Toxicity and tolerance of nickel in sunflower (Helianthus annuus L.)

被引:0
作者
Muhammad Sajid Aqeel Ahmad
Alia Riffat
Mumtaz Hussain
Mansoor Hameed
Ambreen Khadija Alvi
机构
[1] University of Agriculture,Department of Botany
[2] Government College Women University,Department of Botany
来源
Environmental Science and Pollution Research | 2023年 / 30卷
关键词
Growth; Nickel; Photosynthesis; Proteins; Sugars; Water relations;
D O I
暂无
中图分类号
学科分类号
摘要
This study aimed at exploration of nickel (Ni) application (0, 10, 20, 30, and 40 mg L−1) on physiological and biochemical attributes of sunflower cultivars (Hysun-33 and SF-187) grown in sand culture. Results revealed a significant decrease in vegetative parameters in both sunflower cultivars by increasing Ni concentration, although low levels of Ni (10 mg L−1) improved growth attributes to some extent. Among photosynthetic attributes, 30 and 40 mg L−1 Ni application severely reduced the photosynthetic rate (A), stomatal conductance (gs), water use efficiency (WUE), and Ci/Ca ratio but improved the transpiration rate (E) in both sunflower cultivars. The same level of Ni application also reduced leaf water potential, osmotic potentials, and relative water contents but increased leaf turgor potential and membrane permeability. At low level (10 and 20 mg L−1), Ni improved the soluble proteins, while high Ni concentration decreased it. The opposite was true for total free amino acids and soluble sugars. To conclude, the high Ni concentration in various plant organs had a strong impact with the changes in vegetative growth, physiological and biochemical attributes. A positive correlation of growth, physiological, water relations, and gas exchange parameters at low levels of Ni and negative correlation at higher Ni level confirmed that the supplementation of low Ni levels greatly modulated studied attributes. Based on observed attributes, Hysun-33 showed high tolerance to Ni stress as compared to SF-187.
引用
收藏
页码:50346 / 50363
页数:17
相关论文
共 177 条
[1]  
Ahmad MSA(2011)Essential roles and hazardous effects of nickel in plants Rev Environ Contam Toxicol 214 125-167
[2]  
Ashraf M(2009)Effect of nickel on seed germinability of some elite sunflower ( Pak J Bot 41 1871-1882
[3]  
Ahmad MSA(2011) L.) cultivars Pak J Nutr 10 291-295
[4]  
Hussain M(2009)Qualitative analysis of spring planted sunflower hybrids as influenced by varying nutritional area J Hazard Mater 172 964-969
[5]  
Ashraf M(2014)Influence of nickel stress on growth and some important physiological/biochemical attributes in some diverse canola ( J Plant Physiol 171 1634-1644
[6]  
Ahmad R(1949) L.) cultivars Plant Physiol 24 1-15
[7]  
Ashraf MY(2011)Comparative Ni tolerance and accumulation potentials between Biol Trace Elem Res 143 1695-1703
[8]  
Ahmad M(2006) (halophyte) and Plant Physiol 140 433-443
[9]  
Iqbal J(2018): metal accumulation, nutrient status and photosynthetic activity Asian J Agric Biol 6 143-148
[10]  
Kaleem S(2002)Copper enzymes in isolated chloroplasts Polyphenoloxidase in New Phytol 156 205-215