专论与研究

亚铁胁迫对水稻生长及矿质元素积累的影响

展开
  • 中国水稻研究所,杭州310006

网络出版日期: 2018-05-20

基金资助

国家自然科学基金(31571616,31070243);农业部公益性行业(农业)科研专项(201403015);中国农业科学院协同创新工程项目(CAAS-XTCX2016018);绿色性状基因聚合与种质创新(2014AA10A603)

Effects of Ferrous Toxicity on Growth of Rice and Accumulation of Some Mineral Elements in Rice Plants

Expand

Online published: 2018-05-20

摘要

亚铁胁迫导致植株生长发育受抑制,影响了水稻产量和稻米品质。因此,明确亚铁胁迫的分子与生理机制,对水稻耐受型亚铁品种的选育至关重要。本文选用对亚铁毒害有显著差异的10个籼型水稻品种为材料,通过亚铁毒害胁迫水培处理,研究亚铁毒害对不同基因型水稻生长与Zn、Mn、P、K、Mg、Ca等矿质元素积累的影响。结果表明,高浓度Fe2+处理后,水稻株高、根长和植株(地上部和根系)干物质量均受到显著抑制,同时水稻植株叶片中叶绿素含量降低,SOD、CAT活性和MDA含量明显高于根系,根膜、根系和地上部中Fe元素含量明显增高,而根系和地上部中其他矿质元素含量则显著低于正常供铁植株。可见,过量的Fe2+会对水稻产生毒害,导致植株中Zn、Mn、P、K、Mg、Ca等营养元素严重缺乏,影响植株的正常生长发育,进而影响稻米产量和品质。因此,铁毒害造成水稻植株缺乏其他营养进而影响其生长发育,是铁毒害作用的重要生理机制。

本文引用格式

赵燕#,项华#,熊娜,黄奇娜*,李春生* . 亚铁胁迫对水稻生长及矿质元素积累的影响[J]. 中国稻米, 2018 , 24(3) : 30 -38 . DOI: 10.3969/j.issn.1006-8082.2018.03.007

Abstract

Iron toxicity is a major nutrient disorder affecting rice, it leads to the inhibition of plant growth and affects the yield and quality of rice. Therefore,understanding the genetic and physiological mechanisms associated with iron toxicity tolerance of rice is crucial in adaptive breeding. In this study, an experiment was conducted to study the effects of high iron stress on growth and nutrient elements in 10 kinds of genotypes rice with different iron tolerance plants, to understand the growth of different genotypes rice and effect of Zn, Mn, P, K, Mg, Ca mineral elements accumulation under the ferrous toxicity.The results showed that high iron stress significantly inhibited plant height, root length, dry weight of the plant(shoots and roots) in all the genotypes rice. Under excessive ferrous stress, chlorophyll content decreased in the leaves, SOD, CAT activities and MDA content in leaves were apparent higher than in root. Moreover, the iron content in iron plaque, roots and shoots remarkably increased, while other nutrients element in roots and shoots significantly decreased. In conclusion, Zn, Mn, P, K, Mg and Ca nutrients elements of all the genotypes rice were much lower than normal iron plants in shoots under high Fe2+ concentration treatment, so the iron toxicity caused serious nutrition deficiencies in rice plants and affected the normal growth,  and further influence the production and quality of rice. In summary, ferrous toxicity causes the other nutriment element lack in rice plants and then affect its growth and development, this is the important physiological mechanism of iron toxicity.

参考文献

[1]    Wan J L, Zhai H Q, Wan J M, et al. Mapping QTL for traits associated with resistance to ferrous iron toxicity in rice (Oryza sativa L.), using japonica chromosome segment substitution lines.[J]. Acta Genetica Sinica, 2003, 30(10): 893-898.
[2]    崔宏浩,陈正刚,朱青,等. 外源物对冷浸田土壤亚铁量及水稻产量的影响[J]. 西南农业学报,2015,28(1):220-225.
[3]    Becker M, Asch F. Iron toxicity in rice-conditions and management concepts [J]. J Plant Nutr Soil Sci, 2005,  168(4): 558-573.
[4]    Audebert A, FofanaM. Rice yield gap due to iron toxicity in West Africa[J]. J Agron Crop Sci, 2010, 195(1): 66-76.
[5]   Yamauchi M, Peng X X. Iron toxicity and stress-induced ethylene production in rice leaves [J]. Plant Soil,  1995, 173(1): 21-28.
[6]    Fageria N K, Santos A B, Barbosa Filho M P, et al. Iron toxicity in lowland rice[J]. J Plant Nutr, 2008, 31(9): 1 676-1 697.
[7]    邢承华,李方,徐根娣,等. 铁毒胁迫对水稻幼苗中POD和CAT同工酶的影响[J].浙江农业学报,2008,20(6):457-460.
[8]    王贵民,陈国祥,杨艳华,等. 亚铁对杂交水稻幼苗生长和部分生理生化特性的影响[J]. 南京师大学报:自然科学版,2003,26(2):56-60.
[9]    Stein R J, Duarte G L, Spohr M G, et al. Distinct physiological responses of two rice cultivars subjected to iron toxicity under field conditions[J]. Ann Appl Biol, 2009, 154(2): 269-277.
[10]  Bashir K, Ishimaru Y, Nishizawa N K. Iron uptake and loadinginto rice grains [J]. Rice, 2010, 3: 122-130.
[11]  Lutts S. Effects of ferrous iron toxicity on the growth and mineral composition of an interspecific rice[J]. J Plant Nutr, 2005, 28(1): 1-20.
[12]  白红红,章林平,王子民,等. 锰对水稻亚铁毒害的缓解作用[J]. 中国水稻科学, 2013, 27(5):491-502.
[13]  Green M S, Etherington J R. Oxidation of ferrous iron by rice (Oryza sativa L.) roots: a mechanism for waterlogging tolerance[J]. J Exp Bot,1977, 28(104): 678-689.
[14]  Audebert A, Sahrawat K L. Mechanisms for iron toxicity tolerance in lowland rice [J]. J PlantNutr, 2000, 23:  1 877-1 885.
[15]  周锋利,江玲,王松凤,等. 钾离子对水稻亚铁毒害的缓解作用[J]. 南京农业大学学报,2005,28(4):6-10.
[16]  蔡妙珍,林咸永,罗安程,等. 过量Fe2+对水稻生长和某些生理性状的影响[J].植物营养与肥料学报,2002,8(1):96-99.
[17]  Sahrawat K L, Toriyama K, Heong K L, et al. Managing iron toxicity in lowland rice: the role of tolerant genotypes and plant nutrients[C].// World Rice Rice Research Conference Held at Tsukuba, Japan, 2004: 452-454.
[18]  何鑫,张存政,刘贤金,等. 外源硝酸钙对水培生菜生长及矿质元素吸收的影响[J]. 核农学报,2016,30(12):2 460-2 466.
[19]  Sikirou M, Saito K, Achigandako E G, et al. Genetic improvement of iron toxicity tolerance in rice-progress, challenges and prospects in West Africa.[J]. Plant Prod Sci, 2015, 18(4): 423-434.
[20]  Matthus E, Wu L B, Ueda Y, et al. Loci, genes,  and mechanisms associated with tolerance to ferrous iron toxicity in rice (Oryza sativaL.)[J]. Theor Appl Genet, 2015, 128(10): 2 085.
[21]  高俊凤. 植物生理学实验指导[M]. 北京:高等教育出版社,2006.
[22]  Huang Q N, An H, Yang Y J, et al. Effects of Mn-Cd antagonistic interaction on Cd accumulation and major agronomic traits in rice genotypes by different Mn forms[J]. Plant Growth Regul, 2017,82:317-331.
[23]  Tang Q Y, Zhang C X. Data Processing System (DPS) software with experimental design, statistical analysis and data mining developed for use in entomological research[J]. Insect Sci, 2013, 20(2): 254-260.
[24]  朱鹤健. 水稻土[M]. 北京:农业出版社,1985.
[25]  Becana M, Moran J F, Iturbe-Ormaetxe I. Iron-dependent oxygen free radical generation in plants subjected to environmental stress: toxicity and antioxidant protection[J]. Plant Soil, 1998, 201(1): 137-147.
[26]  Hell R, Stephan U W. Iron uptake, trafficking and homeostasis in plants[J]. Planta, 2003, 216(4): 541-551.
[27]  Shimizu A, Yanagihara S, Kawasaki S, et al. Phosphorus deficiency-induced root elongation and its QTL in rice (Oryza sativa L.)[J]. Theor Appl Genet, 2004, 109(7): 1 361-1 368.
[28]  Dufey I, Hiel M P, Hakizimana P, et al. Multienvironment quantitative trait loci mapping and consistency across environments of resistance mechanisms to ferrous iron toxicity in rice[J]. Crop Sci, 2012, 52(2): 539-550.
[29]  Tanaka A, Loe R, Navasero S A. Some mechanisms involved in the development of iron toxicity symptoms in the rice plant[J]. Soil Sci Plant Nutr, 1966, 12(4): 32-38.
[30]  Jcg O, Benckiser G, Watanabe I, et al. Multiple nutritional soil stress as the prerequisite for iron toxicity of wetland rice (Oryza sativa L.)[J]. Trop Agric, 1983, 60(2): 102-106.

文章导航

/

浙ICP备05004719号-16
公安备案号:33010302003356
版权所有 © 《中国稻米》编辑部
地址:浙江省杭州市富阳区水稻所路28号 邮编:311400 电话:0571-63370271, 63370368 E-mail:zgdm@163.com
本系统由北京玛格泰克科技发展有限公司设计开发