Inter-batch variability of hemagglutinin content transiently expressed in Nicotiana benthamiana plants grown under sole-source lighting and sunlight conditions before gene transfer

IF 1.4 4区 农林科学 Q2 AGRICULTURE, MULTIDISCIPLINARY
R. Matsuda
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Abstract

I investigated the effects of seasonal fluctuations in light availability for plants before gene transfer on the inter‑batch variation of target recombinant protein productivity in a viral vector‑based transient gene expression system. Nicotiana benthamiana plants were grown five times in different seasons, either in a growth chamber ( GC ) under sole‑source ( solely electric ) lighting or in a temperature‑controlled greenhouse ( GH ) under sunlight until agroinfiltration for gene transfer. The plants were then further grown in a shared growth chamber to allow accumulation of hemagglutinin ( HA ) until harvest. The coefficient of variation of leaf HA content per plant among GH batches was more than twice that among GC batches. The greater variation of leaf HA content per plant in GH was due to the higher coefficient of variation ( CV ) of leaf biomass and the slightly higher CV of leaf HA content per biomass, the former being primarily due to the variation in cumulative photosynthetic photon flux density before gene transfer. There was a significant linear regression between leaf HA content per biomass at harvest and leaf biomass at the timing of gene transfer across growth conditions ( GC or GH ) and seasons. This regression indicates that the variation of leaf biomass or any related variables immediately before gene transfer can account for a significant part of the observed variation of leaf HA accumulation per plant at harvest. Thus, strictly regulated plant growth conditions before gene transfer are crucial to reducing the inter‑batch variation of HA productivity. I conclude that indoor facilities with sole‑source lighting are more appropriate than greenhouses, not only for plant cultivation after gene transfer but also before gene transfer.
单源光照和日光条件下本烟植株血凝素含量在基因转移前的批间变异
在基于病毒载体的瞬时基因表达系统中,我研究了基因转移前植物光照可用性的季节性波动对靶重组蛋白生产力的批间变异的影响。本氏烟草植物在不同季节生长五次,要么在生长室(GC)中,在单源(纯电)照明下,要么在温度控制的温室(GH)中,阳光下,直到农业渗透进行基因转移。然后将植物在共享的生长室中进一步生长,以允许血凝素(HA)的积累,直到收获。GH批次间单株叶片HA含量的变异系数是GC批次的两倍以上。GH中单株叶片HA含量的变化较大,是由于叶片生物量的变异系数(CV)较高,而单株叶HA含量的变异系数略高,前者主要是由于基因转移前累积光合光子通量密度的变化。收获时每生物量的叶片HA含量与基因转移时的叶片生物量在生长条件(GC或GH)和季节之间存在显著的线性回归。该回归表明,紧接在基因转移之前的叶片生物量或任何相关变量的变化可以解释收获时观察到的每株植物叶片HA积累变化的重要部分。因此,在基因转移之前严格调节植物生长条件对于减少HA生产力的批间变异至关重要。我得出的结论是,具有单一光源照明的室内设施比温室更合适,不仅适用于基因转移后的植物培养,也适用于基因移植前的植物培养。
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来源期刊
Journal of Agricultural Meteorology
Journal of Agricultural Meteorology AGRICULTURE, MULTIDISCIPLINARYMETEOROLOGY-METEOROLOGY & ATMOSPHERIC SCIENCES
CiteScore
2.70
自引率
7.70%
发文量
18
期刊介绍: For over 70 years, the Journal of Agricultural Meteorology has published original papers and review articles on the science of physical and biological processes in natural and managed ecosystems. Published topics include, but are not limited to, weather disasters, local climate, micrometeorology, climate change, soil environment, plant phenology, plant response to environmental change, crop growth and yield prediction, instrumentation, and environmental control across a wide range of managed ecosystems, from open fields to greenhouses and plant factories.
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