近似熵:一个有前途的工具,以了解隐藏的电活动的水果。

Q2 Agricultural and Biological Sciences
Gabriela Niemeyer Reissig, Thiago Francisco de Carvalho Oliveira, André Geremia Parise, Ádrya Vanessa Lira Costa, Douglas Antônio Posso, Cesar Valmor Rombaldi, Gustavo Maia Souza
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引用次数: 1

摘要

水果,像植物的其他部分一样,似乎有丰富的电活动,可能包含信息。在这里,我们提出的数据显示,通过成熟的番茄果实的电性复杂性的差异,并讨论可能涉及的生理过程。信号的复杂性,通过近似熵测量,在果实成熟过程中发生变化。单株果实的熵值在进入破色期后呈下降趋势,进入浅红色期后又呈上升趋势。因此,获得的数据显示,在断路器阶段信号复杂性的降低,可能是由于一些生理过程,最终占主导地位,损害他人。这一结果可能与成熟过程有关,如更年期。植物生殖阶段的电生理研究仍然很少,研究这一方向对于了解所观察到的电信号是否能够将信息从生殖结构传递到植物的其他模块至关重要。这项工作为通过近似熵的分析来研究电活动与果实成熟之间的关系开辟了可能性。需要更多的研究来了解所涉及的现象是否存在相关性或因果关系。从了解植物的认知过程到实现更精确和可持续的农业,这些知识在不同领域的应用有无数的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Approximate entropy: a promising tool to understand the hidden electrical activity of fruit.

Approximate entropy: a promising tool to understand the hidden electrical activity of fruit.

Approximate entropy: a promising tool to understand the hidden electrical activity of fruit.

Approximate entropy: a promising tool to understand the hidden electrical activity of fruit.

Fruits, like other parts of the plant, appear to have a rich electrical activity that may contain information. Here, we present data showing differences in the electrome complexity of tomato fruits through ripening and discuss possible physiological processes involved. The complexity of the signals, measured through approximate entropy, varied along the fruit ripening process. When analyzing the fruits individually, a decrease in entropy values was observed when they entered the breaker stage, followed by a tendency to increase again when they entered the light red stage. Consequently, the data obtained showed a decrease in signal complexity in the breaker stage, probably due to some physiological process that ends up predominating to the detriment of others. This result may be linked to processes involved in ripening, such as climacteric. Electrophysiological studies in the reproductive stage of the plant are still scarce, and research in this direction is of paramount importance to understand whether the electrical signals observed can transmit information from reproductive structures to other modules of plants. This work opens the possibility of studying the relationship between the electrical activity and fruit ripening through the analysis of approximate entropy. More studies are necessary to understand whether there is a correlation or a cause-response relationship in the phenomena involved. There is a myriad of possibilities for the applicability of this knowledge to different areas, from understanding the cognitive processes of plants to achieving more accurate and sustainable agriculture.

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来源期刊
Communicative and Integrative Biology
Communicative and Integrative Biology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
22
审稿时长
6 weeks
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