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整合 QTL 作图和转录组测序为油菜(甘蓝型油菜)茎秆强度提供了进一步的分子见解和候选基因。

An integrated QTL mapping and transcriptome sequencing provides further molecular insights and candidate genes for stem strength in rapeseed (Brassica napus L.).

机构信息

Oil Crops Research Institute of the Chinese Academy of Agricultural Sciences, Wuhan, China.

Industrial Crops Institute, Yunnan Academy of Agricultural Sciences, Kunming, China.

出版信息

Theor Appl Genet. 2024 Jan 31;137(2):38. doi: 10.1007/s00122-023-04535-3.

Abstract

We detected the major QTL- qSR.A07, which regulated stem strength and was fine-mapped to 490 kb. BnaA07G0302800ZS and BnaA07G0305700ZS as the candidate functional genes were identified at qSR.A07 locus. The stem's mechanical properties reflect its ability to resist lodging. In rapeseed (Brassica napus L.), although stem lodging negatively affects yield and generates harvesting difficulties, the molecular regulation of stem strength remains elusive. Hence, this study aimed to unravel the main loci and molecular mechanisms governing rapeseed stem strength. A mapping population consisting of 267 RILs (recombinant inbred lines) was developed from the crossed between ZS11 (high stem strength) and 4D122 (low stem strength), and two mechanical properties of stems including stem breaking strength and stem rind penetrometer resistance were phenotyped in four different environments. Four pleiotropic QTLs that were stable in at least two environments were detected. qSR.A07, the major one, was fine-mapped to a 490 kb interval between markers SA7-2711 and SA7-2760 on chromosome 7. It displayed epistatic interaction with qRPR.A09-2. Comparative transcriptome sequencing and analysis unveiled methionine/S-adenosylmethionine cycle (Met/SAM cycle), cytoskeleton organization, sulfur metabolism and phenylpropanoid biosynthesis as the main pathways associated with high stem strength. Further, we identified two candidate genes, BnaA07G0302800ZS and BnaA07G0305700ZS, at qSR.A07 locus. Gene sequence alignment identified a number of InDels, SNPs and amino acid variants in sequences of these genes between ZS11 and 4D122. Finally, based on these genetic variants, we developed three SNP markers of these genes to facilitate future genetic selection and functional studies. These findings offer important genetic resources for the molecular-assisted breeding of novel rapeseed stem lodging-resistant varieties.

摘要

我们检测到主要的 QTL- qSR.A07,它调节茎强度,并被精细定位到 490 kb。在 qSR.A07 位点,鉴定到 BnaA07G0302800ZS 和 BnaA07G0305700ZS 作为候选功能基因。茎的机械性能反映了其抗倒伏的能力。在油菜(Brassica napus L.)中,尽管茎倒伏会对产量产生负面影响并导致收获困难,但茎强度的分子调控仍然难以捉摸。因此,本研究旨在揭示控制油菜茎强度的主要基因座和分子机制。利用 ZS11(茎强度高)和 4D122(茎强度低)杂交产生的 267 个重组自交系(RIL)作图群体,在四个不同环境中对茎的两个机械特性进行了表型分析,包括茎折断强度和茎外皮穿刺阻力。检测到至少两个环境中稳定的四个多效性 QTL。qSR.A07 是主要的 QTL,被精细定位到染色体 7 上标记 SA7-2711 和 SA7-2760 之间的 490 kb 区间。它与 qRPR.A09-2 表现出上位性互作。比较转录组测序和分析揭示了蛋氨酸/ S-腺苷甲硫氨酸循环(Met/SAM 循环)、细胞骨架组织、硫代谢和苯丙烷生物合成是与高茎强度相关的主要途径。此外,我们在 qSR.A07 位点鉴定到两个候选基因,BnaA07G0302800ZS 和 BnaA07G0305700ZS。基因序列比对确定了 ZS11 和 4D122 之间这些基因序列中的一些 InDels、SNP 和氨基酸变异。最后,基于这些遗传变异,我们开发了这两个基因的三个 SNP 标记,以方便未来的遗传选择和功能研究。这些发现为油菜新型茎倒伏抗性品种的分子辅助育种提供了重要的遗传资源。

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