological barrier agents on growth and contents of Cd,As and micronutrient of wheat seedlings.The results showed that Fe treatment,Mg treatment and Mn treatment increased wheat biomass,among which the effect of Fe treatment was the best.The inhibitory effect of Mg and Mn treatments on the Cd accumulation of wheat was better,which decreased the Cd content of the aboveground parts of wheat by 15.2% and 20.6%,respectively. All physiological barrier agents did not significantly affect the As content of wheat.It was also found that Zn and Se treatments decreased the content of Fe of wheat. In general,foliar application of Mn and Mg was expected to be an effective measure to inhibit the accumulation of Cd and As of wheat,while the effects on wheat micronutrient content should be considered.

Cite this article

YI Baizhu, JIA Rui, WANG Ning, YAO Chen, LI Benyin, LI Xuanzhen, ZHANG Zhina, CHEN Xing, ZHAO Yongjian . Effects of Physiological Barrier on Growth and Cd,As and Micronutrient Accumulation of Wheat at Seedling Stage[J]. Journal of Henan Agricultural Sciences, 2020 , 49(1) : 24 -30 . DOI: 10.15933/j.cnki.1004-3268.2020.01.004

References

1勾玲,黄建军,孙锐,.玉米不同耐密植品种茎秆穿刺强度的变化特征[J.农业工程学报,2010,26(11):156-162.

   GOU L,HUANG J J,SUN R,et al.Characteristics of stem puncture intensity of different density resistant varieties of maizeJ.Transactions of the CSAE,2010,26(11):156-162.

2王新,贾永锋.土壤砷污染及修复技术[J.环境科学与技术,2007,30(2):107-110.

   WANG X,JIA Y F.Arsenic pollution in soil and remediation technologyJ.Scientific Environment and Technology,2007,30(2):107-110.

3蔡保松,陈同斌,廖晓勇,.土壤砷污染对蔬菜砷含量及食用安全性的影响[J.生态学报,2004,24(4):711-717.

   CAI B S,CHEN T B,LIAO X Y,et al.Arsenic concentrations in soils and vegetables and their risk assessments in highly contaminated area in Hunan ProvinceJ.

Acta Ecologica Sinica,2004,24(4):711-717.

4王辉,许超,欧阳东盛,.不同钝化剂对污染土壤中多重金属的固定[J.湖南农业科学,2018,19(6):24-30.

   WANG H,XU C,OUYANG D S,et al.Fixation of multiple metals in contaminated soil by different passivators J.Agricultural Science & Technology,2018,19(6):24-30.

5章明奎,倪中应,沈倩.农作物重金属污染的生理阻控研究进展[J.环境污染与防治,2017,39(1):96-101.

    ZHANG M K,NI Z Y,SHEN Q.Research progress in physiological resistance control of heavy metal pollution in cropsJ.Environmental Pollution and Prevention,2017,39(1):96-101.

6于焕云,崔江虎,乔江涛,.稻田镉砷污染阻控原理与技术应用[J.农业环境科学学报,2018,37(7):1418-1426.

    YU H Y,CUI J H,QIAO J T,et al.Principle and technique of arsenic and cadmium pollution control in paddy fieldJ.Journal of AgroEnvironment Science,2018,37(7):1418-1426.

7索炎炎.镉污染条件下叶面喷施锌肥对水稻锌镉积累的影响[D.杭州:浙江大学,2012.

   SUO Y Y.Effects of foliar zinc application on cadmium and zinc accumulation of rice grown in cadmium contaminated soilD.HangzhouZhejiang University,2012.

8蒋斌.叶面施硒-壳聚糖肥对镉污染条件下作物生长及品质影响研究[D.长沙:湖南大学,2014.

   JIANG B.Effects of foliar application of selenium chitosan fertilizer on crop growth and quality under cadmium pollutionD.ChangshaHunan University,2014.

9刘俊.镧、硒对镉胁迫下番茄、黄瓜产量品质及Cd含量的调控作用[D.重庆:西南大学,2014.

   LIU J.Effects of La and Se on yield,quality and Cd content of tomato and cucumber under Cd stressD.ChongqingXinan University,2014.

10李超.硅、钼、硒及其配合喷施对几种蔬菜吸收、积累镉及蔬菜品质的影响[D.武汉:华中农业大学,2011.

    LI C.The effect of silicon,molybdenum,selenium and their complexes spraying on quality,cadmium uptake and accumulation of different vegetablesD.WuhanHuazhong Agricultural University,2011.

11张世杰,孙洪欣,薛培英,.叶面施硅时期对冬小麦镉铅砷累积的阻控效应研究[J.河北农业大学学报,2018,41(3):1-6.

    ZHANG S J,SUN H X,XUE P Y,et al.Study on the effect of foliar application of silicon fertilizer on lead cadmium and arsenic accumulation in winter wheatJ.Journal of Hebei Agricultural University,2018,41(3):1-6.

12宋敏,徐文竞,彭向永,.外源脯氨酸对镉胁迫下小麦幼苗生长的影响[J.应用生态学报,2013,24(1):129-134.

    SONG M,XU W J,PENG X Y,et al.Effects of exogenous proline on the growth of wheat seedlings under cadmium stressJ.Chinese Journal of Applied Ecology,2013,24(1):129-134.

13肖靖秀,郑毅,汤利,.间作小麦蚕豆不同生长期根际有机酸和酚酸变化[J.土壤学报,2016,53(3):685-693.

    XIAO J X,ZHENG Y,TANG L,et al.Changes in organic and phenolic acids in rhizosphere of interplanted wheat and faba bean with growth stageJ.Acta

Pedologica Sinica,2016,53(3):685-693.

14汪丹丹,刘西平.叶面喷施铁和镁微肥对玉米和小麦幼苗生理代谢及生长的影响[D.杨凌:西北农林科技大学,2016.

  WANG D D,LIU X P.Effects of spraying iron and magnesium solutions on physiological metabolism and growth of maize and wheat seedlingsD.YanglingNorthwest A & F University,2016.

15王丽,毛平平,党建友,.叶面喷施微肥对晋南小麦产量和微量元素含量的影响[J.中国土壤与肥料,2016,15(5):85-89.

    WANG L,MAO P P,DANG J Y,et al.Effect of foliar fertilizer on wheat yield and content of trace elementsJ.Soils and Fertilizers Sciences in China,2016,15(5):85-89.

16曾建国,李廷亮,文涛,.叶面喷施锰对春小麦生长及锰吸收转移的影响[J.灌溉排水学报,2017,36(9):25-29.

    ZENG J G,LI T L,WEN T,et al.Impact of spraying manganese fertilizer on leaf on growth,absorption and transfer of manganese in spring wheatJ.Journal of Irrigation and Drainage,2017,36(9):25-29.

17张姗,邵宇航,石祖梁,.施镁对花后高温胁迫下小麦干物质积累转运和籽粒灌浆的影响[J.麦类作物学报,2017,37(7):963-969.

    ZHANG S,SHAO Y H,SHI Z L,et al.Effect of magnesium fertilization on dry matter accumulation and translocation and grain filling under postanthesis heat stress in winter wheatJ.Journal of Triticeae Crops,2017,37(7):963-969.

18王佳,聂兆君,扶海超,.外源Zn2+对冬小麦幼苗根系生长及部分氮代谢关键酶的影响[J.河南农业大学学报,2018,52(3):307-312.

    WANG J,NIE Z J,FU H C,et al.Effects of exogenous Zn2+ on root growth and some key enzymes in nitrogen metabolism in winter wheat seedlingsJ.Journal of Henan Agricultural University,2018,52(3):307-312.

19VESNA M,ZORICA P B,DANIJELA D,et al.Antagonism between cadmium and magnesium: A possible role of magnesium in therapy of cadmium intoxicationJ.Magnesium Research Official Organ of the International Society for the Development of Research on Magnesium,2010,23(1):19-26.

20黄太庆,江泽普,廖青,.含硒叶面肥的施用方法对水稻精米硒、镉富集的影响[J.西南农业学报,2017,30(6):1376-1381.

    HUANG T Q,JIANG Z P,LIAO Q,et al.Effect of different selenium foliar fertilizers application methods on selenium and cadmium enrichment in polished riceJ.Southwest China Journal of Agricultural Sciences,2017,30(6):1376-1381.

21GARCIA M A,CHIMENOS J M,FERNNDEZ A I,et al.Lowgrade MgO used to stabilize heavy metals in highly contaminated soilsJ.Chemosphere,2004,56(5):481-491.

22SHI S,WANG T,CHEN Z,et al.OsHAC1;1 and OsHAC1;2 function as arsenate reductases and regulate arsenic accumulationJ.Plant Physiology,2016,172(3):1708-1719.

23XU J,SHI S,WANG L,et al.OsHAC4 is critical for arsenate tolerance and regulates arsenic accumulation in riceJ.New Phytologist,2017,215(3):1090-1101.

24GIBSON R S,HESS S Y,HOTZ C,et al.Indicators of zinc status at the population level:A review of the evidenceJ.The British Journal of Nutrition,2008,99(Z3):14-23.

25CAKMAK I.Enrichment of fertilizers with zinc:An excellent investment for humanity and crop production in IndiaJ.Journal of Trace Elements in Medicine and Biology,2009,23(4):281-289.

26CAKMAK I.Plant nutrition research:Priorities to meet human needs for food in sustainable waysJ.Plant and Soil,2002,247:3-14.

27PINSTRUPANDERSEN  P.Improving human nutrition through agricultural research:Overview and objectivesJ.Food and Nutrition Bulletin,2000,21:352-355.

Outlines

/