Added Ce(3+) can partly substitute for Ca(2+) or Mg(2+) and improve photosynthesis under the deficiency of these elements, but very few studies focused on photosynthetic improvement in maize seedlings caused by K(+) deficiency, salt stress, especially a combination of K(+) deficiency and salt stress. In the present study, the effects of Ce(3+) on the photosynthesis of maize seedlings under the three different stresses were investigated. The results showed that added Ce(3+) under various stresses increased the ratios of free water/bound water and of K(+)/Na(+), the pigment contents, the values of Fv/Fm, Y(II), ETR(II), Y(NPQ), Qp, qL, NPQ, and qN of photosystem II (PSII), the values of Y(I) and ETR(I) of photosystem I (PSI) and the expression levels of LhcII cab1 and rbcL, and decreased the values of Y(NO) and Y(NA). This implied that added Ce(3+) depressed ion toxicity, photodamage of PSII, and acceptor side constraints of PSI, and enhanced adjustable energy dissipation, the responses of photochemistry, and carbon assimilation caused by K(+) deficiency, salt stress, and the combination of K(+) deficiency and salt stress. However, Ce(3+) mitigation of photosynthetic inhibition in maize seedlings caused by the combined stresses was greater than that of salt stress, and Ce(3+) mitigation under salt stress was greater than that under K(+) deficiency. In addition, the results also showed that Ce(3+) cannot improve photosynthesis and growth of maize seedlings under K(+) deficiency by substituting for K(+).

译文

添加的Ce(3) 可以部分替代Ca(2) 或Mg(2),并在缺乏这些元素的情况下改善光合作用,但很少有研究关注K () 缺乏,盐胁迫引起的玉米幼苗光合作用的改善。特别是钾 (+) 缺乏和盐胁迫的结合。在本研究中,研究了Ce(3) 对三种不同胁迫下玉米幼苗光合作用的影响。结果表明,在各种应力下添加Ce(3) 增加了自由水/结合水和K ()/Na () 的比率,颜料含量,Fv/Fm,Y(II),ETR(II),Y(NPQ),光系统II (PSII) 的Qp,qL,NPQ和qN,光系统I (PSI) 的Y(I) 和ETR(I) 的值以及LhcII cab1和rbcL的表达水平,并降低了Y的值 (NO) 和Y(NA)。这意味着添加Ce(3) 抑制了离子毒性,PSII的光损伤和PSI的受体侧约束,并增强了可调节的能量耗散,光化学反应以及由K () 缺乏引起的碳同化,盐胁迫,以及钾 (+) 缺乏和盐胁迫的结合。然而,联合胁迫对玉米幼苗光合抑制的Ce(3 +) 缓解大于盐胁迫,盐胁迫下Ce(3 +) 缓解大于钾 (+) 缺乏下Ce(3 +) 缓解。此外,结果还表明,Ce(3) 不能通过替代K () 来改善K () 缺乏下玉米幼苗的光合作用和生长。

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