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结球白菜(L. ssp.)不结球突变体的鉴定

Characterization of Non-heading Mutation in Heading Chinese Cabbage ( L. ssp. ).

作者信息

Li Jingrui, Zhang Xiaomeng, Lu Yin, Feng Dongxiao, Gu Aixia, Wang Shan, Wu Fang, Su Xiangjie, Chen Xueping, Li Xing, Liu Mengyang, Fan Shuangxi, Feng Daling, Luo Shuangxia, Xuan Shuxin, Wang Yanhua, Shen Shuxing, Zhao Jianjun

机构信息

Key Laboratory of Vegetable Germplasm Innovation and Utilization of Hebei, Collaborative Innovation Center of Vegetable Industry in Hebei, College of Horticulture, Hebei Agricultural University, Baoding, China.

Plant Science and Technology College, Beijing University of Agriculture, Beijing, China.

出版信息

Front Plant Sci. 2019 Feb 12;10:112. doi: 10.3389/fpls.2019.00112. eCollection 2019.

Abstract

Heading is a key agronomic trait of Chinese cabbage. A non-heading mutant with flat growth of heading leaves () was isolated from an EMS-induced mutant population of the heading Chinese cabbage inbred line A03. In mutant plants, the heading leaves are flat similar to rosette leaves. The epidermal cells on the adaxial surface of these leaves are significantly smaller, while those on the abaxial surface are much larger than in A03 plants. The segregation of the heading phenotype in the F and BC population suggests that the mutant trait is controlled by a pair of recessive alleles. Phytohormone analysis at the early heading stage showed significant decreases in IAA, ABA, JA and SA, with increases in methyl IAA and -Zeatin levels, suggesting they may coordinate leaf adaxial-abaxial polarity, development and morphology in . RNA-sequencing analysis at the early heading stage showed a decrease in expression levels of several auxin transport (s, and s) and responsive genes. Transcript levels of important ABA responsive genes, including , were up-regulated in mid-leaf sections suggesting that both auxin and ABA signaling pathways play important roles in regulating leaf heading. In addition, a significant reduction in transcripts in might contribute to leaf epinastic growth. The expression profiles of 19 genes with known roles in leaf polarity were significantly different in leaves compared to wild type, suggesting that these genes might also regulate leaf heading in Chinese cabbage. In conclusion, leaf heading in Chinese cabbage is controlled through a complex network of hormone signaling and abaxial-adaxial patterning pathways. These findings increase our understanding of the molecular basis of head formation in Chinese cabbage.

摘要

结球是大白菜的一个关键农艺性状。从大白菜自交系A03的EMS诱变突变体群体中分离出一个结球叶扁平生长的非结球突变体()。在突变植株中,结球叶扁平,类似于莲座叶。这些叶片近轴面的表皮细胞明显较小,而远轴面的表皮细胞比A03植株的大得多。F和BC群体中结球表型的分离表明,突变性状由一对隐性等位基因控制。结球早期的植物激素分析表明,IAA、ABA、JA和SA显著降低,而甲基IAA和-玉米素水平升高,表明它们可能协调叶片的近轴-远轴极性、发育和形态。结球早期的RNA测序分析表明,几个生长素转运(、和)和响应基因的表达水平降低。包括在内的重要ABA响应基因的转录水平在叶片中部上调,表明生长素和ABA信号通路在调节叶片结球中都起重要作用。此外,中 转录本的显著减少可能导致叶片的偏上生长。与野生型相比,19个在叶片极性中具有已知作用的基因在叶片中的表达谱显著不同,表明这些基因也可能调节大白菜的叶片结球。总之,大白菜的叶片结球是通过激素信号和远轴-近轴模式通路的复杂网络来控制的。这些发现增加了我们对大白菜结球形成分子基础的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8351/6379458/7fb341cd9b02/fpls-10-00112-g001.jpg

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