Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, 1206 W Gregory Drive, Urbana, IL, USA.
Bayer CropScience LLC, Bayer Marana Greenhouse, 9475 N Sanders Rd, Tucson, AZ, USA.
J Exp Bot. 2022 Aug 11;73(14):4897-4907. doi: 10.1093/jxb/erac193.
In this study, four tobacco transformants overexpressing the inorganic carbon transporter B gene (ictB) were screened for photosynthetic performance relative to the wild type (WT) in field-based conditions. The WT and transgenic tobacco plants were evaluated for photosynthetic performance to determine the maximum rate of carboxylation (Vc, max), maximum rate of electron transport (Jmax), the photosynthetic compensation point (Γ*), quantum yield of PSII (ΦPSII), and mesophyll conductance (gm). Additionally, all plants were harvested to compare differences in above-ground biomass. Overall, transformants did not perform better than the WT on photosynthesis-, biomass-, and leaf composition-related traits. This is in contrast to previous studies that have suggested significant increases in photosynthesis and yield with the overexpression of ictB, although not widely evaluated under field conditions. These findings suggest that the benefit of ictB is not universal and may only be seen under certain growth conditions. While there is certainly still potential benefit to utilizing ictB in the future, further effort must be concentrated on understanding the underlying function of the gene and in which environmental conditions it offers the greatest benefit to crop performance. As it stands at present, it is possible that ictB overexpression may be largely favorable in controlled environments, such as greenhouses.
在这项研究中,筛选了四个过表达无机碳转运蛋白 B 基因(ictB)的烟草转化体,以评估其与野生型(WT)相比在田间条件下的光合作用性能。评估了 WT 和转基因烟草植物的光合作用性能,以确定羧化的最大速率(Vc, max)、电子传递的最大速率(Jmax)、光合作用补偿点(Γ*)、PSII 的量子产率(ΦPSII)和质膜导度(gm)。此外,还收获了所有植物以比较地上生物量的差异。总体而言,与过表达 ictB 可显著提高光合作用、生物量和叶片组成相关特性的先前研究结果相反,转化体在光合作用、生物量和叶片组成相关特性方面的表现并不优于 WT。这表明 ictB 的益处并非普遍存在,可能仅在某些生长条件下可见。虽然未来利用 ictB 肯定仍有潜力,但必须集中精力进一步了解该基因的潜在功能,以及在哪些环境条件下ictB 对作物性能的益处最大。目前,ictB 过表达在温室等受控环境中可能具有很大的优势。