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首页> 外文期刊>Physiologia plantarum >Differences in the stimulation of cyclic electron flow in two tropical ferns under water stress are related to leaf anatomy
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Differences in the stimulation of cyclic electron flow in two tropical ferns under water stress are related to leaf anatomy

机译:水分胁迫下两种热带蕨类植物对循环电子流的刺激差异与叶片解剖结构有关

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Cyclic electron flow (CEF) plays an important role in photoprotection for angiosperms under environmental stresses. However, ferns are more sensitive to drought and their water transport systems are not as efficient as those of angiosperms, it is unclear whether CEF also contributes to photoprotection in these plants. Using Microsorum punctatum and Paraleptochillus decurrens, we studied the electron fluxes through both photosystem I (PSI) and photosystem II (PSII) under water stress and their leaf anatomies. Our goal was to determine if CEF functions in the photoprotection of these ferns and, if so, whether CEF stimulation is related to leaf anatomy. Compared with P. decurrens, M. punctatum had thicker leaves and cuticles and higher water storage capacity, but lower stomatal density and slower rate of water loss. During induced drought, the decrease in leaf water potential (leaf) was more pronounced in P. decurrens than in M. punctatum. For both species, the decline in leaf was associated with a lower effective PSII quantum yield, photochemical quantum yield of PSI and electron transport rate (ETR), whereas increases were found in the quantum yield of regulated energy dissipation, CEF and CEF/ETR(II) ratio. Values for CEF and the CEF/ETR(II) ratio peaked in M. punctatum at a light intensity of 500600 mu mol m2 s1 vs only 150200 mu mol m2 s1 in P. decurrens. Therefore, our results indicate that the stimulation of CEF in tropical ferns contributes to their photoprotection under water stress, and is related to their respective drought tolerance and leaf anatomy.
机译:循环电子流(CEF)在环境胁迫下在被子植物的光保护中起着重要作用。然而,蕨类植物对干旱更敏感,其水传输系统不如被子植物高效,因此尚不清楚CEF是否也有助于这些植物的光保护。我们利用点状小种和后继发性拟南芥研究了在水分胁迫及其叶片解剖结构下通过光系统I(PSI)和光系统II(PSII)的电子通量。我们的目标是确定CEF是否在这些蕨类植物的光保护中起作用,如果是,则确定CEF刺激是否与叶片解剖结构有关。与P. decurrens相比,P。punctatum的叶片和角质层较厚,贮水量较高,但气孔密度较低,失水速率较慢。在诱发干旱期间,与点状芒相比,P。decurrens叶片水势(叶)的降低更为明显。对于这两个物种,叶片的下降与较低的有效PSII量子产率,PSI的光化学量子产率和电子传输速率(ETR)相关,而在受控能量耗散,CEF和CEF / ETR的量子产率中发现增加( II)比率。 CEF和CEF / ETR(II)的值在点状芒中的光强度为500600μmol m2 s1的峰值下,而斑节对虾只有150200μmol m2 s1的峰值。因此,我们的结果表明,热带蕨类植物中CEF的刺激有助于其在水分胁迫下的光保护,并且与它们各自的耐旱性和叶片解剖结构有关。

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