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关于小麦基因型种子细节、用于测量幼苗出土力的溶液处理以及幼苗力与菌株之间关系的数据集。

Dataset on seed details of wheat genotypes, solution treatments to measure seedling emergence force and the relation between seedling force and strain.

作者信息

Anzooman Monia, Dang Yash P, Christopher Jack, Mumford Michael H, Menzies Neal W, Kopittke Peter M

机构信息

The University of Queensland, School of Agriculture and Food Sciences, St Lucia, Queensland 4072, Australia.

The University of Queensland, Queensland Alliance for Agricultural and Food Innovation, Leslie Research Facility, Toowoomba, Queensland 4350, Australia.

出版信息

Data Brief. 2018 Oct 30;21:1598-1602. doi: 10.1016/j.dib.2018.10.134. eCollection 2018 Dec.

Abstract

The seed details (weight, vigor) and germination rate of 16 wheat () genotypes in a non-limiting conditions were measured. The dataset presents seed germination rate and seed vigor of 16 wheat genotypes. The dataset also presents the concentrations of the cations to create solution treatments of various sodium adsorption ratio (SAR) and ionic strength (). Finally, dataset presented a figure of the experimental design to measure seedling emergence force of wheat genotypes. The image of the setup and the relation between strain and force have been presented here to convert the strain of the beam into seedling emergence force. This dataset has been used in research work titled 'Greater emergence force and hypocotyl cross sectional area may improve wheat seedling emergence in sodic conditions' (Anzooman et al., 2018) [1].

摘要

在非限制条件下测量了16个小麦()基因型的种子细节(重量、活力)和发芽率。该数据集展示了16个小麦基因型的种子发芽率和种子活力。该数据集还展示了用于创建不同钠吸附率(SAR)和离子强度()溶液处理的阳离子浓度。最后,数据集呈现了用于测量小麦基因型幼苗出土力的实验设计图。这里展示了实验装置的图片以及应变与力之间的关系,以便将梁的应变转换为幼苗出土力。该数据集已用于题为“更大的出土力和下胚轴横截面积可能改善盐碱地条件下小麦幼苗出土”的研究工作(安佐曼等人,2018年)[1]。

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