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采用光学相干断层扫描技术分析经生长促进化合物处理的辣椒种子发芽率的光学传感方法。

Optical sensing method to analyze germination rate of Capsicum annum seeds treated with growth-promoting chemical compounds using optical coherence tomography.

机构信息

Kyungpook National University, College of IT Engineering, School of Electronics Engineering, 80, Daehak-ro, Buk-gu, Daegu 41566, Republic of Korea.

Kyungpook National University, School of Applied Biosciences, 80, Daehak-ro, Buk-gu, Daegu 41566, Republic of Korea.

出版信息

J Biomed Opt. 2017 Sep 1;22(9):91502. doi: 10.1117/1.JBO.22.9.091502.

Abstract

Seed germination rate differs based on chemical treatments, and nondestructive measurements of germination rate have become an essential requirement in the field of agriculture. Seed scientists and other biologists are interested in optical sensing technologies-based biological discoveries due to nondestructive detection capability. Optical coherence tomography (OCT) has recently emerged as a powerful method for biological and plant material discoveries. We report an extended application of OCT by monitoring the germination rate acceleration of chemically primed seeds. To validate the versatility of the method, Capsicum annum seeds were primed using three chemical compounds: sterile distilled water (SDW), butandiol, and 1-hexadecene. Monitoring was performed using a 1310-nm swept source OCT system. The results confirmed more rapid morphological variations in the seeds treated with 1-hexadecene medium than the seeds treated with SDW and butandiol within 8 consecutive days. In addition, fresh weight measurements (gold standard) of seeds were monitored for 15 days, and the obtained results were correlated with the OCT results. Thus, such a method can be used in various agricultural fields, and OCT shows potential as a rigorous sensing method for selecting the optimal plant growth-promoting chemical compounds rapidly, when compared with the gold standard methods.

摘要

种子发芽率因化学处理而异,因此在农业领域,对发芽率进行非破坏性测量已成为一项基本要求。由于具有非破坏性检测能力,种子科学家和其他生物学家对基于光传感技术的生物发现很感兴趣。光学相干断层扫描(OCT)最近已成为生物和植物材料发现的强大方法。我们报告了通过监测化学引发种子发芽率加速来扩展 OCT 的应用。为了验证该方法的多功能性,使用三种化学化合物:无菌蒸馏水(SDW)、丁二醇和 1-十六烯对辣椒种子进行了引发处理。使用 1310nm 扫频源 OCT 系统进行监测。结果证实,在连续 8 天内,用 1-十六烯介质处理的种子比用 SDW 和丁二醇处理的种子在形态上的变化更快。此外,还监测了种子的鲜重(金标准)长达 15 天,并将获得的结果与 OCT 结果相关联。因此,这种方法可以用于各种农业领域,与金标准方法相比,OCT 作为一种快速选择最佳植物生长促进化学物质的严格传感方法具有潜力。

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