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硼转运蛋白 BnaC4.BOR1;1c 对油菜硼限制下的花序发育和育性至关重要。

The boron transporter BnaC4.BOR1;1c is critical for inflorescence development and fertility under boron limitation in Brassica napus.

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070, China.

Microelement Research Center, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

Plant Cell Environ. 2017 Sep;40(9):1819-1833. doi: 10.1111/pce.12987. Epub 2017 Jun 20.

DOI:10.1111/pce.12987
PMID:28545156
Abstract

Boron (B) is an essential micronutrient for plants, but the molecular mechanisms underlying the uptake and distribution of B in allotetraploid rapeseed (Brassica napus) are unclear. Here, we identified a B transporter of rapeseed, BnaC4.BOR1;1c, which is expressed in shoot nodes and involved in distributing B to the reproductive organs. Transgenic Arabidopsis plants containing a BnaC4.BOR1;1c promoter-driven GUS reporter gene showed strong GUS activity in roots, nodal regions of the shoots and immature floral buds. Overexpressing BnaC4.BOR1;1c in Arabidopsis wild type or in bor1-1 mutants promoted wild-type growth and rescued the bor1-1 mutant phenotype. Conversely, knockdown of BnaC4.BOR1;1c in a B-efficient rapeseed line reduced B accumulation in flower organs, eventually resulting in severe sterility and seed yield loss. BnaC4.BOR1;1c RNAi plants exhibited large amounts of disintegrated stigma papilla cells with thickened cell walls accompanied by abnormal proliferation of lignification under low-B conditions, indicating that the sterility may be a result of altered cell wall properties in flower organs. Taken together, our results demonstrate that BnaC4.BOR1;1c is a AtBOR1-homologous B transporter gene expressing in both roots and shoot nodes that is essential for the developing inflorescence tissues, which highlights its diverse functions in allotetraploid rapeseed compared with diploid model plant Arabidopsis.

摘要

硼(B)是植物必需的微量元素,但四倍体油菜(甘蓝型油菜)中硼的吸收和分布的分子机制尚不清楚。在这里,我们鉴定了油菜的硼转运蛋白 BnaC4.BOR1;1c,它在茎节点中表达,参与将硼分配到生殖器官。含有 BnaC4.BOR1;1c 启动子驱动的 GUS 报告基因的转基因拟南芥植物在根部、茎节点和未成熟的花芽中表现出强烈的 GUS 活性。在拟南芥野生型或 bor1-1 突变体中过表达 BnaC4.BOR1;1c 促进了野生型的生长并挽救了 bor1-1 突变体的表型。相反,在一种硼高效油菜品系中敲低 BnaC4.BOR1;1c 减少了花器官中的硼积累,最终导致严重的不育和种子产量损失。BnaC4.BOR1;1c RNAi 植物在低硼条件下表现出大量解体的柱头乳突细胞,细胞壁增厚,并伴随着木质素异常增殖,表明不育可能是花器官细胞壁特性改变的结果。总之,我们的研究结果表明,BnaC4.BOR1;1c 是一个在根和茎节点中表达的 AtBOR1 同源硼转运蛋白基因,对于发育中的花序组织是必需的,这突显了它在四倍体油菜中与二倍体模式植物拟南芥相比的多样化功能。

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