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首页> 外文期刊>Planta: An International Journal of Plant Biology >Combined effects of water stress and high temperature on photosynthesis, nitrogen metabolism and lipid peroxidation of a perennial grass Leymus chinensis.
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Combined effects of water stress and high temperature on photosynthesis, nitrogen metabolism and lipid peroxidation of a perennial grass Leymus chinensis.

机译:水分胁迫和高温对多年生草羊草光合作用,氮代谢和脂质过氧化的综合影响。

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Drought and high-temperature stresses have been extensively studied; however, little is known about their combined impact on plants. In the present study, we determined the photosynthetic gas exchange, chlorophyll fluorescence, nitrogen level, and lipid peroxidation of the leaves of a perennial grass (Leymus chinensis (Trin.) Tzvel.) subjected to three constant temperatures (23, 29 and 32 degrees C), and five soil-moisture levels (75-80%, 60-65%, 50-55%, 35-40% and 25-30% of field capacity, respectively). High temperature significantly decreased plant biomass, leaf green area, leaf water potential, photosynthetic rate (A), maximal efficiency of PSII photochemistry (Fv/Fm), actual PSII efficiency ( Phi PSII), the activities of nitrate reductase (NR; EC 1.6.6.1) and glutamine synthetase (GS; EC 6.3.1.2), but markedly increased the ratio of leaf area to leaf weight (SLA), endopeptidase (EP; EC 3.4.24.11) activity, and malondialdehyde (MDA) content, especially under severe water stress conditions. The A and Fv/Fm were significantly and positively correlated with leaf-soluble protein content, and the activities of NR and GS. However, both photosynthesis parameters were significantly and negatively correlated with EP activity and MDA content (P<0.05). It is suggested that high temperature, combined with severe soil drought, might reduce the function of PSII, weaken nitrogen anabolism, strengthen protein catabolism, and provoke lipid peroxidation. The results also indicate that severe water stress might exacerbate the adverse effects of high temperature, and their combination might reduce the plant productivity and distribution range of L. chinensis in the future..
机译:已经对干旱和高温胁迫进行了广泛的研究。然而,对它们对植物的综合影响知之甚少。在本研究中,我们确定了在三个恒定温度(23、29和32度)下多年生草(Leymus chinensis(Trin。)Tzvel。)的叶片的光合气体交换,叶绿素荧光,氮水平和脂质过氧化作用。 C)和五个土壤湿度水平(分别为田间持水量的75-80%,60-65%,50-55%,35-40%和25-30%)。高温显着降低了植物生物量,叶绿化面积,叶水势,光合速率(A),PSII光化学的最大效率(Fv / Fm),实际PSII效率(Phi PSII),硝酸还原酶的活性(NR; EC 1.6) .6.1)和谷氨酰胺合成酶(GS; EC 6.3.1.2),但显着增加了叶面积/叶重量比(SLA),内肽酶(EP; EC 3.4.24.11)活性和丙二醛(MDA)含量,特别是在严重的水分胁迫条件。 A和Fv / Fm与叶片可溶性蛋白含量,NR和GS活性呈显着正相关。然而,两个光合作用参数均与EP活性和MDA含量显着负相关(P <0.05)。提示高温和严重的土壤干旱可能会降低PSII的功能,削弱氮代谢,增强蛋白质分解代谢,并引起脂质过氧化。结果还表明,严重的水分胁迫可能会加剧高温的不利影响,并且二者的结合可能会在未来降低中华绒螯蟹的生产力和分布范围。

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