Li Zeyu, Liu Jiyao, Chen Yan, Liang Aihua, He Wei, Qin Xiaoya, Qin Ken, Mu Zixin
College of Life Sciences, Northwest A&F University, Yangling 712100, China.
College of Life Sciences & Technology, Tarim University, Alaer 843300, China.
Plants (Basel). 2024 Mar 20;13(6):887. doi: 10.3390/plants13060887.
The characterization of the PYL/RCAR ABA receptors in a great deal of plant species has dramatically advanced the study of ABA functions involved in key physiological processes. However, the genes in this family are still unclear in (Goji) plants, one of the well-known economically, medicinally, and ecologically valuable fruit crops. In the present work, 12 homologs of PYL/RCAR ABA receptors were first identified and characterized from (L.) (LbPYLs). The quantitative real-time PCR (qRT-PCR) analysis showed that these genes had clear tissue-specific expression patterns, and most of them were transcribed in the root with the largest amount. Among the three subfamilies, while the Group I and Group III members were down-regulated by extraneous ABA, the Group II members were up-regulated. At 42 °C, most transcripts showed a rapid and violent up-regulation response to higher temperature, especially members of Group II. One of the genes in the Group II members, , was further functionally validated by virus-induced gene silencing (VIGS) technology. positively regulates heat stress tolerance in by alleviating chlorophyll degradation, thus maintaining chlorophyll stability. Integrating the endogenous ABA level increase following heat stress, it may be concluded that LbPYL-mediated ABA signaling plays a vital role in the thermotolerance of plants. Our results highlight the strong potential of genes in breeding genetically modified crops that acclimate to climate change.
大量植物物种中PYL/RCAR ABA受体的特性研究极大地推动了与关键生理过程相关的ABA功能研究。然而,在枸杞这种经济、药用和生态价值极高的著名水果作物中,该家族基因仍不清楚。在本研究中,首次从枸杞(Lycium barbarum L.)中鉴定并表征了12个PYL/RCAR ABA受体同源基因(LbPYLs)。定量实时PCR(qRT-PCR)分析表明,这些基因具有明显的组织特异性表达模式,且大多数在根中转录量最大。在三个亚家族中,I组和III组成员受外源ABA下调,而II组成员则上调。在42℃时,大多数转录本对高温表现出快速而强烈的上调反应,尤其是II组成员。II组成员中的一个基因LbPYL2,通过病毒诱导基因沉默(VIGS)技术进一步进行了功能验证。LbPYL2通过减轻叶绿素降解来积极调节枸杞的热胁迫耐受性,从而维持叶绿素稳定性。结合热胁迫后内源ABA水平的升高,可以得出结论,LbPYL介导的ABA信号在枸杞植物的耐热性中起着至关重要的作用。我们的结果突出了枸杞基因在培育适应气候变化的转基因枸杞作物方面的巨大潜力。