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利用热应激反应基因表达水平对耐热甘蓝(Brassica oleracea L.)进行早期选择。

Use of heat stress responsive gene expression levels for early selection of heat tolerant cabbage (Brassica oleracea L.).

作者信息

Park Hyun Ji, Jung Won Yong, Lee Sang Sook, Song Jun Ho, Kwon Suk-Yoon, Kim Hyeran, Kim Chulwook, Ahn Jun Cheul, Cho Hye Sun

机构信息

Plant Systems Engineering Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahangno, Yuseong-gu, Daejeon 305-806, Korea.

出版信息

Int J Mol Sci. 2013 Jun 4;14(6):11871-94. doi: 10.3390/ijms140611871.

Abstract

Cabbage is a relatively robust vegetable at low temperatures. However, at high temperatures, cabbage has disadvantages, such as reduced disease tolerance and lower yields. Thus, selection of heat-tolerant cabbage is an important goal in cabbage breeding. Easier or faster selection of superior varieties of cabbage, which are tolerant to heat and disease and have improved taste and quality, can be achieved with molecular and biological methods. We compared heat-responsive gene expression between a heat-tolerant cabbage line (HTCL), "HO", and a heat-sensitive cabbage line (HSCL), "JK", by Genechip assay. Expression levels of specific heat stress-related genes were increased in response to high-temperature stress, according to Genechip assays. We performed quantitative RT-PCR (qRT-PCR) to compare expression levels of these heat stress-related genes in four HTCLs and four HSCLs. Transcript levels for heat shock protein BoHsp70 and transcription factor BoGRAS (SCL13) were more strongly expressed only in all HTCLs compared to all HSCLs, showing much lower level expressions at the young plant stage under heat stress (HS). Thus, we suggest that expression levels of these genes may be early selection markers for HTCLs in cabbage breeding. In addition, several genes that are involved in the secondary metabolite pathway were differentially regulated in HTCL and HSCL exposed to heat stress.

摘要

甘蓝在低温环境下是一种相对耐寒的蔬菜。然而,在高温环境下,甘蓝存在一些劣势,比如抗病能力下降和产量降低。因此,选育耐热甘蓝是甘蓝育种的一个重要目标。利用分子生物学方法能够更简便、快速地选育出耐热、抗病且口感和品质更佳的甘蓝优良品种。我们通过基因芯片分析比较了耐热甘蓝品系(HTCL)“HO”和热敏甘蓝品系(HSCL)“JK”之间热响应基因的表达情况。根据基因芯片分析结果,特定热应激相关基因的表达水平在高温胁迫下会升高。我们进行了定量逆转录聚合酶链反应(qRT-PCR),以比较这四个耐热甘蓝品系和四个热敏甘蓝品系中这些热应激相关基因的表达水平。与所有热敏甘蓝品系相比,热休克蛋白BoHsp70和转录因子BoGRAS(SCL13)的转录水平仅在所有耐热甘蓝品系中表达更强,在热胁迫(HS)下的幼苗期表达水平低得多。因此,我们认为这些基因的表达水平可能是甘蓝育种中耐热甘蓝品系的早期选择标记。此外,参与次生代谢物途径的几个基因在耐热甘蓝品系和热敏甘蓝品系受到热胁迫时受到不同程度的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd73/3709761/74d05f42c71b/ijms-14-11871f1.jpg

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