Suppr超能文献

甘蓝型油菜成花素基因座旁系同源基因在反向染色体重复模块背景下的进化

The evolution of Brassica napus FLOWERING LOCUS T paralogues in the context of inverted chromosomal duplication blocks.

作者信息

Wang Jing, Long Yan, Wu Baoduo, Liu Jia, Jiang Congcong, Shi Lei, Zhao Jianwei, King Graham J, Meng Jinling

机构信息

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

出版信息

BMC Evol Biol. 2009 Nov 25;9:271. doi: 10.1186/1471-2148-9-271.

Abstract

BACKGROUND

The gene FLOWERING LOCUS T (FT) and its orthologues play a central role in the integration of flowering signals within Arabidopsis and other diverse species. Multiple copies of FT, with different cis-intronic sequence, exist and appear to operate harmoniously within polyploid crop species such as Brassica napus (AACC), a member of the same plant family as Arabidopsis.

RESULTS

We have identified six BnFT paralogues from the genome of B. napus and mapped them to six distinct regions, each of which is homologous to a common ancestral block (E) of Arabidopsis chromosome 1. Four of the six regions were present within inverted duplicated regions of chromosomes A7 and C6. The coding sequences of BnFT paralogues showed 92-99% identities to each other and 85-87% identity with that of Arabidopsis. However, two of the paralogues on chromosomes A2 and C2, BnA2.FT and BnC2.FT, were found to lack the distinctive CArG box that is located within intron 1 that has been shown in Arabidopsis to be the binding site for theFLC protein. Three BnFT paralogues (BnA2.FT, BnC6.FT.a and BnC6.FT.b) were associated with two major QTL clusters for flowering time. One of the QTLs encompassing two BnFT paralogues (BnC6.FT.a and BnC6.FT.b) on chromosome C6 was resolved further using near isogenic lines, specific alleles of which were both shown to promote flowering. Association analysis of the three BnFT paralogues across 55 cultivars of B. napus showed that the alleles detected in the original parents of the mapping population used to detect QTL (NY7 and Tapidor) were ubiquitous amongst spring and winter type cultivars of rapeseed. It was inferred that the ancestral FT homologues in Brassica evolved from two distinct copies, one of which was duplicated along with inversion of the associated chromosomal segment prior to the divergence of B. rapa (AA) and B. oleracea (CC). At least ten such inverted duplicated blocks (IDBs) were identified covering a quarter of the whole B. napus genome.

CONCLUSION

Six orthologues of Arabidopsis FT were identified and mapped in the genome of B. napus which sheds new light on the evolution of paralogues in polyploidy species. The allelic variation of BnFT paralogues results in functional differences affecting flowering time between winter and spring type cultivars of oil seed Brassica. The prevalent inverted duplicated blocks, two of which were located by four of the six BnFT paralogues, contributed to gene duplications and might represent predominant pathway of evolution in Brassica.

摘要

背景

FLOWERING LOCUS T(FT)基因及其直系同源基因在拟南芥和其他不同物种的开花信号整合中起着核心作用。FT存在多个具有不同顺式内含子序列的拷贝,并且似乎在多倍体作物物种(如甘蓝型油菜(AACC),与拟南芥同属一个植物科)中协调运作。

结果

我们从甘蓝型油菜基因组中鉴定出六个BnFT旁系同源基因,并将它们定位到六个不同区域,每个区域都与拟南芥1号染色体的一个共同祖先区段(E)同源。六个区域中的四个位于A7和C6染色体的反向重复区域内。BnFT旁系同源基因的编码序列彼此间具有92 - 99%的同一性,与拟南芥的编码序列具有85 - 87%的同一性。然而,发现位于A2和C2染色体上的两个旁系同源基因BnA2.FT和BnC2.FT缺乏位于内含子1中的独特CArG框,而在拟南芥中该框已被证明是FLC蛋白的结合位点。三个BnFT旁系同源基因(BnA2.FT、BnC6.FT.a和BnC6.FT.b)与两个主要的开花时间QTL簇相关。使用近等基因系进一步解析了位于C6染色体上包含两个BnFT旁系同源基因(BnC6.FT.a和BnC6.FT.b)的一个QTL,其特定等位基因均被证明可促进开花。对55个甘蓝型油菜品种的三个BnFT旁系同源基因进行关联分析表明,用于检测QTL的作图群体的原始亲本(NY7和Tapidor)中检测到的等位基因在油菜的春性和冬性品种中普遍存在。据推断,芸苔属中的祖先FT同源基因由两个不同的拷贝进化而来,其中一个在白菜型油菜(AA)和甘蓝(CC)分化之前随着相关染色体区段的倒位而复制。至少鉴定出十个这样的反向重复区段(IDB),覆盖了整个甘蓝型油菜基因组的四分之一。

结论

在甘蓝型油菜基因组中鉴定并定位了六个拟南芥FT的直系同源基因,这为多倍体物种中旁系同源基因的进化提供了新的线索。BnFT旁系同源基因的等位变异导致了影响油菜冬性和春性品种开花时间的功能差异。普遍存在的反向重复区段,其中六个BnFT旁系同源基因中的四个定位到了其中两个,促成了基因复制,可能代表了芸苔属中的主要进化途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a085/2794288/16922cc21e08/1471-2148-9-271-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验