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罗勒在不同水培和 Aquaponic 系统中种植时的功能和生长反应。

Basil functional and growth responses when cultivated via different aquaponic and hydroponics systems.

机构信息

Department of Agriculture Crop Production and Rural Environment, University of Thessaly, N. Ionia, Volos, Greece.

Department of Veterinary Medicine, Aristotle University of Thessaloniki, Thessaloniki, Greece.

出版信息

PeerJ. 2023 Jul 18;11:e15664. doi: 10.7717/peerj.15664. eCollection 2023.

Abstract

BACKGROUND

Aquaponics is an innovative farming system that combines hydroponics and aquaculture, resulting in the production of both crops and fish. Decoupled aquaponics is a new approach introduced in aquaponics research for the elimination of certain system bottlenecks, specifically targeting the optimization of crops and fish production conditions. The aquaponics-related literature predominantly examines the system's effects on crop productivity, largely overlooking the plant functional responses which underlie growth and yield performance. The aim of the study was the integrated evaluation of basil performance cultivated under coupled and decoupled aquaponic systems compared with a hydroponic one, in terms of growth and functional parameters in a pilot-scale aquaponics greenhouse.

METHODS

We focused on the efficiency of the photosynthetic process and the state of the photosynthetic machinery, assessed by instantaneous gas exchange measurements as well as photosynthetic light response curves, and chlorophyll fluorescence. Light use efficiency was estimated through leaf reflectance determination. Photosynthetic pigments content and leaf nutritional state assessments completed the picture of basil functional responses to the three different treatments/systems. The plant's functional parameters were assessed at 15-day intervals. The experiment lasted for two months and included an intermediate and a final harvest during which several basil growth parameters were determined.

RESULTS

Coupled aquaponics resulted in reduced growth, which was mainly ascribed to sub-sufficient leaf nutrient levels, a fact that triggered a series of negative feedbacks on all aspects of their photosynthetic performance. These plants experienced a down-regulation of PSII activity as reflected in the significant decreases of quantum yield and efficiency of electron transport, along with decreased photosynthetic pigments content. On the contrary, decoupled aquaponics favored both growth and photochemistry leading to higher light use efficiency compared with coupled system and hydroponics, yet without significant differences from the latter. Photosynthetic light curves indicated constantly higher photosynthetic capacity of the decoupled aquaponics-treated basil, while also enhanced pigment concentrations were evident. Basil functional responses to the three tested production systems provided insights on the underlying mechanisms of plant performance highlighting key-points for systems optimization. We propose decoupled aquaponics as an effective system that may replace hydroponics supporting high crops productivity. We suggest that future works should focus on the mechanisms involved in crop and fish species function, the elucidation of which would greatly contribute to the optimization of the aquaponics productivity.

摘要

背景

水培和水产养殖相结合的水产养殖是一种创新的农业系统,可同时生产作物和鱼类。去耦水产养殖是水产养殖研究中引入的一种新方法,旨在消除某些系统瓶颈,特别是针对优化作物和鱼类生产条件。水培相关文献主要研究系统对作物生产力的影响,而在很大程度上忽略了植物功能响应,这些响应是生长和产量表现的基础。本研究的目的是在一个试点规模的水产养殖温室中,综合评估罗勒在耦合和去耦水产养殖系统中的表现,与水培系统相比,从生长和功能参数方面进行比较。

方法

我们专注于光合作用过程的效率和光合作用机械的状态,通过即时气体交换测量以及光合作用光响应曲线和叶绿素荧光来评估。通过叶片反射率的测定来估计光利用效率。测定光合色素含量和叶片营养状态完成了罗勒对三种不同处理/系统的功能响应的描述。每隔 15 天评估植物的功能参数。实验持续两个月,包括中间和最终收获,在此期间确定了几个罗勒生长参数。

结果

耦合水产养殖导致生长减少,这主要归因于叶片养分水平不足,这一事实对其光合作用性能的各个方面都产生了一系列负面反馈。这些植物的 PSII 活性下调,表现在量子产量和电子传递效率显著降低,以及光合色素含量降低。相反,去耦水产养殖促进了生长和光化学,与耦合系统和水培相比,光利用效率更高,但与后者没有显著差异。光合光曲线表明,去耦水产养殖处理的罗勒具有更高的光合能力,同时也显示出增强的色素浓度。罗勒对三种测试生产系统的功能响应提供了对植物性能潜在机制的深入了解,突出了系统优化的要点。我们提出去耦水产养殖是一种有效的系统,可以替代水培,支持高作物生产力。我们建议未来的工作应侧重于作物和鱼类物种功能所涉及的机制,阐明这些机制将极大地有助于优化水产养殖生产力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f5a/10361078/fead106e0159/peerj-11-15664-g001.jpg

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