College of Life Science, Nankai University, Tianjin 300071, China.
Tianjin Academy of Agricultural Sciences, Tianjin 300192, China.
Int J Mol Sci. 2022 Sep 30;23(19):11563. doi: 10.3390/ijms231911563.
It has been demonstrated that the phosphorylation pathway of L-serine (Ser) biosynthesis (PPSB) is very important in plant growth and development, but whether and how PPSB affects nitrogen metabolism and starch accumulation has not been fully elucidated. In this study, we took the energy plant duckweed (strain 5511) as the research object and used a stable genetic transformation system to heterologously over-expressing Arabidopsis (the gene encoding phosphoserine aminotransferase, the second enzyme of PPSB). Our results showed that, under nitrogen starvation, the transgenic plants grew faster, with higher values of Fv/Fm, rETR, and Y(II), as well as fresh and dry weight, than the wild-type. More promisingly, the accumulation of starch was also found to be significantly improved when over-expressing in the transgenic plants. qRT-PCR analysis results showed that the expression of genes related to nitrogen assimilation, carbon metabolism, and starch biosynthesis was up-regulated, while the expression of starch degradation-related genes was down-regulated by over-expression. We propose that the increased starch accumulation caused by over-expression may result from both elevated photosynthetic capacity and nitrogen utilization efficiency. This research sheds new light on the mechanism underlying the ability of PPSB to coordinate nitrogen and carbon metabolism, and provides a feasible way to improve starch production, that is, through engineering PPSB in crops.
已证实 L-丝氨酸(Ser)生物合成的磷酸化途径(PPSB)在植物的生长和发育中非常重要,但 PPSB 是否以及如何影响氮代谢和淀粉积累尚未完全阐明。在本研究中,我们以能源植物浮萍(品系 5511)为研究对象,利用稳定的遗传转化系统异源过表达拟南芥(编码磷酸丝氨酸转氨酶的基因,是 PPSB 的第二酶)。我们的结果表明,在氮饥饿条件下,与野生型相比,转基因植物生长更快,Fv/Fm、rETR 和 Y(II)值更高,鲜重和干重也更高。更有前景的是,在转基因植物中过表达 也显著提高了淀粉的积累。qRT-PCR 分析结果表明,与氮同化、碳代谢和淀粉生物合成相关的基因表达上调,而过表达 下调了与淀粉降解相关的基因表达。我们提出,过表达导致淀粉积累增加可能是由于光合作用能力和氮利用效率的提高。这项研究为 PPSB 协调氮碳代谢的机制提供了新的认识,并为通过工程 PPSB 提高淀粉产量提供了一种可行的方法,即在作物中进行 PPSB 工程。