Department of Biochemistry, Beadle Center, University of Nebraska-Lincoln, Lincoln, NE, 68588, USA.
Center for Plant Science Innovation, University of Nebraska-Lincoln, Lincoln, NE, 68588, USA.
New Phytol. 2023 Aug;239(3):1068-1082. doi: 10.1111/nph.18980. Epub 2023 May 22.
Photoprotection against excess light via nonphotochemical quenching (NPQ) is indispensable for plant survival. However, slow NPQ relaxation under low light conditions can decrease yield of field-grown crops up to 40%. Using semi-high-throughput assay, we quantified the kinetics of NPQ and photosystem II operating efficiency (ΦPSII) in a replicated field trial of more than 700 maize (Zea mays) genotypes across 2 yr. Parametrized kinetics data were used to conduct genome-wide association studies. For six candidate genes involved in NPQ and ΦPSII kinetics in maize the loss of function alleles of orthologous genes in Arabidopsis (Arabidopsis thaliana) were characterized: two thioredoxin genes, and genes encoding a transporter in the chloroplast envelope, an initiator of chloroplast movement, a putative regulator of cell elongation and stomatal patterning, and a protein involved in plant energy homeostasis. Since maize and Arabidopsis are distantly related, we propose that genes involved in photoprotection and PSII function are conserved across vascular plants. The genes and naturally occurring functional alleles identified here considerably expand the toolbox to achieving a sustainable increase in crop productivity.
通过非光化学猝灭(NPQ)来防止过量光照对植物的伤害是生存所必需的。然而,在低光照条件下 NPQ 松弛缓慢,会使田间种植作物的产量降低多达 40%。我们使用半高通量测定法,在超过 700 个玉米(Zea mays)基因型的两年田间试验中,对 NPQ 和光系统 II 运行效率(ΦPSII)的动力学进行了定量。参数化的动力学数据用于进行全基因组关联研究。对于玉米中涉及 NPQ 和 ΦPSII 动力学的六个候选基因,我们对拟南芥(Arabidopsis thaliana)中同源基因的功能丧失等位基因进行了特征描述:两个硫氧还蛋白基因,以及编码质体膜中转运蛋白、质体运动起始因子、细胞伸长和气孔模式调节的假定调节剂、以及参与植物能量稳态的蛋白的基因。由于玉米和拟南芥的亲缘关系较远,我们提出,参与光保护和 PSII 功能的基因在维管植物中是保守的。这里鉴定的基因和自然存在的功能等位基因极大地扩展了实现作物生产力可持续提高的工具包。