Graduate School of Agricultural Science, Kobe University, 1-1 Rokkodaicho, Nada-ku, Kobe, Hyogo, 657-8501, Japan.
Faculty of Agriculture, Kobe University, 1-1 Rokkodaicho, Nada-ku, Kobe, Hyogo, 657-8501, Japan.
Mol Biol Rep. 2022 Aug;49(8):7773-7782. doi: 10.1007/s11033-022-07602-y. Epub 2022 Jun 1.
Zucchini plants (Cucurbita pepo) accumulate persistent organic pollutants (POPs) at high concentrations in their aerial parts, and major latex-like proteins (MLPs) play crucial roles in their accumulation. MLPs bind to POPs in root cells, MLP-POP complexes are then translocated into xylem vessels, and POPs are transported to the aerial parts. We previously identified three CpMLP genes (MLP-PG1, MLP-GR1, and MLP-GR3) as transporting factors for POPs; however, other studies have shown that the genomes of several plant species contain more than 10 MLP genes, thus, further MLP genes responsible for POP accumulation may have been overlooked.
Here, we investigated the number of CpMLP genes by performing a hidden Markov model search against the C. pepo genome database and characterized their effects on POP accumulation by performing the expression analysis in the organs and in silico structural analysis. The C. pepo genome contained 21 CpMLP genes, and several CpMLP genes, including MLP-PG1 and MLP-GR3, were highly expressed in roots. 3D structural prediction showed that all examined CpMLPs contained a cavity with a hydrophobic region, which facilitated binding to POPs.
The present study provides insights regarding CpMLP genes responsible for POP accumulation.
南瓜植株(Cucurbita pepo)在其地上部分中高度积累持久性有机污染物(POPs),而主要乳状蛋白(MLPs)在其积累中起着至关重要的作用。MLPs 与根细胞中的 POPs 结合,然后 MLP-POP 复合物被转运到木质部导管中,POPs 被运输到地上部分。我们之前鉴定了三个 CpMLP 基因(MLP-PG1、MLP-GR1 和 MLP-GR3)作为 POPs 的转运因子;然而,其他研究表明,几种植物物种的基因组包含超过 10 个 MLP 基因,因此,可能忽略了其他负责 POP 积累的 MLP 基因。
在这里,我们通过对南瓜基因组数据库进行隐马尔可夫模型搜索来研究 CpMLP 基因的数量,并通过在器官中进行表达分析和计算机模拟结构分析来研究它们对 POP 积累的影响。南瓜基因组包含 21 个 CpMLP 基因,包括 MLP-PG1 和 MLP-GR3 在内的几个 CpMLP 基因在根中高度表达。3D 结构预测表明,所有检查的 CpMLPs 都含有一个带有疏水区域的腔,这有利于与 POPs 结合。
本研究提供了有关负责 POP 积累的 CpMLP 基因的见解。