NIU Zhanhai,WANG Zheng,SONG Laichao,et al.Expression Analysis of GST Genes in ‘Huangjinya’ Under Different Light Conditions[J].Northern Horticulture,2022,(14):31-36.[doi:10.11937/bfyy.20220070]
‘黄金芽’GST基因在不同光照条件下的表达分析
- Title:
- Expression Analysis of GST Genes in ‘Huangjinya’ Under Different Light Conditions
- Keywords:
- ‘Huangjinya’; CsGSTs gene; light; expression level
- 文献标志码:
- A
- 摘要:
- 以茶树‘黄金芽’扦插苗为试材,对‘黄金芽’在白光、红白2∶3、红白蓝3∶2∶1、红蓝5∶1 进行4种光照处理,采用实时荧光定量PCR分析4种光照处理下‘黄金芽’叶片中CsGSTs基因的表达情况,以期为深入研究光敏型茶树品种‘黄金芽’CsGSTs基因在不同光照条件下的表达提供参考依据。结果表明:与白光相比,发现处理18 d后,4个茶树CsGSTs基因均是红白2∶3光照条件下表达量最高,因此在红白2∶3光照条件下可以诱导茶树CsGSTs的表达,相反4个CsGSTs基因在红白蓝3∶2∶1和红蓝5∶1条件下表达量最低。说明在白光的基础上加入红光之后可以诱导CsGSTs的表达,而在白光的基础上加入蓝光之后会抑制CsGSTs的表达。
- Abstract:
- Taking the cutting seedling of ‘Huangjinya’ of tea tree as the test material,the cuttings of‘Huangjinya’ were treated with white light,red-white 2∶3,red-white-blue 3∶2∶1 and red blue 5∶1.Real-time quantitative PCR was used to analyze the expression of CsGSTs genes in tender leaves of‘Huangjinya’ under four light treatments,in order to provide reference for further research on the expression of CsGSTs genes of photosensitive tea cultivar ‘Huangjinya’ under different light conditions.The results showed that compared with white light,it was found that after 18 days treatment,the expression levels of the four CsGSTs genes were the highest under the red-white 2∶3 light condition,so the expression of tea tree CsGSTs could be induced under the red and white 2∶3 light condition.On the contrary,the expression levels of the four CsGSTs genes were the lowest under the conditions of red-white-blue 3∶2∶1 and red-blue 5∶1.It shows that the expression of CsGSTs could be induced by adding red light to white light,while the expression of CsGSTs could be inhibited by adding blue to white light.
参考文献/References:
[1]ESTVEZ I H,HERNNDEZ M R.Plant glutathione s-transferases:An overview[J].Plant Gene,2020,23(prepublish):100233.[2]张雪,陶磊,乔晟,等.谷胱甘肽转移酶在植物抵抗非生物胁迫方面的角色[J].中国生物工程杂志,2017,37(3):92-98.[3]张亚真,张芬,王丽鸳,等.植物谷胱甘肽转移酶在类黄酮累积中的作用[J].植物生理学报,2015,51(11):1815-1820.[4]LIU Y J,HAN X M,REN L L,et al.Functional divergence of the glutathione s-transferase supergene family in physcomitrella patens reveals complex patterns of large gene family evolution in land plants[J].Plant Physiology,2013,161(2):773-786.[5]WAGNER U,EDWARDS R,DIXON D P,et al.Probing the diversity of the Arabidopsis glutathione s-transferase gene family[J].Plant Molecular Biology,2002,49(5):515-532.[6]JAIN M,GHANASHYAM C,BHATTACHARJEE A.Comprehensive expression analysis suggests overlapping and specific roles of rice glutathione s-transferase genes during development and stress responses[J].BMC Genomics,2010,11(1):73.[7]WANG J,ZHANG Z,WU J,et al.Genome-wide identification,characterization,and expression analysis related to autotoxicity of the GST gene family in Cucumis melo L.[J].Plant Physiology and Biochemistry,2020,155:59-69.[8]陈锡,赵德刚,陈莹,等.高羊茅〖STBX〗FaGST1〖STBZ〗基因克隆、亚细胞定位及表达分析[J].南方农业学报,2020,51(7):1614-1624.[9]刘龙博,宋运贤,张慧君,等.石榴GST基因家族全基因组鉴定及表达分析[J].分子植物育种,2021,19(16):5307-5317.[10]李扬.海岛棉GST基因家族遗传进化及关键直系同源基因抗黄萎病功能研究[D].保定:河北农业大学,2020.[11]张亚真,韦康,王丽鸳,等.基于转录组测序对茶树GST基因表达的研究[J].茶叶科学,2016,36(5):513-522.[12]江涵.与茶树中类黄酮化合物转运相关的谷胱甘肽巯基转移酶(GSTs)基因的功能验证[D].合肥:安徽农业大学,2018.[13]TIAN Y,WANG H,SUN P,et al.Response of leaf color and the expression of photoreceptor genes of Camellia sinensis cv.Huangjinya to different light quality conditions[J].Scientia Horticulturae,2019,251:225-232.[14]AROCHO A,CHEN B,LADANYI M,et al.Validation of the 2-ΔΔCt calculation as an alternate method of data analysis for quantitative PCR of BCR-ABL P210 transcripts[J].Diagnostic Molecular Pathology,2006,15(1):56-61.[15]ZHANG Q,LIU M,JIAN Y R.Integrated transcriptome and metabolic analyses reveals novel insights into free amino acid metabolism in Huangjinya tea cultivar[J].Frontiers in Plant Science,2017(8):291.[16]SONG L,MA Q,ZOU Z,et al.Molecular link between leaf coloration and gene expression of flavonoid and carotenoid biosynthesis in Camellia sinensis cultivar ‘Huangjinya’[J].Frontiers in Plant Science,2017(8):803.[17]JIANG H W,LIU M J,CHEN I C,et al.A glutathione s-transferase regulated by light and hormones participates in the modulation of Arabidopsis seedling development[J].Plant Physiology,2010,154(4):1646-1658.[18]CHEN I C,HUANG I C,LIU M J,et al.Glutathione s-transferase interacting with far-red insensitive 219 is involved in phytochrome a-mediated signaling in Arabidopsis[J].Plant Physiology,2007,143(3):1189-1202.[19]WIT M D,GALVO V C,FANKHAUSER C.Light-mediated hormonal regulation of plant growth and development[J].Annual Review of Plant Biology,2016,67(1):513-537.[20]白雪.四季秋海棠叶片在低温和高光胁迫下次生花色素苷生物合成相关基因以及物质的研究[D].保定:河南农业大学,2020.[21]何海,朱燕,刘宁,等.棉铃虫中肠谷胱甘肽S-转移酶(GST)对新疆一枝蒿黄酮提取物和萜类提取物的响应[J].新疆农业科学,2012,49(12):2254-2262.[22]杨璐瑶.柿原花青素前体跨膜转运相关基因〖STBX〗DkGST1〖STBZ〗的表达分析及功能验证[D].武汉:华中农业大学,2018.[23]陈思肜.红蓝光对茶树生长及其代谢产物的影响[D].福州:福建农林大学,2020.[24]赵云.两品种桃果皮花青苷积累差异及光照调控机制[D].杭州:浙江大学,2019.[25]杨波.马铃薯块茎花青素差异累积及光诱导累积的研究[D].武汉:华中农业大学,2019.
备注/Memo
第一作者简介:牛占海(1999-),男,硕士研究生,研究方向为茶树栽培与育种。E-mail:913216319@qq.com.责任作者:马青平(1990-),女,博士,讲师,现主要从事茶树栽培与育种等研究工作。E-mail:maqingpingtea@163.com.基金项目:山东省自然科学基金资助项目(ZR2021QC159);山东农业良种工程资助项目(2020LZGC010);大学生创新创业训练计划资助项目(S202010447027,CXCY2021079)。收稿日期:2022-01-07