Huang Si-Rong, Ai Yuan, Du Jun-Bo, Yu Liang, Wang Xiao-Chun, Yang Wen-Yu, Sun Xin
College of Agronomy, Sichuan Agricultural University, Chengdu, 611130, China.
Key Laboratory of Crop Eco-physiology and Farming System in Southwest China, Ministry of Agriculture, Chengdu, 611130, China.
Plant Physiol Biochem. 2022 Dec 1;192:50-56. doi: 10.1016/j.plaphy.2022.09.026. Epub 2022 Oct 1.
When a plant is exposed to heterogeneous light, the photosynthesis of unshaded leaves is often stimulated to compensate for the decline in photosynthesis of shaded leaves, i.e., photosynthetic compensation. However, a decline of photosynthesis in unshaded leaves, which means an impairment of photosynthetic compensation, has also been widely reported. Herein, two cultivars of maize (Zea mays L.), 'Rongyu1210' (RY) and 'Zhongdan808' (ZD), were studied comparatively. Both cultivars performed evident photosynthetic compensation under heterogeneous light (HL) as the light phase begins (8:30 a.m.). However, as the light phase continues (10:30 a.m.), an impairment of photosynthetic compensation took place in HL-treated ZD, but not in HL-treated RY. For both cultivars, nitrogen content of unshaded leaves was higher under HL, indicating a preferential nitrogen distribution towards unshaded leaves. This is related to the photosynthetic compensation but not the cause of the impairment. In addition, no obvious difference was found in the response of photosynthates (sucrose and starch) to HL between cultivars at 8:30 a.m. However, at 10:30 a.m., the content of photosynthates decreased significantly in unshaded leaves of HL-treated RY, along with increased abundances of both sucrose transporters (SUTs) and H-ATPase (EC 7.1.2.1). In contrast, it increased along with decreased abundances of SUTs and H-ATPase in HL-treated ZD. These results suggest that the photosynthetic compensation is impaired when photosynthates export of unshaded leaves is restricted. This suggestion is further confirmed by the results of C labeling and dry weight detection on young leaves as 'sink'.
当植物暴露于异质光下时,未遮荫叶片的光合作用通常会受到刺激,以补偿遮荫叶片光合作用的下降,即光合补偿。然而,未遮荫叶片光合作用下降,这意味着光合补偿受损,这一现象也有广泛报道。在此,对两个玉米品种(Zea mays L.)“荣玉1210”(RY)和“中单808”(ZD)进行了比较研究。在光期开始时(上午8:30),两个品种在异质光(HL)下均表现出明显的光合补偿。然而,随着光期的持续(上午10:30),经HL处理的ZD出现了光合补偿受损的情况,而经HL处理的RY则没有。对于两个品种而言,HL处理下未遮荫叶片的氮含量更高,表明氮优先分配到未遮荫叶片。这与光合补偿有关,但不是受损的原因。此外,上午8:30时,两个品种之间光合产物(蔗糖和淀粉)对HL的响应没有明显差异。然而,上午10:30时,经HL处理的RY未遮荫叶片中光合产物含量显著下降,同时蔗糖转运蛋白(SUTs)和H - ATP酶(EC 7.1.2.1)的丰度均增加。相比之下,经HL处理的ZD中光合产物含量随着SUTs和H - ATP酶丰度的降低而增加。这些结果表明,当未遮荫叶片的光合产物输出受到限制时,光合补偿会受损。以幼叶作为“库”进行的C标记和干重检测结果进一步证实了这一观点。