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硅是否能减轻 PEG 6000 诱导的萌发和生长初期玉米幼苗水分亏缺。

Does silicon attenuate PEG 6000-induced water deficit in germination and growth initial the seedlings corn.

机构信息

Universidade Federal Rural da Amazônia - UFRA, Instituto de Ciências Agrárias, Grupo de Estudos da Biodiversidade em Plantas Superiores, Laboratório de Fisiologia Vegetal, Belém, PA, Brasil.

Universidade Federal Rural da Amazônia, Instituto de Ciências Agrárias, Parauapebas, PA, Brasil.

出版信息

Braz J Biol. 2023 May 29;83:e265991. doi: 10.1590/1519-6984.265991. eCollection 2023.

Abstract

Water stress limits the initial growth and development of maize mass and grain, as well as the physiological process for absorbing the amount of mineral elements. The objective was to evaluate the effect of silicon on germination and growth of corn seedlings submitted to water deficit. The experiment was carried out in the laboratory and the experimental design was completely randomized (factorial 3 × 4), with three concentrations of calcium silicate (0.0; 1.0 and 2.0 mM) and 4 solutions of PEG-6000 to simulate different osmotic potentials (0, 0; -0.3; -0.6; -0.9 MPa). Germination percentage, germination speed index (GSI), mean germination time (MGT), percentage of non-germinated and abnormal germinated, length and dry matter of shoot, root and total seedlings were evaluated. Water deficiency reduced the parameters TG, GSI and MGT. The water deficit reduce the MSPA, MSR and MST with more than 80% reduction in mass from seedlings without deficiency to seedlings with deficiency. For CPA, CR and CT there was a reduction of at least 87%, 70% and 77%, respectively, among seeds without deficiency compared to seeds submitted to deficiency. The use of silicon in corn seeds did not attenuate the stress caused by water deficit simulated by PEG-6000.

摘要

水分胁迫限制了玉米生物量和籽粒的初始生长和发育,以及吸收矿质元素的生理过程。本研究旨在评估硅对水分亏缺下玉米幼苗萌发和生长的影响。试验在实验室进行,采用完全随机设计(3×4 因子),设置 3 个硅酸钠浓度(0.0、1.0 和 2.0 mM)和 4 种聚乙二醇-6000 溶液来模拟不同的渗透势(0、0;-0.3、-0.6、-0.9 MPa)。评估了萌发率、萌发速度指数(GSI)、平均萌发时间(MGT)、未萌发和畸形萌发的百分比、芽、根和总苗的长度和干重。水分亏缺降低了 TG、GSI 和 MGT 参数。水分亏缺导致 MSPA、MSR 和 MST 减少,与无亏缺幼苗相比,亏缺幼苗的质量减少了 80%以上。对于 CPA、CR 和 CT,与无亏缺种子相比,亏缺种子的减少幅度分别至少为 87%、70%和 77%。硅在玉米种子中的使用并没有减轻聚乙二醇-6000 模拟的水分亏缺引起的胁迫。

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