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过量表达来自桉树的 HD-Zip 类 II 转录因子 EcHB1 提高了桉树的叶片光合作用和耐旱性。

Overexpressing the HD-Zip class II transcription factor EcHB1 from Eucalyptus camaldulensis increased the leaf photosynthesis and drought tolerance of Eucalyptus.

机构信息

Faculty of Applied Biology, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto, 606-8585, Japan.

Forestry Research Institute, Oji Holdings Corporation, 24-9 Nobono-cho, Kameyama, Mie, 519-0212, Japan.

出版信息

Sci Rep. 2019 Oct 1;9(1):14121. doi: 10.1038/s41598-019-50610-5.

Abstract

Alteration in the leaf mesophyll anatomy by genetic modification is potentially a promising tool for improving the physiological functions of trees by improving leaf photosynthesis. Homeodomain leucine zipper (HD-Zip) transcription factors are candidates for anatomical alterations of leaves through modification of cell multiplication, differentiation, and expansion. Full-length cDNA encoding a Eucalyptus camaldulensis HD-Zip class II transcription factor (EcHB1) was over-expressed in vivo in the hybrid Eucalyptus GUT5 generated from Eucalyptus grandis and Eucalyptus urophylla. Overexpression of EcHB1 induced significant modification in the mesophyll anatomy of Eucalyptus with enhancements in the number of cells and chloroplasts on a leaf-area basis. The leaf-area-based photosynthesis of Eucalyptus was improved in the EcHB1-overexpression lines, which was due to both enhanced CO diffusion into chloroplasts and increased photosynthetic biochemical functions through increased number of chloroplasts per unit leaf area. Additionally, overexpression of EcHB1 suppressed defoliation and thus improved the growth of Eucalyptus trees under drought stress, which was a result of reduced water loss from trees due to the reduction in leaf area with no changes in stomatal morphology. These results gave us new insights into the role of the HD-Zip II gene.

摘要

通过遗传修饰改变叶片叶肉解剖结构,可能是通过提高叶片光合作用来改善树木生理功能的一种很有前途的手段。同源异型域亮氨酸拉链(HD-Zip)转录因子是通过改变细胞增殖、分化和扩张来实现叶片解剖结构改变的候选因子。从基因水平对桉树 HD-Zip Ⅱ类转录因子(EcHB1)全长 cDNA 进行过表达,在杂种桉树 GUT5 中桉树的叶肉解剖结构发生了显著变化,从而增加了单位叶面积上的细胞和叶绿体数量。EcHB1 的过表达提高了桉树的叶片基础光合作用,这是由于 CO2 向叶绿体扩散增强以及通过单位叶面积上增加叶绿体数量来提高光合生化功能所致。此外,EcHB1 的过表达抑制了落叶,从而在干旱胁迫下提高了桉树的生长,这是由于叶片面积减少而气孔形态没有变化,导致树木水分损失减少。这些结果使我们对 HD-Zip Ⅱ基因的作用有了新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8c4/6773882/831061be8304/41598_2019_50610_Fig1_HTML.jpg

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