Laboratory of Biophysics and Biochemistry, Anchal College, Padampur, Rajborasambar, Bargarh, 768036 Orissa, India.
Plant Sci. 2011 Aug;181(2):90-5. doi: 10.1016/j.plantsci.2011.04.001. Epub 2011 Apr 9.
The effects of ultraviolet-B (UV-B: 280-320 nm) radiation on the photosynthetic pigments, primary photochemical reactions of thylakoids and the rate of carbon assimilation (P(n)) in the cotyledons of clusterbean (Cyamopsis tetragonoloba) seedlings have been examined. The radiation induces an imbalance between the energy absorbed through the photophysical process of photosystem (PS) II and the energy consumed for carbon assimilation. Decline in the primary photochemistry of PS II induced by UV-B in the background of relatively stable P(n), has been implicated in the creation of the energy imbalance(.) The radiation induced damage of PS II hinders the flow of electron from Q(A) to Q(B) resulting in a loss in the redox homeostasis between the Q(A) to Q(B) leading to an accumulation of Q(A)(-). The accumulation of Q(A)(-) generates an excitation pressure that diminishes the PS II-mediated O(2) evolution, maximal photochemical potential (F(v)/F(m)) and PS II quantum yield (Φ(PS II)). While UV-B radiation inactivates the carotenoid-mediated protective mechanisms, the accumulation of flavonoids seems to have a small role in protecting the photosynthetic apparatus from UV-B onslaught. The failure of protective mechanisms makes PS II further vulnerable to the radiation and facilitates the accumulation of malondialdehyde (MDA) indicating the involvement of reactive oxygen species (ROS) metabolism in UV-B-induced damage of photosynthetic apparatus of clusterbean cotyledons.
紫外线-B(UV-B:280-320nm)辐射对绿豆(Cyamopsis tetragonoloba)幼苗子叶中光合色素、类囊体的初级光化学反应和碳同化速率(Pn)的影响已经被研究过了。辐射会导致通过光合作用系统 II(PS II)的光物理过程吸收的能量与用于碳同化的能量之间失去平衡。在相对稳定的 Pn 背景下,UV-B 诱导的 PS II 初级光化学反应的下降被认为是能量失衡的原因。PS II 的辐射诱导损伤阻碍了电子从 QA 到 QB 的流动,导致 QA 到 QB 之间的氧化还原稳态丧失,从而导致 QA(-)的积累。QA(-)的积累会产生激发压力,从而降低 PS II 介导的 O2 释放、最大光化学潜力(Fv/Fm)和 PS II 量子产率(ΦPS II)。虽然 UV-B 辐射会使类胡萝卜素介导的保护机制失活,但类黄酮的积累似乎在保护光合作用装置免受 UV-B 攻击方面作用不大。保护机制的失效使 PS II 更容易受到辐射的影响,并促进丙二醛(MDA)的积累,表明活性氧物质(ROS)代谢参与了 UV-B 诱导的绿豆子叶光合作用装置的损伤。