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Combined effects of girdling and leaf removal on fluorescence characteristic of Alhagi sparsifolia leaf senescence

机译:环剥和脱叶联合处理对spa叶衰老的荧光特性的影响

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Plant senescence is largely influenced by carbohydrate content. In order to investigate the impact of carbohydrate content on leaf senescence and photosystem II (PSII) during the senescence process, phloem girdling (PG), leaf removal (LR) and a combination of phloem girdling and leaf removal (GR) were performed on Alhagi sparsifolia (Fabaceae) at the end of the growing season. The results showed that during senescence, leaf soluble sugar content, starch content, the energy absorbed by the unit reaction centre (ABS/RC) increased; whereas, leaf photosynthetic rate, photosynthetic pigment content, maximum photochemical efficiency (phi(Po)) and energy used by the acceptor site in electron transfer (ETo/RC) decreased. The degree of change was PG> GR> CK (control)> LR. The results of the present work implied that phloem girdling (PG) significantly accelerated leaf senescence, and that single leaf removal (LR) slightly delayed leaf senescence; although leaf removal significantly delayed the senescence process on the girdled leaf (GR). Natural or delayed senescence only slightly inhibited the acceptor site of PSII and did not damage the donor site of PSII. On the other hand, induced senescence not only damaged the donor site of PSII (e.g. oxygen-evolving complex), but also significantly inhibited the acceptor site of PSII. In addition, leaf senescence led to an increase in the energy absorbed by the unit reaction centre (ABS/RC), which subsequently resulted in increasing excitation pressure in the reaction centre (DIo/RC), as well as additional saved Car for absorbing residual light energy and quenching reactive oxygen species during senescence.
机译:植物衰老很大程度上受碳水化合物含量的影响。为了研究碳水化合物含量对衰老过程中叶片衰老和光系统II(PSII)的影响,在Alhagi上进行了韧皮部环剥(PG),叶片去除(LR)以及韧皮部环剥和叶片去除(GR)的组合生长季节结束时的稀疏(Fabaceae)。结果表明,在衰老过程中,叶片可溶性糖含量,淀粉含量,单位反应中心(ABS / RC)吸收的能量增加;而叶片的光合速率,光合色素含量,最大光化学效率(phi(Po))和电子转移中受体位点所使用的能量(ETo / RC)下降。变化程度为PG> GR> CK(对照)> LR。本工作的结果表明韧皮部环剥(PG)显着促进了叶片的衰老,而单叶片去除(LR)则略微延迟了叶片的衰老。尽管去除叶明显延迟了环剥叶(GR)的衰老过程。自然衰老或延迟衰老仅略微抑制PSII的受体位点,而不会破坏PSII的供体位点。另一方面,诱导的衰老不仅损害PSII的供体位点(例如,放氧复合物),而且还显着抑制了PSII的受体位点。此外,叶片衰老导致单位反应中心吸收的能量增加(ABS / RC),随后导致反应中心的激发压力增加(DIo / RC),另外节省了用于吸收残留物的汽车光能和衰老过程中的活性氧猝灭。

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