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Assessment of Changes in PS I and PS II Function as Affected by Sod Culture in Apple Orchard during Leaf Development

机译:苹果园叶片发育过程中草皮培养对PS I和PS II功能的影响

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In order to assess the function of PS II and PS I during leaf development under different soil management, 6-year-old apple plants were used as materials to measure the Chlorophyll a fluorescence transient and 820nm transmission by using Handy PEA and M-PEA from initiation to full expansion of leaves under sod culture (SC) and clean tillage (CT). Results showed that, Fo and Fm in SC and CT were markedly lower than that in mature leaves at the earlier stages. Fv/Fm in SC and CT were slightly lower than that in mature leaves, by 2.7% and 4.1%, respectively. Moreover, Fo, Fm and Fv/Fm of SC were obviously higher than that in CT. Vj and Wk in SC were lower than that in CT during leaf development. In SC and CT, Vo, (pEo, ETo/CSo, RC/CS0 and PICS increased with leaf development; moreover, these parameters in SC were higher than that in CT at the earlier stage of leaf development. The amplitude of transmission at 820nm in SC was higher than that in CT, which increased with leaf developing. In concluding, the function of PS II and PS I could be promoted by SC, with more obvious promoting effect at the earliest stage of leaf development.
机译:为了评估在不同土壤管理下叶片发育过程中PS II和PS I的功能,使用6岁的苹果植物作为材料,通过使用Handy PEA和M-PEA,测量叶绿素a的荧光瞬态和820nm透射率。在草皮培养(SC)和清洁耕作(CT)下开始叶片完全膨胀。结果表明,早期的SC和CT中的Fo和Fm明显低于成熟叶片中的Fo和Fm。 SC和CT的Fv / Fm分别比成熟叶片的Fv / Fm分别低2.7%和4.1%。此外,SC的Fo,Fm和Fv / Fm明显高于CT。在叶片发育过程中,SC中的Vj和Wk低于CT中的Vj和Wk。在SC和CT中,Vo(pEo,ETo / CSo,RC / CS0和PICS随叶片发育而增加;此外,SC中的这些参数高于叶片发育早期的CT。在820nm处的透射幅度SC的含量高于CT的含量,随着叶片的发育而增加,其结果表明,SC可以促进PS II和PS I的功能,在叶片发育的最早阶段则具有更明显的促进作用。

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