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非热等离子体处理对非洲菊植株的地上部生物量、开花量及营养状况的影响取决于基质组成和施肥水平。

Non-Thermal Plasma Treatment Influences Shoot Biomass, Flower Production and Nutrition of Gerbera Plants Depending on Substrate Composition and Fertigation Level.

作者信息

Cannazzaro Samantha, Traversari Silvia, Cacini Sonia, Di Lonardo Sara, Pane Catello, Burchi Gianluca, Massa Daniele

机构信息

CREA Research Center for Vegetable and Ornamental Crops, Council for Agricultural Research and Economics, Via dei Fiori 8, 51012 Pescia, PT, Italy.

Research Institute on Terrestrial Ecosystems (IRET-CNR), Via Madonna del Piano 10, Sesto F.No, 50019 Florence, FI, Italy.

出版信息

Plants (Basel). 2021 Apr 2;10(4):689. doi: 10.3390/plants10040689.

Abstract

Non-thermal plasma (NTP) appears a promising strategy for supporting crop protection, increasing yield and quality, and promoting environmental safety through a decrease in chemical use. However, very few NTP applications on containerized crops are reported under operational growing conditions and in combination with eco-friendly growing media and fertigation management. In this work, NTP technology is applied to the nutrient solution used for the production of gerbera plants grown in peat or green compost, as an alternative substrate to peat, and with standard or low fertilization. NTP treatment promotes fresh leaf and flower biomass production in plants grown in peat and nutrient adsorption in those grown in both substrates, except for Fe, while decreasing dry plant matter. However, it causes a decrease in the leaf and flower biomasses of plants grown in compost, showing a substrate-dependent effect under a low fertilization regime. In general, the limitation in compost was probably caused by the high-substrate alkalinization that commonly interferes with gerbera growth. Under low fertilization, a reduction in the photosynthetic capacity further penalizes plant growth in compost. A lower level of fertilization also decreases gerbera quality, highlighting that Ca, Mg, Mn, and Fe could be reduced with respect to standard fertilization.

摘要

非热等离子体(NTP)似乎是一种很有前景的策略,可通过减少化学物质的使用来支持作物保护、提高产量和品质,并促进环境安全。然而,在实际种植条件下,以及与环保型种植介质和施肥管理相结合的情况下,关于NTP在容器栽培作物上的应用报道极少。在这项工作中,NTP技术应用于用于生产在泥炭或绿色堆肥(作为泥炭的替代基质)中生长的非洲菊植株的营养液中,且施肥水平为标准施肥或低施肥量。NTP处理促进了在泥炭中生长的植株的鲜叶和花朵生物量的产生,以及在两种基质中生长的植株对养分的吸收(铁元素除外),同时减少了植株的干物质。然而,它导致了在堆肥中生长的植株的叶片和花朵生物量减少,在低施肥量条件下表现出基质依赖性效应。一般来说,堆肥中的限制可能是由通常会干扰非洲菊生长的高基质碱化引起的。在低施肥量下,光合能力的降低进一步不利于堆肥中植株的生长。较低的施肥水平也会降低非洲菊的品质,突出表明与标准施肥相比,钙、镁、锰和铁的含量可能会降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8062/8067256/06efae9a0bbc/plants-10-00689-g001.jpg

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