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促进植物生长的微生物改变菠菜对光质的光合响应。

Plant-Growth Promoting Microbes Change the Photosynthetic Response to Light Quality in Spinach.

作者信息

Vitale Luca, Vitale Ermenegilda, Francesca Silvana, Lorenz Christian, Arena Carmen

机构信息

National Research Council, Department of Biology, Agriculture and Food Sciences, Institute for Agricultural and Forestry Systems in the Mediterranean, P. le E. Fermi 1, 80055 Portici, Italy.

Department of Biology, University of Naples Federico II, Via Cinthia, 80126 Napoli, Italy.

出版信息

Plants (Basel). 2023 Mar 3;12(5):1149. doi: 10.3390/plants12051149.

Abstract

In this study, the combined effect of plant growth under different light quality and the application of plant-growth-promoting microbes (PGPM) was considered on spinach ( L.) to assess the influence of these factors on the photosynthetic performance. To pursue this goal, spinach plants were grown in a growth chamber at two different light quality regimes, full-spectrum white light (W) and red-blue light (RB), with (I) or without (NI) PGPM-based inoculants. Photosynthesis-light response curves (LRC) and photosynthesis-CO response curves (CRC) were performed for the four growth conditions (W-NI, RB-NI, W-I, and RB-I). At each step of LRC and CRC, net photosynthesis (), stomatal conductance (), / ratio, water use efficiency (WUE), and fluorescence indexes were calculated. Moreover, parameters derived from the fitting of LRC, such as light-saturated net photosynthesis (), apparent light efficiency (Q), and dark respiration (), as well as the Rubisco large subunit amount, were also determined. In not-inoculated plants, the growth under RB- regime improved compared to W-light because it increased stomatal conductance and favored the Rubisco synthesis. Furthermore, the RB regime also stimulates the processes of light conversion into chemical energy through chloroplasts, as indicated by the higher values of Q and in RB compared to W plants. On the contrary, in inoculated plants, the enhancement was significantly higher in W (30%) than in RB plants (17%), which showed the highest Rubisco content among all treatments. Our results indicate that the plant-growth-promoting microbes alter the photosynthetic response to light quality. This issue must be considered when PGPMs are used to improve plant growth performance in a controlled environment using artificial lighting.

摘要

在本研究中,考虑了不同光质下植物生长与植物促生微生物(PGPM)施用对菠菜(L.)的联合效应,以评估这些因素对光合性能的影响。为实现这一目标,菠菜植株在生长室中于两种不同光质条件下生长,即全光谱白光(W)和红蓝光(RB),分别接种(I)或不接种(NI)基于PGPM的接种剂。针对四种生长条件(W-NI、RB-NI、W-I和RB-I)进行了光合作用-光响应曲线(LRC)和光合作用-CO响应曲线(CRC)测定。在LRC和CRC的每个步骤中,计算了净光合作用()、气孔导度()、/比值、水分利用效率(WUE)和荧光指数。此外,还测定了从LRC拟合得出的参数,如光饱和净光合作用()、表观光效率(Q)和暗呼吸(),以及Rubisco大亚基含量。在未接种的植株中,与白光相比,在RB条件下生长可提高,因为它增加了气孔导度并有利于Rubisco合成。此外,RB条件还通过叶绿体刺激光转化为化学能的过程,与W植株相比,RB植株的Q和值更高即表明了这一点。相反,在接种的植株中,W条件下的增强幅度(30%)显著高于RB植株(17%),RB植株在所有处理中Rubisco含量最高。我们的结果表明,植物促生微生物改变了对光质的光合响应。在使用人工照明的受控环境中使用PGPM来改善植物生长性能时,必须考虑这一问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e90/10005764/55aa0a5a4ae6/plants-12-01149-g001.jpg

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