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用细胞分裂素处理的生物燃料植物麻疯树花序分生组织的转录组

Transcriptome of the inflorescence meristems of the biofuel plant Jatropha curcas treated with cytokinin.

作者信息

Pan Bang-Zhen, Chen Mao-Sheng, Ni Jun, Xu Zeng-Fu

机构信息

Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Yunnan, Menglun 666303, People's Republic of China.

出版信息

BMC Genomics. 2014 Nov 17;15(1):974. doi: 10.1186/1471-2164-15-974.

Abstract

BACKGROUND

Jatropha curcas, whose seed content is approximately 30-40% oil, is an ideal feedstock for producing biodiesel and bio-jet fuels. However, Jatropha plants have a low number of female flowers, which results in low seed yield that cannot meet the needs of the biofuel industry. Thus, increasing the number of female flowers is critical for the improvement of Jatropha seed yield. Our previous findings showed that cytokinin treatment can increase the flower number and female to male ratio and also induce bisexual flowers in Jatropha. The mechanisms underlying the influence of cytokinin on Jatropha flower development and sex determination, however, have not been clarified.

RESULTS

This study examined the transcriptional levels of genes involved in the response to cytokinin in Jatropha inflorescence meristems at different time points after cytokinin treatment by 454 sequencing, which gave rise to a total of 294.6 Mb of transcript sequences. Up-regulated and down-regulated annotated and novel genes were identified, and the expression levels of the genes of interest were confirmed by qRT-PCR. The identified transcripts include those encoding genes involved in the biosynthesis, metabolism, and signaling of cytokinin and other plant hormones, flower development and cell division, which may be related to phenotypic changes of Jatropha in response to cytokinin treatment. Our analysis indicated that Jatropha orthologs of the floral organ identity genes known as ABCE model genes, JcAP1,2, JcPI, JcAG, and JcSEP1,2,3, were all significantly repressed, with an exception of one B-function gene JcAP3 that was shown to be up-regulated by BA treatment, indicating different mechanisms to be involved in the floral organ development of unisexual flowers of Jatropha and bisexual flowers of Arabidopsis. Several cell division-related genes, including JcCycA3;2, JcCycD3;1, JcCycD3;2 and JcTSO1, were up-regulated, which may contribute to the increased flower number after cytokinin treatment.

CONCLUSIONS

This study presents the first report of global expression patterns of cytokinin-regulated transcripts in Jatropha inflorescence meristems. This report laid the foundation for further mechanistic studies on Jatropha and other non-model plants responding to cytokinin. Moreover, the identification of functional candidate genes will be useful for generating superior varieties of high-yielding transgenic Jatropha.

摘要

背景

麻疯树种子含油量约为30%-40%,是生产生物柴油和生物喷气燃料的理想原料。然而,麻疯树植株雌花数量少,导致种子产量低,无法满足生物燃料产业的需求。因此,增加雌花数量对于提高麻疯树种子产量至关重要。我们之前的研究结果表明,细胞分裂素处理可以增加麻疯树的花数量和雌雄花比例,还能诱导两性花。然而,细胞分裂素对麻疯树花发育和性别决定影响的潜在机制尚未阐明。

结果

本研究通过454测序检测了细胞分裂素处理后不同时间点麻疯树花序分生组织中参与细胞分裂素应答的基因转录水平,共获得294.6 Mb的转录序列。鉴定出上调和下调的注释基因及新基因,并通过qRT-PCR证实了目标基因的表达水平。鉴定出的转录本包括编码参与细胞分裂素及其他植物激素生物合成、代谢和信号传导、花发育和细胞分裂的基因,这些可能与麻疯树响应细胞分裂素处理后的表型变化有关。我们的分析表明,麻疯树中已知的花器官特征基因ABCE模型基因的直系同源基因JcAP1、2、JcPI、JcAG和JcSEP1、2、3均受到显著抑制,但一个B功能基因JcAP3经BA处理后上调,这表明麻疯树单性花和拟南芥两性花花器官发育涉及不同机制。几个与细胞分裂相关的基因,包括JcCycA3;2、JcCycD3;1、JcCycD3;2和JcTSO1上调,这可能是细胞分裂素处理后花数量增加的原因。

结论

本研究首次报道了细胞分裂素调控的转录本在麻疯树花序分生组织中的全局表达模式。本报告为进一步研究麻疯树及其他非模式植物对细胞分裂素的响应机制奠定了基础。此外,功能候选基因的鉴定将有助于培育高产转基因麻疯树优良品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a31f/4246439/dee31c937899/12864_2014_6670_Fig1_HTML.jpg

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