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近等基因系的转录组分析为玉米种子低温萌发能力相关基因提供了新见解。

Transcriptome Analysis of Near-Isogenic Lines Provides Novel Insights into Genes Associated with Seed Low-Temperature Germination Ability in Maize ( L.).

作者信息

Li Xuhui, Hu Hairui, Hu Xinmin, Wang Guihua, Du Xuemei, Li Li, Wang Feng, Fu Junjie, Wang Guoying, Wang Jianhua, Gu Riliang

机构信息

Beijing Innovation Center for Crop Seed Technology, Ministry of Agriculture and Rural Affairs, Key Laboratory of Crop Heterosis Utilization, Ministry of Education, College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China.

Institute of Nanfan & Seed Industry, Guangdong Academy of Science, Guangzhou 510316, China.

出版信息

Plants (Basel). 2022 Mar 25;11(7):887. doi: 10.3390/plants11070887.

Abstract

Maize originated from tropical regions and is extremely sensitive to low temperature during germination. Our previous work identified a major QTL, , for low temperature germination ability (LTGA) of maize. Here, we introgressed from the tolerant line L220 into the sensitive line PH4CV to generate two near isogenic lines NIL and NIL. When germinated under cold temperature for 25 days (Cold-25), the NILs showed similar seedling root length and shoot length to L220, but significantly higher than PH4CV. However, when germinated under cold temperature for 15 days (Cold-15) or under normal temperature (25 °C) for 3 days (CK-3), all lines showed similar seedling performance, indicating that introgression of from L220 into PH4CV could improve LTGA of NIL and NIL. The whole seedlings, including root and shoot, of Cold-15 and CK-3 were harvested for transcriptome analysis, when both stayed at a similar developmental stage. Dry seed embryo was sequenced as a non-germination control (CK-0). Compared with PH4CV, the tolerant line (L220, NIL, and NIL) specifically expressed genes (different expressed genes, DEGs) were identified for CK-0, Cold-15, and CK-3. Then, DEGs identified from Cold-15, but not from CK-0 or CK-3, were defined as tolerant line specifically expressed LTGA genes. Finally, 1786, 174, and 133 DEGs were identified as L220, NIL, and NIL specifically expressed LTGA genes, respectively. Of them, 27 were common LTGA genes that could be identified from all three tolerant lines, with two ( and ) locating in the confidence interval of . In addition, GO analysis revealed that L220 specifically expressed LTGA genes were majorly enriched in the cell division process and plasma membrane related categories. Taken together, these results provided new insight into the molecular mechanism of maize seed LTGA and facilitated the cloning of the gene.

摘要

玉米起源于热带地区,在萌发过程中对低温极为敏感。我们之前的研究鉴定出一个控制玉米低温萌发能力(LTGA)的主效QTL, 。在此,我们将来自耐低温品系L220的 导入敏感品系PH4CV中,培育出两个近等基因系NIL和NIL。在低温条件下萌发25天(Cold - 25)时,这两个近等基因系的幼苗根长和苗长与L220相似,但显著高于PH4CV。然而,在低温条件下萌发15天(Cold - 15)或在常温(25℃)下萌发3天(CK - 3)时,所有品系的幼苗表现相似,这表明将L220的 导入PH4CV可提高NIL和NIL的LTGA。当Cold - 15和CK - 3处于相似发育阶段时,收获包括根和苗的整株幼苗用于转录组分析。将干种子胚测序作为未萌发对照(CK - 0)。与PH4CV相比,鉴定出了耐低温品系(L220、NIL和NIL)在CK - 0、Cold - 15和CK - 3条件下的特异性表达基因(差异表达基因,DEGs)。然后,将在Cold - 15中鉴定出但在CK - 0或CK - 3中未鉴定出的DEGs定义为耐低温品系特异性表达的LTGA基因。最后,分别鉴定出1786个、174个和133个L220、NIL和NIL特异性表达的LTGA基因。其中,有27个是在所有三个耐低温品系中都能鉴定出的共同LTGA基因,其中两个( 和 )位于 的置信区间内。此外,基因本体(GO)分析表明,L220特异性表达的LTGA基因主要富集在细胞分裂过程和质膜相关类别中。综上所述,这些结果为玉米种子LTGA的分子机制提供了新的见解,并促进了 基因的克隆。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f29/9002958/81b14a9d8327/plants-11-00887-g001.jpg

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