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Magnesium-Deficiency Effects on Pigments, Photosynthesis and Photosynthetic Electron Transport of Leaves, and Nutrients of Leaf Blades and Veins in Citrus sinensis Seedlings

机译:缺镁对柑桔幼苗叶片色素,光合作用和光合电子转运以及叶片和叶片营养的影响

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Citrus sinensis seedlings were irrigated with nutrient solution at a concentration of 0 (Mg-deficiency) or 2 (Mg-sufficiency) mM Mg (NO 3 ) 2 for 16 weeks. Mg-deficiency-induced interveinal chlorosis, vein enlargement and corkiness, and alterations of gas exchange, pigments, chlorophyll a fluorescence (OJIP) transients and related parameters were observed in middle and lower leaves, especially in the latter, but not in upper leaves. Mg-deficiency might impair the whole photosynthetic electron transport, including structural damage to thylakoids, ungrouping of photosystem II (PSII), inactivation of oxygen-evolving complex (OEC) and reaction centers (RCs), increased reduction of primary quinone electron acceptor (Q A ) and plastoquinone pool at PSII acceptor side and oxidation of PSI end-electron acceptors, thus lowering energy transfer and absorption efficiency and the transfer of electrons to the dark reactions, hence, the rate of CO 2 assimilation in Mg-deficiency middle and lower leaves. Although potassium, Mg, manganese and zinc concentration in blades displayed a significant and positive relationship with the corresponding element concentration in veins, respectively, great differences existed in Mg-deficiency-induced alterations of nutrient concentrations between leaf blades and veins. For example, Mg-deficiency increased boron level in the blades of upper leaves, decreased boron level in the blades of lower leaves, but did not affect boron level in the blades of middle leaves and veins of upper, middle and lower leaves. To conclude, Mg-deficiency-induced interveinal chlorosis, vein enlargement, and corkiness, and alterations to photosynthesis and related parameters increased with increasing leaf age. Mg-deficiency-induced enlargement and corkiness of veins were not caused by Mg-deficiency-induced boron-starvation.
机译:用浓度为0(镁缺乏)或2(镁充足)mM Mg(NO 3)2的营养液灌溉柑橘幼苗16周。镁缺乏引起的小叶绿化,静脉增大和皱缩,以及气体交换,色素,叶绿素a荧光(OJIP)瞬变和相关参数的变化均在中下部叶片中观察到,特别是在后者中,但在上部叶片中没有观察到。缺镁可能会损害整个光合作用的电子传输,包括破坏类囊体,破坏光系统II(PSII),使放氧复合物(OEC)和反应中心(RCs)失活,增加伯醌电子受体(QA)的还原)和PSII受体侧的质体醌库以及PSI末端电子受体的氧化,从而降低了能量转移和吸收效率以及电子向黑暗反应的转移,因此降低了缺镁中下部叶片的CO 2同化率。尽管叶片中钾,镁,锰和锌的浓度分别与叶脉中相应的元素浓度呈显着正相关,但镁缺乏引起的叶片与叶脉间养分浓度变化存在很大差异。例如,缺镁增加了上部叶片叶片中的硼水平,降低了下部叶片叶片中的硼水平,但并未影响中部叶片叶片以及上部,中部和下部叶片的叶片中的硼水平。总之,镁缺乏引起的小叶萎黄,静脉增大和皱缩,以及光合作用和相关参数的变化随叶龄的增加而增加。镁缺乏引起的静脉肿大和弯曲不是由镁缺乏引起的硼饥饿引起的。

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