Identification and application of plant anther specific expression promoter pTaASG005
An anther-specific and promoter technology, applied in the application of the DNA, the field of isolated DNA, can solve the problems of long waiting time, insignificant effect of time and space improvement of target gene expression, and influence on plant growth and development, etc.
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Embodiment 1
[0042] Example 1. Whole-genome expression profile analysis of wheat anthers at different developmental stages and the acquisition of anther expression contigs at later stages of pollen development
[0043] The wheat anthers with pollen in the meiotic, mononuclear, binuclear, and trinuclear stages were taken, and the total RNA was extracted with Trizol (Invitrogen), and treated with DNaseI (Promega) to purify mRNA (Ambion). The purified mRNA is subjected to reverse transcription (Invitrogen), ultrasonic interruption (Fisher), library preparation (illumina) and amplification (illumina), and finally a sequencing reaction is performed on the illumina machine.
[0044] The results of high-throughput sequencing of the wheat transcriptome are first used for sequence splicing through Trinity software, and the resulting spliced sequence further removes redundancy and similarity clustering. For the expression change analysis of the spliced transcript contig, the sequence of high-throughp...
Embodiment 2
[0046] Example 2. RT-PCR verification of the tissue expression specificity of TaASG005 gene
[0047] Wheat is a heterohexaploid consisting of three sets of genomes A, B, and D. The average number of copies of genes is 2.8, of which nearly half of the genes (46%) have 3-4 copies, and 12% of genes have 1 -2 copies, 42% of gene copies are ≥5. Starting from the sequence of comp153941_c0_seq4 (shown in SEQ ID NO: 1), using the sequencing information of common wheat published by CerealsDB and IWGSC (International Wheat Genome Sequencing Consortium), and the wheat ancestor Urartu (Triticumurartu, A genome donor) published on Nature in 2013 and The sequencing information of Aegilopstauschii (Aegilopstauschii, D genome donor) was electronically cloned, and three TaASG005 genes were obtained, named TaASG005-1, TaASG005-2 and TaASG005-3, respectively, of which comp153941_c0_seq4 corresponds to TaASG005-1. 3 The cDNA sequences of the TaASG005 gene are shown in SEQ ID NO: 2, SEQ ID NO: 3 and...
Embodiment 3
[0057] Embodiment 3. TaASG005-1, TaASG005-2 and TaASG005-3 gene promoter sequence acquisition and cis-elements analysis
[0058] Starting from the cDNA sequences of TaASG005-1, TaASG005-2 and TaASG005-3 genes, using the sequencing information of common wheat published by CerealsDB and IWGSC (International WheatGenomeSequencingConsortium), and the wheat ancestor Triticumurartu (A genome) published on Nature in 2013 The sequence information of Aegilopstauschii (donor) and Aegilopstauschii (D genome donor) were cloned electronically, and the promoters of TaASG005-1, TaASG005-2 and TaASG005-3 genes were obtained, named as TaASG005-1 promoter and TaASG005, respectively. -2 promoter and TaASG005-3 promoter, the lengths of which are 2032bp, 2047bp and 2009bp, respectively, and the sequences are as shown in SEQ ID NO: 5, SEQ ID NO: 6 and SEQ ID NO: 7, respectively.
[0059] Using PlantCARE database and PLACE database, the TaASG005-1 promoter, TaASG005-2 promoter and TaASG005-3 promoter wer...
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