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通过水热时间模型验证水势和温度对小麦(L.)种子萌发的影响

Validating the Impact of Water Potential and Temperature on Seed Germination of Wheat ( L.) via Hydrothermal Time Model.

作者信息

Saeed Saleha, Ullah Abd, Ullah Sami, Noor Javaria, Ali Baber, Khan Muhammad Nauman, Hashem Mohamed, Mostafa Yasser S, Alamri Saad

机构信息

Department of Botany, University of Peshawar, Peshawar 25120, Pakistan.

Xinjiang Key Desert Plant Roots Ecology and Vegetation Restoration Laboratory, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China.

出版信息

Life (Basel). 2022 Jun 30;12(7):983. doi: 10.3390/life12070983.

Abstract

Wheat is the most extensively cultivated crop and occupies a central place in human nutrition providing 20% of the daily food calories. This study was conducted to find both T and ψ effects on wheat germination and the cardinal Ts value; a lab experiment was accomplished using HTT models. Cultivars were germinated under different accelerated aging periods (AAP, 0, 24, 48, and 72 h) at each of the following constant Ts of 15, 20, 25, 30, and 35 °C at each of the ψs of 0, -0.05, -0.1, -0.15, and -0.2 MPa. GR, GP, and other germination parameters (GI, GRI, CVG, SVI-I, SVI-II, GE, and MGT) were significantly determined by solute potential, temperature, and reciprocal action in both cultivars ( ≤ 0.01). Depending on the confidence interval of the model co-efficiently between cultivars, there was no significant difference. Hence, the average of cardinal Ts was 15, 20, and 35 °C for the Tb, To, and Tc, respectively, in the control condition (0 MPa). Hydro-time values declined when Ts was raised to To in cultivars, then remained constant at Ts ≥ To (2.4 MPah in Pirsabak 15 and 0.96 MPah in Shahkar). The slope of the relationship between ψ and TTsupra with temperature when Ts is raised above To and reaches 0 at Tc. In conclusion, the assessed parameter values in this study can easily be used in simulation models of wheat germination to quantitatively characterize the physiological status of wheat seed populations at different Ts and ψs.

摘要

小麦是种植最广泛的作物,在人类营养中占据核心地位,提供了每日食物热量的20%。本研究旨在探究温度(T)和水势(ψ)对小麦发芽的影响以及温度基点值;采用高温试验箱(HTT)模型完成了一项实验室实验。在15、20、25、30和35℃这几个恒定温度下,于0、-0.05、-0.1、-0.15和-0.2 MPa这几个水势下,对不同加速老化期(AAP,0、24、48和72小时)的品种进行发芽实验。发芽率(GR)、发芽势(GP)和其他发芽参数(发芽指数(GI)、发芽速率指数(GRI)、发芽系数(CVG)、活力指数-I(SVI-I)、活力指数-II(SVI-II)、发芽能量(GE)和平均发芽时间(MGT))在两个品种中均显著受溶质势、温度及其交互作用的影响(≤0.0

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7c0/9315726/f0ba34322b73/life-12-00983-g001a.jpg

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