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Principal component analysis of hormone profiling data suggests an important role for cytokinins in regulating leaf growth and senescence of salinized tomato

机译:激素谱数据的主成分分析表明细胞分裂素在调节盐渍番茄的叶片生长和衰老中具有重要作用

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摘要

High throughput analytical methods allow phytohormonal profiling, but the magnitude of the data generated makes it difficult to draw firm conclusions about the physiological roles of different compounds. Principal component analysis (PCA) was used as a mathematical tool to evaluate relationships between physiological and hormonal variables in two experiments with salinised tomato. When tomato plants (cv Boludo F1) were grafted onto a recombinant inbred line (RIL) population derived from a Solanum lycopersicum x S. cheesmaniae cross and grown under moderate salinity (75 mM NaCl) for 100 days under greenhouse conditions, PCA revealed an important role for leaf xylem cytokinins (CKs) in controlling leaf growth and photosystem II efficiency (Fv/Fm) and thus crop productivity under salinity. PCA analysis from a similar experiment, with ungrafted tomato grown under highly saline (100 mM NaCl) conditions, that evaluated the temporal sequence of leaf growth (as relative growth rate, LRGR) and senescence and hormone concentrations, revealed a similar influence of CKs on both processes, since Fv/Fm and LRGR were strongly loaded along the two principal components and placed in the same cluster as leaf trans-zeatin and/or related to other CK-related parameters. The conservative behaviour of the eigen vectors for Fv/Fm and the analyzed phytohormones in different compartments (xylem, leaf and root) between different experiments suggests an important role for CKs in regulating leaf senescence, while CKs and other hormones seem to regulate leaf growth under salinity.
机译:高通量分析方法可以进行植物激素分析,但是所产生的数据量巨大,很难就不同化合物的生理作用得出可靠的结论。在两个盐渍番茄试验中,主成分分析(PCA)被用作数学工具来评估生理变量和激素变量之间的关系。将番茄植株(cv Boludo F1)移植到源自番茄茄属X. Cheesmaniae杂交的重组自交系(RIL)群体上并在中等盐度(75 mM NaCl)下于温室条件下生长100天时,PCA显示出重要的木质部细胞分裂素(CKs)在控制叶片生长和光系统II效率(Fv / Fm)以及盐分下作物生产力中的作用。来自类似实验的PCA分析(在高度盐水(100 mM NaCl)条件下生长的未嫁接番茄)评估了叶片生长的时间顺序(相对生长率,LRGR),衰老和激素浓度,揭示了CKs对番茄的相似影响这两个过程,因为Fv / Fm和LRGR沿两个主要成分强烈加载,并与叶反玉米素蛋白和/或与其他与CK相关的参数相关,放置在同一簇中。在不同实验之间,Fv / Fm本征载体的保守行为以及所分析的不同区室(木质部,叶片和根部)中的植物激素表明,CKs在调节叶片衰老过程中起着重要作用,而CKs和其他激素似乎在以下条件下调节叶片生长盐度。

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