Screening for cadmium tolerance of 21 cultivars from Italian ryegrass (Lolium multiflorum Lam) during germination

文献类型: 外文期刊

第一作者: Fang, Zhigang

作者: Fang, Zhigang;Hu, Zhaoyang;Zhao, Huihui;Yang, Lei;Lou, Laiqing;Cai, Qingsheng;Fang, Zhigang;Ding, Chenglong

作者机构:

关键词: Cadmium;cultivars;Italian ryegrass;seed germination;tolerance

期刊名称:GRASSLAND SCIENCE ( 影响因子:1.65; 五年影响因子:1.569 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: The cadmium (Cd) tolerance of 21 Italian ryegrass (Lolium multiflorum Lam.) were investigated in this study by evaluating the process of seed germination on exposure to excess Cd. Excess Cd resulted in the significant growth inhibition, particularly of root growth. The relation between Cd concentrations and inhibition rate of root or shoot elongation can be well described by a logarithmic equation. The maximum values of IC50 (Cd concentration when the root or shoot elongation decreased to 50% compared with control) were observed in root and shoot of IdyII', whereas the minimums showed in Nioudachi' and Harukaze'. Cadmium dramatically inhibited the seed germination of 21 cultivars. By comparison of physiological parameters including the absolute and relative value of root and shoot length, germination rate, germination energy, germination index and vigor index, all the tested cultivars exhibited variation when exposed to the same strength of Cd stress. In addition, the values of evaluation index, subordinate function were used to evaluate the Cd tolerance among cultivars treated with excess Cd. As a result, cultivar IdyII' was identified to be most tolerant to Cd stress, cultivar Tachiwase' was the most sensitive one. Cluster analysis indicated that 21 cultivars of Italian ryegrass can be classified into four groups, Cd-tolerant, moderate Cd-tolerant, low Cd-tolerant and Cd-sensitive groups. The results will be basic information for cultivating forage crops used as bioenergy crops in Cd polluted environments.

分类号: S8

  • 相关文献

[1]Seed micromorphology and germination characteristics of wild and cultivated pepper strains. Zhang Zhuqing,Dai Xiongze,Zou Xuexiao,Ou Lijun,Ou Lijun.

[2]Rhizosphere cadmium speciation and mechanisms of cadmium tolerance in different oilseed rape species. Ru, SH,Xing, JP,Su, DC. 2006

[3]Integration of Cadmium Accumulation, Subcellular Distribution, and Physiological Responses to Understand Cadmium Tolerance in Apple Rootstocks. Zhou, Jiangtao,Wan, Huixue,He, Jiali,Lyu, Deguo,Zhou, Jiangtao,Wan, Huixue,He, Jiali,Lyu, Deguo,Li, Huifeng. 2017

[4]Genetic dissection of QTL against phosphate deficiency in the hybrid rice 'Xieyou9308'. Zhang, Yingxin,Anis, Galal Bakr,Wu, Weiming,Yu, Ning,Shen, Xihong,Zhan, Xiaodeng,Cheng, Shihua,Cao, Liyong,Wang, Ruci,Zhang, Yingxin,Wu, Weiming,Shen, Xihong,Zhan, Xiaodeng,Cheng, Shihua,Cao, Liyong,Anis, Galal Bakr. 2018

[5]Study on the tolerance and adsorption of five heavy metal ions by a radiation-resistant Acinetobacter sp.. Zhu Jing,Xie Yu-Qing,Song Su-Qin,Zhang Zhi-Dong,Wang Wei,Gu Mei-Ying,Tang Qi-Yong. 2013

[6]Characterization in biological traits of entomopathogenic nematodes isolated from North China. Ma, Juan,Chen, Shulong,Li, Xiuhua,Moens, Maurice,De Clercq, Patrick,Han, Richou,Moens, Maurice. 2013

[7]PHYSIOLOGICAL AND BIOCHEMICAL RESPONSES TO NACl SALINITY STRESS IN THREE ROEGNERIA (POACEAE) SPECIES. Xie, Jihong,Dai, Yating,Mu, Huaibin,De, Ying,Wu, Zinian,Yu, Linqing,Ren, Weibo,Xie, Jihong,Dai, Yating,Mu, Huaibin,De, Ying,Wu, Zinian,Yu, Linqing,Ren, Weibo,Chen, Hao. 2016

[8]Co-ordinate expression of glycine betaine synthesis genes linked by the FMDV 2A region in a single open reading frame in Pichia pastoris. Wang, Sanhong,Yao, Quanhong,Tao, Jianmin,Qiao, Yushan,Zhang, Zhen.

[9]Global regulator engineering significantly improved Escherichia coli tolerances toward inhibitors of lignocellulosic hydrolysates. Wang, Jianqing,Zhang, Yan,Lin, Zhanglin,Chen, Yilu,Lin, Min.

[10]Interspecific differences in growth response and tolerance to the antibiotic sulfadiazine in ten clonal wetland plants in South China. Chen, Jinfeng,Sun, Yingbo,Huang, Lili,Zhang, Peixia,Zou, Chunping,Yu, Bo,Zhu, Genfa,Zhao, Chaoyi,Xu, Huilian.

[11]Characterization of OsDREB6 responsive to osmotic and cold stresses in rice. Ke, Ya-Guang,Yang, Zhi-Jun,Luo, Li-Jun,Ke, Ya-Guang,Yu, Shun-Wu,Li, Tian-Fei,Wu, Jin-Hong,Gao, Huan,Luo, Li-Jun,Fu, Ya-Ping.

[12]Response of wheat germplasm to infestation of english grain aphid (Hemiptera: Aphididae). Li, Fengqi,Chen, Liang,Peng, Junhua,Li, Fengqi,Kong, Lingrang,Liu, Yusheng,Wang, Hezhou,Peng, Junhua.

[13]Reconstitution of glyphosate resistance from a split 5-enolpyruvyl shikimate-3-phosphate synthase gene in Eschetichia coli and transgenic tobacco. Dun, Bao-Qing,Wang, Xu-Jing,Lu, Wei,Zhao, Zhong-Lin,Hou, Song-Na,Lin, Min,Dun, Bao-Qing,Zhang, Bao-Ming,Li, Gui-Ying,Zhao, Zhong-Lin,Evans, Thomas C., Jr.,Xu, Ming-Qun.

[14]Tomato SlDREB1 gene conferred the transcriptional activation of drought-induced gene and an enhanced tolerance of the transgenic Arabidopsis to drought stress. Jiang, Linlin,Cheng, Xianguo,Jiang, Linlin,Wang, Yingbo,Li, Wei,Cheng, Xianguo,Jiang, Linlin,Wang, Yingbo,Li, Wei,Cheng, Xianguo,Zhang, Shuhui,He, Rui,Han, Jiao.

[15]Cloning and expression analysis of a vacuolar Na+/H+ antiporter gene from Alfalfa. Yang, QC,Wu, MS,Wang, PQ,Kang, JM,Zhou, XL.

[16]Variation in copper and zinc tolerance and accumulation in 12 willow clones: implications for phytoextraction. Yang, Wei-dong,Wang, Yu-yan,Zhao, Feng-liang,Ding, Zhe-li,Zhang, Xin-cheng,Zhu, Zhi-qiang,Yang, Xiao-e,Zhao, Feng-liang,Zhao, Feng-liang,Zhu, Zhi-qiang. 2014

[17]Manganese tolerance and accumulation in six Mn hyperaccumulators or accumulators. Tang, Xiumei,Gong, Chunfeng,Xu, GenDi,Liu, Peng,Tang, Xiumei,Tang, Xiumei.

[18]SSR marker-based mapping and linkage analysis of Bombyx mori thermotolerance gene. Zhao, Yuan,Wu, Yang-Chun,Zhu, Ya-Hong,Zhao, Yuan,Zhang, Jiang.

[19]Transgenic ice nucleation-active Enterobacter cloacae reduces cold hardiness of corn borer and cotton bollworm larvae. Tang, CR,Sun, FZ,Zhang, XJ,Zhao, TC,Qi, JY.

[20]Fine mapping of brown planthopper (Nilaparvata lugens StAyenl) resistance gene Bph28(t) in rice (Oryza sativa L.). Wu, Han,Liu, Yuqiang,He, Jun,Liu, Yanling,Jiang, Ling,Liu, Linlong,Wang, Chunming,Cheng, Xianian,Wan, Jianmin,Wan, Jianmin.

作者其他论文 更多>>