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从毛白杨中克隆和鉴定一个与油菜素内酯生物合成相关的基因 PtoCYP90D1。

Molecular cloning and characterization of a brassinosteriod biosynthesis-related gene PtoCYP90D1 from Populus tomentosa.

机构信息

College of Tobacco Sciences, Guizhou University, Guiyang, 550025, China.

出版信息

BMC Genomics. 2024 Nov 6;25(1):1047. doi: 10.1186/s12864-024-10966-z.

Abstract

Brassinosteroids (BRs), one of the major classes of phytohormones are essential for various processes of plant growth, development, and adaptations to biotic and abiotic stresses. In Arabidopsis, AtCYP90D1 acts as a bifunctional cytochrome P450 monooxygenase, catalyzing C-23 hydroxylation in the brassinolide biosynthetic pathway. The present study reports the functional characterizations of PtoCYP90D1, one of the AtCYP90D1 homologous genes from Populus tomentosa. The qRT-PCR analysis showed that PtoCYP90D1 was highly expressed in roots and old leaves. Overexpression of PtoCYP90D1 (PtoCYP90D1-OE) in poplar promoted growth and biomass yield, as well as increased xylem area and cell layers. Transgenic plants exhibited a significant increase in plant height and stem diameter as compared to the wild type. In contrast, the CRISPR/Cas9-generated mutation of PtoCYP90D1 (PtoCYP90D1-KO) resulted in significantly decreased biomass production in transgenic plants. Further studies revealed that cell wall components increased significantly in PtoCYP90D1-OE lines but not in PtoCYP90D1-KO lines, as compared to wild-type plants. Overall, the findings indicate a positive role of PtoCYP90D1 in improving growth rate and elevating biomass production in poplar, which will have positive implications for its versatile industrial or agricultural applications.

摘要

油菜素内酯(BRs)是植物激素的主要类别之一,对植物生长、发育以及适应生物和非生物胁迫的各种过程至关重要。在拟南芥中,AtCYP90D1 作为一种双功能细胞色素 P450 单加氧酶,催化油菜素内酯生物合成途径中的 C-23 羟化。本研究报告了杨树中 AtCYP90D1 同源基因 PtoCYP90D1 的功能特征。qRT-PCR 分析表明,PtoCYP90D1 在根和老叶中高度表达。在杨树中过表达 PtoCYP90D1(PtoCYP90D1-OE)可促进生长和生物量产量的增加,并增加木质部面积和细胞层。与野生型相比,转基因植物的株高和茎径显著增加。相比之下,PtoCYP90D1 的 CRISPR/Cas9 突变(PtoCYP90D1-KO)导致转基因植物的生物量产量显著降低。进一步的研究表明,与野生型植物相比,PtoCYP90D1-OE 系的细胞壁成分显著增加,但 PtoCYP90D1-KO 系则没有。总体而言,这些发现表明 PtoCYP90D1 在提高杨树的生长速度和提高生物量产量方面发挥了积极作用,这将对其在各种工业或农业应用中具有积极意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1255/11539751/a90e121ded21/12864_2024_10966_Fig1_HTML.jpg

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