Brassinosteroids-Mediated Amelioration of Iron Deficiency in Soybean Plants: Beneficial Effects on the Nutritional Status, Photosynthetic Pigments and Chlorophyll Fluorescence

被引:0
作者
Lucilene Rodrigues dos Santos
Lucélia de Sousa Paula
Ynglety Cascaes Pereira
Breno Ricardo Serrão da Silva
Bruno Lemos Batista
Abdulaziz Abdullah Alsahli
Allan Klynger da Silva Lobato
机构
[1] Núcleo de Pesquisa Vegetal Básica e Aplicada,Department of Botany and Microbiology, College of Science
[2] Universidade Federal Rural da Amazônia,undefined
[3] Centro de Ciências Naturais e Humanas,undefined
[4] Universidade Federal do ABC,undefined
[5] King Saud University,undefined
来源
Journal of Plant Growth Regulation | 2021年 / 40卷
关键词
Chlorophyll; Electron transport rate; Fe supply; Gas exchange; Ionic homeostasis; 24-Epibrassinolide;
D O I
暂无
中图分类号
学科分类号
摘要
Iron (Fe) is essential for chlorophyll biosynthesis and functions in chloroplasts. Fe deficiency provokes negative effects on photochemical efficiency and electron transport. 24-Epibrassinolide (EBR) is a natural molecule with potential advantages, including a natural origin, biodegradability and high plant steroid bioactivity, improving metabolism and inducing tolerance during stress. Present study was aimed to investigate whether pre-treatment with EBR can trigger protective roles in soybean plants cultivated under the conditions of Fe deficiency and to evaluate the responses linked to the nutritional status, photosynthetic pigments and chlorophyll fluorescence. The study was carried out using a completely randomized design with four treatments (0 nM EBR + 250 µM Fe, 0 nM EBR + 2.5 µM Fe, 100 nM EBR + 250 µM Fe and 100 nM EBR + 2.5 µM Fe). Results revealed that the exogenous EBR minimized the damage caused by Fe deficiency. This steroid maximized the Fe content in the leaf, stem and root, as well as improved the nutrient content and metal homeostasis, as confirmed by the increased detection of Fe2+/Mg2+, Fe2+/Mn2+ and Fe2+/Cu2+ ratios in plants under Fe deficiency. Additionally, plants under Fe deficiency and sprayed with EBR had improvements on chloroplastic pigments, with significant increases in chlorophyll a (14%), chlorophyll b (23%), total chlorophyll (15%) and carotenoids (28%). Steroid also increased the photochemical efficiency, positively regulating electron transport and reducing the negative impacts associated with photoinhibition in photosystem II. Therefore, pre-treatment with EBR improved the nutrient contents and physiological performance of soybean plants under the conditions of Fe limitation.
引用
收藏
页码:1803 / 1823
页数:20
相关论文
共 354 条
  • [11] Ahanger MA(2012)Variations of quality characteristics among oils of different soybean varieties Acta Physiol Plant 166 919-12
  • [12] Mir RA(2004)High supply of NO3—mitigates salinity effects through an enhancement in the efficiency of photosystem II and CO2 assimilation in Plant Sci 9 1-179
  • [13] Alyemeni MN(2018) plants Front Plant Sci 68 175-416
  • [14] Ahmad P(2010)Enhanced tolerance to salt stress and water deficit by overexpressing superoxide dismutase in tobacco ( Environ Exp Bot 60 406-3583
  • [15] Ahmad P(2011)) chloroplasts Arch Environ Contam Toxicol 100 3579-8298
  • [16] Jaleel CA(2003)Field-based scoring of soybean iron deficiency chlorosis using RGB imaging and statistical learning Proc Natl Acad Sci USA 111 8293-459
  • [17] Salem MA(2014)An enhancing effect of exogenous brassinolide on the growth and antioxidant activity in Proc Natl Acad Sci USA 164 447-244
  • [18] Ahmad P(2016) cultures under heavy metals stress Cell 45 238-772
  • [19] Abd_Allah EF(2017)Suppression of Not Bot Horti Agrobot Cluj-Napoca 6 765-S110
  • [20] Alyemeni MN(2007) growth by cadmium, lead, and copper stress and its restoration by endogenous brassinolide Asian J Plant Sci 14 S97-527