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盐胁迫对一些食用甜菜(L.)品种植物学特征的影响

Effect of Salt Stress on Botanical Characteristics of Some Table Beet ( L.) Cultivars.

作者信息

Zaidalkilani Ayah T, Al-Kaby Aman H, El-Emshaty Amira M, Alhag Sadeq K, Al-Shuraym Laila A, Salih Zakaria A, Taha Amro Ahmed, Al-Farga Ammar M, Ashmawi Ashmawi E, Hamad Saleh A, Abd El-Raouf Hany S, Ahmed Shahinaz E, El-Taher Ahmed M, Chamba Moses V M, Badawi Taghreed A

机构信息

Department of Nutrition, Faculty of Pharmacy and Medical Sciences, University of Petra, Amman 11196, Jordan.

Department of Horticulture, Vegetable Physiology, College of Agriculture, University of Al-Muthanna, Al Muthanna 1550, Iraq.

出版信息

ACS Omega. 2024 Nov 19;9(48):47788-47801. doi: 10.1021/acsomega.4c08161. eCollection 2024 Dec 3.

Abstract

Salinity inhibits the uptake of nitrogen, which slows down the growth and prevents plant reproduction. Certain ions, especially chloride, are poisonous to plants; when their concentration increases, the plant becomes poisoned and eventually perishes. The adaptability of several table beet cultivars ( L.) to saline water irrigation creates new opportunities for extending beet production, increases the added economic value, and has a positive environmental impact. A pot experiment is carried out for two successive seasons, 2019/2020 and 2020/2021, to investigate the effect of irrigation with agriculture saline drainage water on the growth and biochemical traits of three selected cultivars (Detroit Dark Red, Red Ball, and Red Ace). Four levels of salinity are applied (1000, 2000, 3000, and 4000 ppm) along with tap water of 260 ppm salinity, which serves as the control. Detroit Dark Red beets show the best results among the other cultivars under consideration. Irrigation with the first level of saline water (1000 ppm) at both seasons of cultivation results in a significant increase rate in growth parameters (13-23%). The second level of salinity (2000 ppm) shows the maximum increase rate of some chemical constituents, such as ascorbic acid (16.26%), nitrogen (58.21%), phosphorus (11.94%), potassium (34.66%), and sodium (85.14%). The levels of total soluble solids (TSS), anthocyanins, proline, total sugars, water saturation deficit, and sodium increase significantly in proportion to saline water concentrations. The selected table beet mature leaves show slight variations in anatomical structure, especially in the L. cv. Detroit Dark Red under the highest salinity concentration (4000 ppm) was less than that of the control and the other two cultivars. Other cultivars may be the subject in the near future to study the effect of their salinity tolerance with the aim of increasing productivity, enhancing their characteristics, and preserving the environment.

摘要

盐分抑制氮的吸收,从而减缓植物生长并阻碍其繁殖。某些离子,尤其是氯离子,对植物有毒;当它们的浓度增加时,植物会中毒并最终死亡。几个食用甜菜品种(L.)对盐水灌溉的适应性为扩大甜菜生产创造了新机会,增加了经济附加值,并对环境产生积极影响。在2019/2020和2020/2021两个连续季节进行了盆栽试验,以研究用农业含盐排水水灌溉对三个选定品种(底特律深红、红球和红王牌)的生长和生化特性的影响。施加了四个盐度水平(1000、2000、3000和4000 ppm)以及盐度为260 ppm的自来水作为对照。在所考虑的其他品种中,底特律深红甜菜表现出最佳结果。在两个种植季节用第一级盐水(1000 ppm)灌溉会导致生长参数显著增加(13 - 23%)。第二级盐度(2000 ppm)显示出一些化学成分的最大增加率,如抗坏血酸(16.26%)、氮(58.21%)、磷(11.94%)、钾(34.66%)和钠(85.14%)。总可溶性固形物(TSS)、花青素、脯氨酸、总糖、水分饱和亏缺和钠的水平与盐水浓度成比例显著增加。所选食用甜菜成熟叶片的解剖结构有轻微变化,特别是在最高盐度浓度(4000 ppm)下,底特律深红品种(L. cv. Detroit Dark Red)的变化小于对照和其他两个品种。其他品种可能在不久的将来成为研究其耐盐性影响的对象,目的是提高生产力、增强其特性并保护环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aab5/11618406/6857097cc27b/ao4c08161_0001.jpg

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