Wu Juxun, Cao Junying, Su Mei, Feng Guizhi, Xu Yanhui, Yi Hualin
Key Laboratory of Horticultural Plant Biology, Ministry of Education, Huazhong Agricultural University, Wuhan, 430070 PR China.
Hortic Res. 2019 Mar 1;6:33. doi: 10.1038/s41438-018-0116-0. eCollection 2019.
Alkaline stress has serious-negative effects on citrus production. Ziyang xiangcheng ( Sieb. ex Tanaka) (Cj) is a rootstock that is tolerant to alkaline stress and iron deficiency. Trifoliate orange ( (L.) Raf.) (Pt), the most widely used rootstock in China, is sensitive to alkaline stress. To investigate the molecular mechanism underlying the tolerance of Cj to alkaline stress, next-generation sequencing was employed to profile the root transcriptomes and small RNAs of Cj and Pt seedlings that were cultured in nutrient solutions along a three pH gradient. This two-level regulation data set provides a system-level view of molecular events with a precise resolution. The data suggest that the auxin pathway may play a central role in the inhibitory effect of alkaline stress on root growth and that the regulation of auxin homeostasis under alkaline stress is important for the adaptation of citrus to alkaline stress. Moreover, the jasmonate (JA) pathway exhibits the opposite response to alkaline stress in Cj and Pt and may contribute to the differences in the alkaline stress tolerance and iron acquisition between Cj and Pt. The dataset provides a wealth of genomic resources and new clues to further study the mechanisms underlying alkaline stress resistance in Cj.
碱性胁迫对柑橘生产具有严重的负面影响。资阳香橙(Sieb. ex Tanaka)(Cj)是一种耐碱性胁迫和缺铁的砧木。枳((L.)Raf.)(Pt)是中国使用最广泛的砧木,对碱性胁迫敏感。为了研究Cj耐碱性胁迫的分子机制,采用二代测序技术对在三种pH梯度的营养液中培养的Cj和Pt幼苗的根系转录组和小RNA进行了分析。这个两级调控数据集以精确的分辨率提供了分子事件的系统级视图。数据表明,生长素途径可能在碱性胁迫对根系生长的抑制作用中起核心作用,并且碱性胁迫下生长素稳态的调节对于柑橘适应碱性胁迫很重要。此外,茉莉酸(JA)途径在Cj和Pt中对碱性胁迫表现出相反的反应,可能导致Cj和Pt在碱性胁迫耐受性和铁吸收方面的差异。该数据集提供了丰富的基因组资源和新线索,以进一步研究Cj抗碱性胁迫的机制。