Wang Baoshan, Ma Mingyang, Lu Haiguo, Meng Qingwei, Li Gang, Yang Xinghong
State Key Laboratory of Crop Biology, Shandong Key Laboratory of Crop Biology, Shandong Agricultural University, Taian, 271018, People's Republic of China.
Photosynth Res. 2015 Dec;126(2-3):363-73. doi: 10.1007/s11120-015-0126-9. Epub 2015 Apr 1.
The photosynthetic oxygen evolution rate, Hill reaction activity of seedlings and photosynthetic parameter, Pn-Ci curve and some source-sink metabolism-related enzyme activities, and substance content of flag leaves were measured by using two wheat near isogenic lines with significant differences in the photosynthetic rate of the 154 (high photosynthetic rate) and 212 (low photosynthetic rate) lines as materials. The results showed that the maximal carboxylation efficiency (Vcmax) and Hill reaction activity were higher in line 154 than that of line 212. The Pn in flag leaves of line 154 was significantly higher than that of line 212 during the anthesis to grain-filling stage. Higher leaf sucrose phosphate synthase activity, grain sucrose synthase activity, and grain ADPG pyrophosphorylase activity ensured that the photosynthate of line 154 could be transported to grains and translated into starch in a timely and effective manner, which also contributed to the maintenance of its high photosynthetic rate. Eventually, all of these factors of line 154 resulted in its higher grain yield compared with the low photosynthetic rate of line 212.
以光合速率差异显著的两个小麦近等基因系154(高光合速率)和212(低光合速率)为材料,测定了幼苗的光合放氧速率、希尔反应活性以及光合参数、Pn-Ci曲线和一些源库代谢相关酶活性,以及旗叶的物质含量。结果表明,154系的最大羧化效率(Vcmax)和希尔反应活性高于212系。在花期至灌浆期,154系旗叶的净光合速率显著高于212系。较高的叶片蔗糖磷酸合酶活性、籽粒蔗糖合酶活性和籽粒ADPG焦磷酸化酶活性确保了154系的光合产物能够及时有效地转运到籽粒中并转化为淀粉,这也有助于维持其高光合速率。最终,与光合速率较低的212系相比,154系的所有这些因素导致其籽粒产量更高。