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上游区域的一个 CACTA 样转座元件 BnaA9.CYP78A9 作为增强子,增加油菜角果长度和种子重量。

A CACTA-like transposable element in the upstream region of BnaA9.CYP78A9 acts as an enhancer to increase silique length and seed weight in rapeseed.

机构信息

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

Southern Cross Plant Science, Southern Cross University, Lismore, NSW, 2480, Australia.

出版信息

Plant J. 2019 May;98(3):524-539. doi: 10.1111/tpj.14236. Epub 2019 Mar 7.

Abstract

Rapeseed (Brassica napus L.) is a model plant for polyploid crop research and the second-leading source of vegetable oil worldwide. Silique length (SL) and seed weight are two important yield-influencing traits in rapeseed. Using map-based cloning, we isolated qSLWA9, which encodes a P450 monooxygenase (BnaA9.CYP78A9) and functions as a positive regulator of SL. The expression level of BnaA9.CYP78A9 in silique valves of the long-silique variety is much higher than that in the regular-silique variety, which results in elongated cells and a prolonged phase of silique elongation. Plants of the long-silique variety and transgenic plants with high expression of BnaA9.CYP78A9 had a higher concentration of auxin in the developing silique; this induced a number of auxin-related genes but no genes in well-known auxin biosynthesis pathways, suggesting that BnaA9.CYP78A9 may influence auxin concentration by affecting auxin metabolism or an unknown auxin biosynthesis pathway. A 3.7-kb CACTA-like transposable element (TE) inserted in the 3.9-kb upstream regulatory sequence of BnaA9.CYP78A9 elevates the expression level, suggesting that the CACTA-like TE acts as an enhancer to stimulate high gene expression and silique elongation. Marker and sequence analysis revealed that the TE in B. napus had recently been introgressed from Brassica rapa by interspecific hybridization. The insertion of the TE is consistently associated with long siliques and large seeds in both B. napus and B. rapa collections. However, the frequency of the CACTA-like TE in rapeseed varieties is still very low, suggesting that this allele has not been widely used in rapeseed breeding programs and would be invaluable for yield improvement in rapeseed breeding.

摘要

油菜(甘蓝型油菜)是多倍体作物研究的模式植物,也是世界上第二大食用油来源。角果长度(SL)和种子重量是油菜产量的两个重要影响性状。通过基于图谱的克隆,我们分离到了 qSLWA9,它编码一个 P450 单加氧酶(BnaA9.CYP78A9),作为 SL 的正调控因子。长角果品种的角果瓣中 BnaA9.CYP78A9 的表达水平明显高于普通角果品种,导致细胞伸长和角果伸长阶段延长。长角果品种的植株和高表达 BnaA9.CYP78A9 的转基因植株的发育角果中生长素浓度较高;这诱导了许多生长素相关基因,但没有已知的生长素生物合成途径中的基因,表明 BnaA9.CYP78A9 可能通过影响生长素代谢或未知的生长素生物合成途径来影响生长素浓度。一个 3.7kb 的 CACTA 样转座元件(TE)插入 BnaA9.CYP78A9 的 3.9kb 上游调控序列中,提高了表达水平,表明 CACTA 样 TE 作为增强子刺激高基因表达和角果伸长。标记和序列分析表明,油菜中的 TE 是由种间杂交从芸薹属植物中引入的。TE 的插入与油菜和芸薹属植物中的长角果和大种子始终相关。然而,TE 在油菜品种中的频率仍然很低,这表明该等位基因尚未在油菜育种计划中广泛使用,对于油菜育种的产量提高将是非常宝贵的。

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