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磷浓度对阿月浑子和野扁桃 PSII 光化学稳定性和 CO 同化的影响

Effect of phosphorus concentration on the photochemical stability of PSII and CO assimilation in Pistacia vera L. and Pistacia atlantica Desf.

机构信息

Laboratory of Plant Ecophysiology, Faculty of Sciences S. A., Zarroug City, Gafsa, Tunisia; LEBIOMAT: Laboratory of Arid Environment and Plant Biology, Faculty of Sciences, University of Sfax, Sfax, Tunisia.

Laboratory of Plant Ecophysiology, Faculty of Sciences S. A., Zarroug City, Gafsa, Tunisia; LEBIOMAT: Laboratory of Arid Environment and Plant Biology, Faculty of Sciences, University of Sfax, Sfax, Tunisia.

出版信息

Plant Physiol Biochem. 2019 Sep;142:283-291. doi: 10.1016/j.plaphy.2019.07.016. Epub 2019 Jul 14.

Abstract

A greenhouse pot experiment was conducted at the faculty of sciences of Gafsa to evaluate the effect of phosphorus treatment on two pistachio species. The seedlings of Pistacia vera and Pistacia atlantica were subjected to six levels of phosphoric acid (PO) (0, 5, 15, 30, 60 and 120 ppm). Stomatal conductance, net photosynthesis, chlorophyll fluorescence (OJIP) and total chlorophyll content were measured after 1, 2, 3, 6, 8, 9 and 12 weeks of treatment. During the experiment, phosphorus application at 5 ppm increased photosynthesis and stomatal conductance, relative to the treatment 0 ppm only in P. atlantica. However, phosphorus supply at 60 and 120 ppm induced toxicity leading to an inhibition of CO photo-assimilation rate, an alteration of photosystem II (PSII) structure and function and reduction in leaf chlorophyll content in both species. The (OJIP) transient showed complex changes in O-J, J-I and I-P phases of fluorescence. Due to phosphorus toxicity, both donor and acceptor sides of PSII were damaged, electron transport perturbed and chlorophyll pigment reduced which resulted in the fall of CO photo-assimilation rate, followed by mortality in both species.

摘要

在盖夫萨科学学院进行了温室盆栽实验,以评估磷处理对两种阿月浑子物种的影响。将 P. vera 和 P. atlantica 的幼苗分别置于 6 个不同浓度的磷酸(PO)水平(0、5、15、30、60 和 120ppm)下进行处理。处理后 1、2、3、6、8、9 和 12 周时,测量了气孔导度、净光合速率、叶绿素荧光(OJIP)和总叶绿素含量。在实验过程中,与 0ppm 处理相比,5ppm 的磷处理仅在 P. atlantica 中增加了光合作用和气孔导度。然而,60 和 120ppm 的磷供应会导致毒性,从而抑制 CO2 的光同化率,改变 PSII 的结构和功能,并降低两种物种的叶片叶绿素含量。(OJIP)瞬变显示荧光的 O-J、J-I 和 I-P 相发生了复杂的变化。由于磷毒性,PSII 的供体和受体侧均受到损伤,电子传递受到干扰,叶绿素色素减少,导致 CO2 光同化率下降,随后两种物种均死亡。

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