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‘蓝丰’高丛越橘果实成熟过程中脱落酸生物合成和信号转导以及花色素苷生物合成的转录调控。

Transcriptional regulation of abscisic acid biosynthesis and signal transduction, and anthocyanin biosynthesis in 'Bluecrop' highbush blueberry fruit during ripening.

机构信息

Department of Plant Science, Seoul National University, Seoul, Republic of Korea.

Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, Republic of Korea.

出版信息

PLoS One. 2019 Jul 18;14(7):e0220015. doi: 10.1371/journal.pone.0220015. eCollection 2019.

Abstract

Highbush blueberry (Vaccinium corymbosum) fruit accumulate high levels of anthocyanins during ripening, which might be controlled by abscisic acid (ABA), a signal molecule in non-climacteric fruits. For an integrated view of the ripening process from ABA to anthocyanin biosynthesis, we analyzed the transcriptomes of 'Bluecrop' highbush blueberry fruit using RNA-Seq at three ripening stages, categorized based on fruit skin coloration: pale green at ca. 30 days after full bloom (DAFB), reddish purple at ca. 40 DAFB, and dark purple at ca. 50 DAFB. Mapping the trimmed reads against the reference sequences yielded 25,766 transcripts. Of these, 143 transcripts were annotated to encode five ABA biosynthesis enzymes, four ABA signal transduction regulators, four ABA-responsive transcription factors, and 12 anthocyanin biosynthesis enzymes. The analysis of differentially expressed genes between the ripening stages revealed that 11 transcripts, including those encoding nine-cis-epoxycarotenoid dioxygenase, SQUAMOSA-class MADS box transcription factor, and flavonoid 3',5'-hydroxylase, were significantly up-regulated throughout the entire ripening stages. In fruit treated with 1 g L-1 ABA, at least nine transcripts of these 11 transcripts as well as one transcript encoding flavonoid 3'-hydroxylase were up-regulated, presumably promoting anthocyanin accumulation and fruit skin coloration. These results will provide fundamental information demonstrating that ABA biosynthesis and signal transduction, and anthocyanin biosynthesis are closely associated with anthocyanin accumulation and skin coloration in highbush blueberry fruit during ripening.

摘要

南高丛越橘(Vaccinium corymbosum)果实成熟过程中积累高水平的花色苷,这可能受到非跃变型果实中信号分子脱落酸(ABA)的调控。为了全面了解 ABA 到花色苷生物合成的成熟过程,我们在三个成熟阶段使用 RNA-Seq 对‘蓝丰’南高丛越橘果实的转录组进行了分析,根据果皮颜色进行分类:花后约 30 天(DAFB)时呈浅绿色,花后约 40 DAFB 时呈红紫色,花后约 50 DAFB 时呈深紫色。将修剪后的读数与参考序列进行比对,得到 25766 个转录本。其中,143 个转录本被注释为编码 5 种 ABA 生物合成酶、4 种 ABA 信号转导调节剂、4 种 ABA 响应转录因子和 12 种花色苷生物合成酶。对不同成熟阶段差异表达基因的分析表明,11 个转录本,包括编码 9-顺式环氧类胡萝卜素双加氧酶、SQUAMOSA 类 MADS 框转录因子和类黄酮 3',5'-羟化酶的转录本,在整个成熟阶段都显著上调。在 1g/L ABA 处理的果实中,这 11 个转录本中的至少 9 个转录本以及编码类黄酮 3'-羟化酶的一个转录本都被上调,可能促进了花色苷的积累和果皮颜色的形成。这些结果将提供基本信息,表明 ABA 生物合成和信号转导以及花色苷生物合成与南高丛越橘果实成熟过程中的花色苷积累和果皮颜色密切相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a6b/6638965/9185a9075662/pone.0220015.g001.jpg

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