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外源钙缓解花生亚低磷光合障碍的机制
引用本文:孙志宇,刘欣悦,张思威,马明珠,白蕊,刘欢,易伯涛,韩晓日,刘轶飞.外源钙缓解花生亚低磷光合障碍的机制[J].植物营养与肥料学报,2022,28(6):1055-1066.
作者姓名:孙志宇  刘欣悦  张思威  马明珠  白蕊  刘欢  易伯涛  韩晓日  刘轶飞
作者单位:沈阳农业大学土地与环境学院/土肥高效利用国家工程研究中心,辽宁 沈阳 110866
基金项目:国家自然科学基金(31772391,31301842);中澳ARC-Linkage国际合作项目(LP200100341);辽宁省高校科研面上(青年)项目(LJKZ0661);国家花生产业技术体系岗位科学家项目(CARS-13)。
摘    要:

关 键 词:外源钙    花生    亚低磷胁迫    光合电子传递    光抑制
收稿时间:2021-10-18

Exogenous calcium alleviates phosphorus deficiency-induced photosynthetic inhibition in peanut (Arachis hypogaea)
SUN Zhi-yu,LIU Xin-yue,ZHANG Si-wei,MA Ming-zhu,BAI Rui,LIU Huan,YI Bo-tao,HAN Xiao-ri,LIU Yi-fei.Exogenous calcium alleviates phosphorus deficiency-induced photosynthetic inhibition in peanut (Arachis hypogaea)[J].Plant Nutrition and Fertilizer Science,2022,28(6):1055-1066.
Authors:SUN Zhi-yu  LIU Xin-yue  ZHANG Si-wei  MA Ming-zhu  BAI Rui  LIU Huan  YI Bo-tao  HAN Xiao-ri  LIU Yi-fei
Institution:College of Land and Environment, Shenyang Agricultural University/National Engineering Research Center for Efficient Utilization of Soil and Fertilizer Resources, Shenyang, Liaoning 110866, China
Abstract:  【Objectives】  The phosphorus (P) deficiency is one of the main factors limiting photosynthetic carbon fixation and high-quality yield in peanut production. Calcium can enhance peanut growth and yield in low to medium yielding farmlands. Therefore, we explored the effects of exogenous calcium on alleviating P deficiency-induced photosynthetic inhibition in peanuts.  【Methods】  Peanut cultivar ‘Liaoning Baisha’ was used in a pot experiment conducted in an artificial climate chamber. The P deficiency treatment was imposed by adjusting the P concentration in Hoagland nutrition solution to 0.5 mmol/L (–P) from the normal level of 1 P mmol/L. The treatments were normal P + spraying ddH2O (CK), –P + spraying ddH2O, –P + spraying CaCl2, and –P + spraying trifluoperazine (TFP, a calmodulin inhibitor). We measured the photosynthetic functions, plant growth and thylakoid membrane integrity at 9 and 10 days after treatment imposition in peanuts.   【Results】  Compared with CK, P deficiency reduced the dry matter weight, total leaf area, relative chlorophyll concentration and limited the growth and development of peanuts. The P deficiency reduced the net photosynthetic rate, transpiration rate, and stomatal conductance of peanut leaves. It also reduced the efficiency of PSⅠ and PSⅡ of peanuts by 18% and 5.4%, respectively. Compared with –P treatment, exogenous Ca2+ enhanced the dry matter weight and total leaf area of peanuts under P deficiency by 26.7% and 31.9%, respectively. Exogenous Ca2+ alleviated P deficiency inhibition based on photosynthetic level and enhanced the net photosynthetic rate and the stomatal conductance of peanut leaves under P deficiency. Compared with –P treatment, exogenous Ca2+ enhanced the efficiency of PSⅠ and PSⅡ, alleviating the photoinhibition in peanut leaves under P deficiency. Exogenous Ca2+ enhanced the size of the PQ pool, the rate of cyclic electron flow, and the activity of ATP synthase. However, it reduced the ?pH of thylakoid in peanut leaves under P deficiency. TFP increased the thylakoid membrane damage, reduced cyclic electron flow rate, and ATP synthase activity in P deficiency stressed peanuts compared with –P treatment.  【Conclusions】  P deficiency limited the growth and development of peanuts, reduced the activity of ATP synthase of thylakoid, Y(Ⅰ), Y(Ⅱ), and caused peanut photoinhibition. Exogenous Ca2+ alleviated inhibition of the dry matter weight, total leaf area, and relative chlorophyll concentration of peanuts. Exogenous Ca2+ ralleviated the Y(Ⅰ) and Y(Ⅱ) inhibition. The peanut CaM (Ca2+-modulin) acceptor for exogenous calcium (Ca2+) played an important role in the nutritional signalling of Ca2+, alleviating photosynthetic inhibition under P deficiency.
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