首页> 外文期刊>Anthropod-plant interactions >Dynamic changes in energy metabolism and electron transport of photosystem II in Nicotiana tabacum infested by nymphs of Bemisia tabaci (Middle East-Asia Minor 1)
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Dynamic changes in energy metabolism and electron transport of photosystem II in Nicotiana tabacum infested by nymphs of Bemisia tabaci (Middle East-Asia Minor 1)

机译:芽孢菌塔巴西若伊氏菌牙蟾蜍奈伊氏菌塔哈卡塔巴蟾蜍能量新陈代谢和电子传输的动态变化(中东亚洲次要1)

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摘要

Bemisia tabaci Middle East-Asia Minor 1 (MEAM1) infestation adversely affected photosynthesis of host plants. In the current study, chlorophyll a fluorescence was measured to determine the effects of MEAM1 nymph infestation of tobacco local and systemic leaves on energy metabolism and electron transport of photosystemII(PSII). The results showed that the density of PSII reaction centres per excited cross section (CS) (RC/CS) of infested and systemic leaves was reduced at 14 and 20 days. In systemic leaves, the number of PSII closed reaction centres (1-qP) increased significantly at 14 and 20 days. Absorption flux per Q (A) (-) reducing PSII reaction centre (RC) (ABS/RC), trapped energy flux per RC (TRo/RC), and electron transport per RC (ETo/RC) of infested and systemic leaves increased with MEAM1 nymph infestation. The most obvious increase in absorption flux per CS (ABS/CSo) and trapped energy flux per CS (TRo/CSo) of infested and systemic leaves occurred at 14 days. MEAM1 nymph infestation significantly reduced the energy required for PSII Q (A) to be completely reduced (Sm) in tobacco leaves. These results suggested that MEAM1 nymph infestation caused changes in light-harvesting antenna system and deactivation of the reaction centre, resulting in the reduction of photons absorbed by reaction centres per unit area. MEAM1 nymph infestation, particularly the 3rd instar nymphs, decreased light utilization ability and increased excess excitation energy in tobacco leaves. With MEAM1 nymph infestation, the relative electron transport capacity of the entire electron transport chain decreased, and more light energy was used to reduce Q (A) .
机译:Bemisia Tabaci中东 - 亚洲次要1(MEAM1)侵扰受到宿主植物的光合作用不利影响。在目前的研究中,测量叶绿素A荧光,以确定MEAM1若虫的烟草局部和全身叶片对电能代谢和光照的电子传输的影响。结果表明,在14和20天内,侵染和全身叶片的每兴奋横截面(Cs)(Cs)(Rc / Cs)的PSII反应中心的密度降低。在全身叶中,PSII闭合反应中心(1-QP)的数量在14和20天内显着增加。每Q(a)( - )减少PSII反应中心(ABS / RC),每RC(TRO / RC)的被捕获的能量通量,并且每RC(ETO / RC)的电子传输增加(ETO / RC)增加用meam1若虫侵扰。每CS(ABS / CSO)的吸收通量最明显的增加,并且每CS(TRO / CSO)的捕获和系统叶片的能量通量发生在14天。 MEAM1若虫侵扰显着降低了烟叶中PSII Q(A)所需的能量(A)在烟叶中完全减少(SM)。这些结果表明,MEAM1若虫侵蚀导致光收集天线系统的变化和反应中心的失活,导致每单位面积的反应中心吸收的光子的减少。 MEAM1若虫侵扰,特别是第三龄若虫,降低光利用能力和烟草叶中的过度激发能量。通过MEAM1若虫侵蚀,整个电子传输链的相对电子传输能力降低,并且使用更多的光能来减少Q(a)。

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