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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Exogenous proline induces soluble sugar accumulation and alleviates drought stress effects on photosystem II functioning of Arabidopsis thaliana leaves
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Exogenous proline induces soluble sugar accumulation and alleviates drought stress effects on photosystem II functioning of Arabidopsis thaliana leaves

机译:外源脯氨酸诱导可溶性糖积累并减轻干旱胁迫对拟南芥叶片光系统II功能的影响

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The effects of exogenous applied proline (Pro), on photosystem II (PSII) photochemistry of drought stressed (DS) 4-week old Arabidopsis thaliana plants, was studied by using chlorophyll (chl) fluorescence imaging. The maximum quantum yield of PSII photochemistry (F_v/F_m) in DS plants decreased significantly to 77% of that of the control value, suggesting that DS plants could not maintain PSII function, possibly due to accelerated photoinhibition of PSII. Free Pro and total soluble sugars (SS) increased, in response to DS. Exogenous foliar application of Pro by spraying, led to a remarkable increase in the accumulation of Pro and surprisingly also of SS. Both of them served to scavenge reactive oxygen species (ROS), as it was evident by the decreased lipid peroxidation level measured as malondialdehyde (MDA). DS plants sprayed with Pro showed a tolerance to photoinhibition, this indicated by F_v/F_m being close to values typical of healthy leaves by maintaining more than 98% of PSII function. Also the higher quantum efficiency of PSII photochemistry (Φ_(PSII)) and the decreased excitation pressure (1 - q_p) recorded for stressed leaves with Pro, lead us to conclude that Pro appears to be involved in the protection of chloroplast structures by quenching ROS. The enhanced dissipation of excess light energy of PSII, in part accounts for the observed increased resistance to DS in A. thaliana leaves with Pro. Our data pointed out that Pro signalling interacts with SS signaling pathway and provided a new insight in Pro metabolism.
机译:利用叶绿素(chl)荧光成像技术研究了外源脯氨酸(Pro)对干旱4周龄拟南芥拟南芥植物光系统II(PSII)光化学的影响。 DS植物中PSII光化学的最大量子产率(F_v / F_m)显着降低至对照值的77%,表明DS植物不能维持PSII功能,这可能是由于对PSII的光抑制作用加快了。响应DS,游离Pro和总可溶性糖(SS)增加。通过喷涂外源叶面喷施Pro,导致Pro的累积显着增加,而且SS的出人意料地增加。它们都起到了清除活性氧(ROS)的作用,这可以通过以丙二醛(MDA)测定的降低的脂质过氧化水平来证明。用Pro喷洒的DS植物显示出对光抑制的耐受性,这通过F_v / F_m表示,通过保持超过98%的PSII功能,该值接近健康叶片的典型值。此外,使用Pro记录到的压力叶片,PSII光化学的较高量子效率(Φ_(PSII))和降低的激发压力(1- q_p),使我们得出结论,认为Pro似乎通过猝灭ROS参与了保护叶绿体结构。 PSII多余光能的耗散增强,部分原因是观察到Pro可使拟南芥叶片对DS的抵抗力增强。我们的数据指出,Pro信号传导与SS信号传导途径相互作用,为Pro代谢提供了新的见解。

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