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首页> 外文期刊>Scientia horticulturae >Chlorophyll fluorescence imaging as a tool to understand the impact of iron deficiency and resupply on photosynthetic performance of strawberry plants.
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Chlorophyll fluorescence imaging as a tool to understand the impact of iron deficiency and resupply on photosynthetic performance of strawberry plants.

机译:叶绿素荧光成像是了解缺铁和补给对草莓植物光合性能影响的工具。

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摘要

Bare-root transplants of strawberry (Fragaria x ananassa Duch. cv 'Diamond') were grown in a Hoagland's nutrient solution with or without Fe. Forty two days after Fe deprivation, recovery was induced by addition of 10 micro M of Fe (Fe-EDDHA) to the Fe(-) nutrient solution. Total leaf chlorophyll concentration in young leaves decreased progressively with time in Fe-deprived plants, and before Fe resupply it was only 6% of that of Fe(+) control plants. Spatio-temporal changes on photosynthetic efficiency were monitored by imaging chlorophyll a fluorescence in four areas of interest (AOIs) located on the midrib and on interveinal mesophyll areas of leaf blades. Chlorophyll fluorescence images (Fv/Fm, phi II, NPQ, qp) showed a large spatial variation, particularly at day 42, with greater values in midrib areas. Temporal changes were also observed in all measured parameters along the experimental period, but the onset and intensity of impact was clearly different between parameters. Maximal efficiency of PSII (Fv/Fm) was the last parameter to be affected, being the effects visible only in plants that had lost over 90% of their chlorophyll (day 42). In contrast, actual efficiency of PSII ( phi II) and photochemical quenching (qp) were affected earlier on, showing noticeable changes by day 20, when chlorophyll concentration had declined by 38%. Decreases in phi II were balanced by increases in quantum yield of non-regulated energy dissipation ( phi NO). Fluorescence parameters, with the exception of phi II and Fe content, recovered within eight days following Fe resupply to values found in Fe(+) plants. The results of this study indicate that: (i) Chl fluorescence imaging is a useful technique to evaluate Fe deficiency (ii) Fe stress generates spatio-temporal heterogeneity in fluorescence response (iii) phi II measured in interveinal mesophyll areas could be used as an early and fast indicator of Fe deficiency and could be applied for fertilization management.
机译:草莓(Fragaria x ananassa Duch.cv“钻石”)的裸根移植物在有或没有铁的霍格兰营养液中生长。剥夺Fe后四十二天,通过向Fe(-)营养液中添加10 micro M Fe(Fe-EDDHA)诱导恢复。在缺铁的植物中,幼叶中的总叶绿素浓度随时间逐渐降低,在补铁之前,其仅为补铁植物的6%。通过对位于叶片中脉和叶脉间叶区域的四个感兴趣区域(AOI)的叶绿素a荧光成像,可以监测光合效率的时空变化。叶绿素荧光图像(F v / F m ,phi II ,NPQ,q p )显示出较大的空间变化,尤其是在第42天,中脉区域的值更大。在整个实验期间,在所有测量参数中也观察到了时间变化,但是冲击的发生和强度在两个参数之间明显不同。 PSII的最大效率(F v / F m )是受影响的最后一个参数,该效果仅在损失了90%以上的叶绿素的植物中可见(第42天)。相反,PSII(phi II )和光化学猝灭(q p )的实际效率在较早时受到影响,到第20天时,叶绿素浓度下降了25%,这表明了显着的变化。 38%。 phi II 的减少可以通过增加非调节能量耗散(phi NO )的量子产率来平衡。除phi II 和Fe含量外,荧光参数在Fe再补充至Fe(+)植物中的值后八天内恢复。这项研究的结果表明:(i)Chl荧光成像是评估铁缺乏的有用技术(ii)Fe胁迫在荧光反应中产生时空异质性(iii)在小肠内测量phi II 叶肉面积可用作铁缺乏的早期和快速指示,并可用于施肥管理。

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