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BnaC7.ROT3,cqSL-C7 的因果基因,通过影响拟南芥细胞伸长来调节长角果长度。

BnaC7.ROT3, the causal gene of cqSL-C7, mediates silique length by affecting cell elongation in Brassica napus.

机构信息

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

Institute of Crops, Wuhan Academy of Agricultural Sciences, Wuhan, Hubei, China.

出版信息

J Exp Bot. 2022 Jan 5;73(1):154-167. doi: 10.1093/jxb/erab407.

Abstract

Siliques are a major carbohydrate source of energy for later seed development in rapeseed (Brassica napus). Thus, silique length has received great attention from breeders. We previously detected a novel quantitative trait locus cqSL-C7 that controls silique length in B. napus. Here, we further validated the cqSL-C7 locus and isolated its causal gene (BnaC7.ROT3) by map-based cloning. In 'Zhongshuang11' (parent line with long siliques), BnaC7.ROT3 encodes the potential cytochrome P450 monooxygenase CYP90C1, whereas in 'G120' (parent line with short siliques), a single nucleotide deletion in the fifth exon of BnaC7.ROT3 results in a loss-of-function truncated protein. Sub-cellular localization and expression pattern analysis revealed that BnaC7.ROT3 is a membrane-localized protein mainly expressed in leaves, flowers and siliques. Cytological observations showed that the cells in silique walls of BnaC7.ROT3-transformed positive plants were longer than those of transgene-negative plants in the background of 'G120', suggesting that BnaC7.ROT3 affects cell elongation. Haplotype analysis demonstrated that most alleles of BnaC7.ROT3 are favorable in B. napus germplasms, and its homologs may also be involved in silique length regulation. Our findings provide novel insights into the regulatory mechanisms of natural silique length variations and valuable genetic resources for the improvement of silique length in rapeseed.

摘要

角果是油菜(甘蓝型油菜)种子后期发育的主要能量碳水化合物来源。因此,角果长度一直受到育种者的关注。我们之前检测到一个控制油菜角果长度的新的数量性状位点 cqSL-C7。在这里,我们通过图谱克隆进一步验证了 cqSL-C7 位点,并分离了其候选基因(BnaC7.ROT3)。在‘中双 11’(长角果亲本系)中,BnaC7.ROT3 编码潜在的细胞色素 P450 单加氧酶 CYP90C1,而在‘G120’(短角果亲本系)中,BnaC7.ROT3 的第五外显子中的一个单核苷酸缺失导致功能缺失的截短蛋白。亚细胞定位和表达模式分析表明,BnaC7.ROT3 是一种定位于细胞膜的蛋白,主要在叶片、花和角果中表达。细胞学观察表明,在‘G120’背景下,BnaC7.ROT3 转化的阳性植物的角果皮细胞比转基因阴性植物的细胞更长,表明 BnaC7.ROT3 影响细胞伸长。单倍型分析表明,BnaC7.ROT3 的大多数等位基因在油菜种质资源中是有利的,其同源物也可能参与角果长度的调控。我们的研究结果为自然角果长度变化的调控机制提供了新的见解,并为油菜角果长度的改良提供了有价值的遗传资源。

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