Yield and quality responses, plant metabolism and metal distribution pattern in aromatic rice under lead (Pb) toxicity

文献类型: 外文期刊

第一作者: Ashraf, Umair

作者: Ashraf, Umair;Tang, Xiangru;Ashraf, Umair;Tang, Xiangru

作者机构:

关键词: Aromatic rice;Anti-oxidative defence;Oxidative damage;Photosynthetic pigments;Yield and quality

期刊名称:CHEMOSPHERE ( 影响因子:7.086; 五年影响因子:6.956 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Present study was planned to assess the yield and quality responses, plant physio-biochemical characters and Pb distribution pattern in two aromatic rice cultivars viz., Guixiangzhan (GXZ) and Nongxiang-18 (NX-18) under four different Pb-levels viz., control (0), low (400), medium (800) and high (1200) mg kg(-1) of soil. Results revealed that Pb toxicity increased H2O2, lipid peroxidation and electrolyte leakage while inhibited photosynthetic pigments production, but such increment was higher in NX-18 than GXZ. Furthermore, Pb toxicity variably affected protein, proline and soluble sugars and the activities of enzymatic antioxidants viz., superoxide dismutase (SOD), peroxidases' (POD), catalases (CAT) and ascorbate peroxidases (APX) and non-enzymatic anti-oxidants viz., reduced glutathione (GSH) and oxidized glutathione (GSSG) in both rice cultivars. The reductions in osmolyte accumulation and antioxidant activities were more severe in NX-18 than GXZ. Pb toxicity severely reduced yield and quality related attributes and plant biomass accumulation; however the reductions were more apparent NX-18 than GXZ. Furthermore, NX-18 accumulated less Pb proportions in roots (-84%), and transferred more towards shoot, leaves, ears (at panicle heading (PH)) and grains (at maturity (MAT)) than GXZ (-91% root Pb proportions). Hence, the ability of GXZ to retain higher Pb contents in roots and less towards upper plant parts, higher osmolyte accumulation and antioxidant activities and less yield reduction as compare to NX-18 might be an adaptive response of GXZ under Pb toxicity. (C) 2017 Elsevier Ltd. All rights reserved.

分类号: X5

  • 相关文献

[1]Photosynthetic characteristics of the subtending leaf of cotton boll at different fruiting branch nodes and their relationships with lint yield and fiber quality. Jingran Liu,Yali Meng,Fengjuan Lv,Ji Chen,Yina Ma,Youhua Wang,Binglin Chen,Lei Zhang,Zhiguo Zhou. 2015

[2]Shading during the grain filling period increases 2-acetyl-1-pyrroline content in fragrant rice. Mo, Zhaowen,Pan, Shenggang,Xiao, Feng,Tang, Yongjian,Wang, Yilei,Duan, Meiyang,Tian, Hua,Tang, Xiangru,Mo, Zhaowen,Pan, Shenggang,Duan, Meiyang,Tian, Hua,Tang, Xiangru,Li, Wu,Fitzgerald, Timothy L.. 2015

[3]Alterations in growth, oxidative damage, and metal uptake of five aromatic rice cultivars under lead toxicity. Ashraf, Umair,Tang, Xiangru,Ashraf, Umair,Hussain, Saddam,Anjum, Shakeel Ahmad,Abbas, Farhat,Tanveer, Mohsin,Noor, Mehmood Ali.

[4]Effects of fully open-air [CO2] elevation on leaf ultrastructure, photosynthesis, and yield of two soybean cultivars. Hao, X. Y.,Han, X.,Ju, H.,Wang, H. R.,Li, Y. C.,Lin, E. D.,Hao, X. Y.,Lam, S. K.,Wheeler, T.. 2012

[5]Photobiological effects of nano-TiO2 semiconductors sol. Zhang Ping,Cui Hai-Xin,Li Ling-Ling. 2008

[6]Determination of Photosynthetic Pigments in Sea Water and Marine Sediments by High Performance Liquid Chromatography. Jiang Tao,Cong Min,Teng De-Qiang,Lu Song-Hui,Gan Ju-Li,Mu Qing-Lin,Fang Jie. 2012

[7]Effects of potassium fertilizer application on photosynthesis and seedling growth of sweet potato under drought stress. Zhu, L. D.,Shao, X. H.,Hou, M. M.,Zhu, L. D.,Shao, X. H.,Hou, M. M.,Zhu, L. D.,Zhang, Y. C.,Zhang, H.,Zhang, H.. 2012

[8]Insights into the molecular mechanism of the responses for Cyperus alternifolius to PhACs stress in constructed wetlands. Yan, Qing,Zhu, Zhi-wei,Feng, Guo-zhong,Yan, Qing,Zhu, Zhi-wei,Gao, Xu,Guo, Jin-song.

[9]Silicon ameliorates the adverse effects of salt stress on sainfoin (Onobrychis viciaefolia) seedlings. Wu, Guo-Qiang,Liu, Hai-Long,Feng, Rui-Jun,Du, Yong-Yong,Wang, Chun-Mei. 2017

[10]Combined foliar application of nutrients and 5-aminolevulinic acid (ALA) improved drought tolerance in Leymus chinensis by modulating its morpho-physiological characteristics. Song, Ji-Xuan,Anjum, Shakeel Ahmad,Zong, Xue-Feng,Yan, Rong,Wang, Ling,Yang, Ai-Jie,Lv, Jun,Zhang, Yan,Dong, Yu-Feng,Wang, San-Gen,Song, Ji-Xuan,Anjum, Shakeel Ahmad,Zohaib, Ali,Ashraf, Umair.

[11]Effects of exposure to sublethal propiconazole on the antioxidant defense system and Na+-K+-ATPase activity in brain of rainbow trout, Oncorhynchus mykiss. Li, Zhi-Hua,Zlabek, Vladimir,Grabic, Roman,Li, Ping,Machova, Jana,Velisek, Josef,Randak, Tomas,Li, Zhi-Hua,Li, Ping,Grabic, Roman. 2010

[12]Ocean acidification increases the toxic effects of TiO2 nanoparticles on the marine microalga Chlorella vulgaris. Xia, Bin,Sui, Qi,Sun, Xuemei,Han, Qian,Chen, Bijuan,Zhu, Lin,Qu, Keming,Xia, Bin,Sun, Xuemei,Chen, Bijuan,Zhu, Lin,Xia, Bin,Sui, Qi. 2018

[13]Exogenous 6-benzylaminopurine confers tolerance to low temperature by amelioration of oxidative damage in eggplant (Solanum melongena L.) seedlings. Chen, Jianlin,Wu, Xuexia,Zhu, Zongwen,Xu, Shuang,Zha, Dingshi,Wu, Xuexia,Zhu, Zongwen,Xu, Shuang,Zha, Dingshi,Yao, Xinfeng. 2016

[14]Overexpression of an alternative oxidase gene, OsAOX1a, improves cold tolerance in Oryza sativa L.. Li, C. R.,Liang, D. D.,Xu, R. F.,Li, L.,Li, C. R.,Liang, D. D.,Xu, R. F.,Li, H.,Zhang, Y. P.,Qin, R. Y.,Li, L.,Wei, P. C.,Yang, J. B.,Li, H.,Wei, P. C.. 2013

[15]The Arabidopsis J-protein AtDjB1 facilitates thermotolerance by protecting cells against heat-induced oxidative damage. Zhou, Wei,Zhou, Ting,Li, Mi-Xin,Zhao, Chun-Lan,Jia, Ning,Wang, Xing-Xing,Sun, Yong-Zhen,Xu, Meng,Li, Bing,Zhou, Wei,Li, Guo-Liang,Zhou, Ren-Gang,Zhou, Wei. 2012

[16]Melatonin alleviates cold-induced oxidative damage by regulation of ascorbate-glutathione and proline metabolism in melon seedlings (Cucumis melo L.). Zhang, Y. P.,Chen, Y. Y.,Zhang, Y. P.,Xu, S.,Yang, S. J.,Chen, Y. Y..

[17]Effects of Chromium Picolinate on Oxidative Damage in Primary Piglet Hepatocytes. Tan, Gao-Yi,Bi, Jin-Ming,Zhang, Min-Hong,Feng, Jing-Hai,Xie, Peng,Zheng, Shan-Shan. 2008

[18]Ethylene response factor BnERF2-like (ERF2.4) from Brassica napus L. enhances submergence tolerance and alleviates oxidative damage caused by submergence in Arabidopsis thaliana. Lv, Yanyan,Fu, Sanxiong,Chen, Song,Zhang, Wei,Qi, Cunkou,Qi, Cunkou. 2016

[19]On oxidation resistance and meat quality of broilers challenged with lipopolysaccharide. Niu, Z. Y.,Min, Y. N.,Wang, J. J.,Wang, Z. P.,Wei, F. X.,Liu, F. Z.,Wei, F. X.. 2016

[20]Multiple biomarkers responses in juvenile rainbow trout, Oncorhynchus mykiss, after acute exposure to a fungicide propiconazole. Li, Zhi-Hua,Zlabek, Vladimir,Velisek, Josef,Grabic, Roman,Machova, Jana,Kolarova, Jitka,Li, Ping,Randak, Tomas,Li, Zhi-Hua,Li, Ping.

作者其他论文 更多>>