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鹰嘴豆植株对多磷酸盐肥料形态和滴灌施肥频率的响应:对光合性能和表型性状的影响。

Chickpea plant responses to polyphosphate fertiliser forms and drip fertigation frequencies: effect on photosynthetic performance and phenotypic traits.

作者信息

Chtouki Mohamed, Naciri Rachida, Garré Sarah, Nguyen Frederic, Oukarroum Abdallah

机构信息

Mohammed VI Polytechnic University - AgoBioSciences, Plant Stress Physiology Laboratory, Benguerir 43150, Morocco; and University of Liege - Gembloux Agro-Bio Tech Faculty, Gembloux B-5030, Belgium.

Mohammed VI Polytechnic University - AgoBioSciences, Plant Stress Physiology Laboratory, Benguerir 43150, Morocco.

出版信息

Funct Plant Biol. 2022 May;49(6):505-516. doi: 10.1071/FP21035.

Abstract

Photosynthesis is the main biophysiological process that governs plant growth and development. Under nutrient deficiency in crops and soils, many photosynthetic reactions can be disturbed. We compared two polyphosphates (Poly-A and Poly-B) and an orthophosphate fertiliser (Ortho-P) to an unfertilised treatment under three drip fertigation frequencies. Results showed that the electron transport chain between PSII and PSI was significantly enhanced in fertigated chickpea plants compared with the control treatment. The polyphosphate fertiliser (Poly-A) enhanced the number of electron acceptors of the photosynthetic linear electron transport chain compared with the other fertiliser forms. Furthermore, the time for reaching the maximum intensity F m was shortened in the fertilised chickpea plant indicating that the rate of light trapping and electron transport was enhanced under phosphorus drip fertigation. Also, the energy needed to close all reaction centres was decreased with P fertigated treatments, as revealed by the electron acceptor pool size of PSII (Sm/tFmax ). However, no significant effects of fertiliser forms or fertigation frequencies were observed on the energetic demand for reaction centres closure. Plants grown under polyphosphate fertigation absorbed significantly more phosphorus. Positive correlations between phosphorus uptake, photosynthetic yield, chickpea podding dynamic, and grain yield showed the beneficial effects of adequate phosphorus nutrition on chickpea growth and productivity.

摘要

光合作用是控制植物生长发育的主要生物生理过程。在作物和土壤养分缺乏的情况下,许多光合反应会受到干扰。我们将两种多磷酸盐(聚-A和聚-B)和一种正磷酸盐肥料(正磷酸盐)与三种滴灌施肥频率下的未施肥处理进行了比较。结果表明,与对照处理相比,滴灌施肥的鹰嘴豆植株中PSII和PSI之间的电子传递链显著增强。与其他肥料形式相比,多磷酸盐肥料(聚-A)增加了光合线性电子传递链的电子受体数量。此外,施肥的鹰嘴豆植株达到最大强度F m的时间缩短,这表明在磷滴灌施肥条件下,光捕获和电子传递速率提高。同样,如PSII的电子受体库大小(Sm/tFmax)所示,磷滴灌施肥处理降低了关闭所有反应中心所需的能量。然而,未观察到肥料形式或施肥频率对反应中心关闭的能量需求有显著影响。在多磷酸盐滴灌施肥条件下生长的植株吸收的磷显著更多。磷吸收、光合产量、鹰嘴豆结荚动态和籽粒产量之间的正相关表明,充足的磷营养对鹰嘴豆生长和生产力具有有益影响。

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