Key Laboratory of Eco-Environment-Related Polymer Materials, Ministry of Education of China, Key Laboratory of Gansu Polymer Materials, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou 730070, China.
Institute of Grassland Science, China Agricultural University, Beijing 100193, China.
Sci Rep. 2017 Feb 7;7:42026. doi: 10.1038/srep42026.
The distribution of carbon from a branch setting pod in alfalfa was investigated during the seed development of seeds to determine the relative contribution of pod and leaf photoassimilates to the total C balance and to investigate the partitioning of these photoassimilates to other plant organs. A Clabeling procedure was used to label C photoassimilates of pods and leaves in alfalfa, and the ΔC values of a pod, leaves, a section of stem and roots were measured during seed development on day 10, 15, 20 and 25 after labeling of the pod. The results showed that the alfalfa pod had photosynthetic capacity early in the development of seeds, and that pod photosynthesis could provide carbon to alfalfa organs including seeds, pods, leaves, stems and roots, in addition to leaf photosynthesis. Photosynthesis in the pod affected the total C balance of the alfalfa branch with the redistribution of a portion of pod assimilates to other plant organs. The assimilated C of the pod was used for the growth requirements of plant seeds and pods. The requirements for assimilated C came primarily from the young pod in early seed development, with later requirements provided primarily from the leaf.
在种子发育过程中,我们研究了紫花苜蓿分枝结荚期荚果中碳的分配,以确定荚果和叶片光合作用产物对总 C 平衡的相对贡献,并研究这些光合作用产物在其他植物器官中的分配。我们采用 Clabeling 程序对紫花苜蓿的荚果和叶片中的 C 光合作用产物进行了标记,并在标记荚果后的第 10、15、20 和 25 天测量了荚果、叶片、茎段和根的 ΔC 值。结果表明,紫花苜蓿荚果在种子发育早期就具有光合作用能力,除了叶片光合作用之外,荚果光合作用还可以为包括种子、荚果、叶片、茎和根在内的紫花苜蓿器官提供碳。荚果的光合作用影响了紫花苜蓿分枝的总 C 平衡,部分荚果同化产物重新分配到其他植物器官中。荚果同化的 C 用于植物种子和荚果的生长需求。同化 C 的需求主要来自于早期种子发育过程中的幼荚果,后期的需求主要来自于叶片。