UCH320 protein and application of coding gene thereof in adjusting and controlling plant growth and development
A technology for encoding genes and transgenic plants, which is applied in the application field of UCH320 protein and its encoding genes in regulating plant growth and development, which can solve the problems of long cycle, slow effect, and inability to meet the urgent needs of production and development, and achieve the reduction of seed weight , The effect of increasing the seed setting rate
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Embodiment 1
[0091] Embodiment 1, the acquisition and identification of UCH320 transgenic plants
[0092] The UCH320 gene involved in this example is derived from rice (Oryza.sativa L.), and its cDNA sequence is shown in sequence 2 in the sequence table. Sequence (ORF); Sequence 2 encodes the protein (UCH320 protein) shown in Sequence 1 in the Sequence Listing, and Sequence 1 consists of 229 amino acid residues.
[0093] 1. Construction of RNAi expression vector pCAM23A-UCH320
[0094] Design the following RNAi primer sequences according to sequence 2 in the sequence listing:
[0095] RNAi-23A320-F: 5'-cc ACT AGT ATG GAG GAT GCT CAT TCC-3' (underlined is the recognition sequence of the enzyme cutting site Spe I, followed by the 534-551th position of sequence 2)
[0096] RNAi-23A320-R: 5'-Tc GGA TCC CAC AAC TTT CGA AAG AGC-3' (underlined is the recognition sequence of the restriction site BamH I, followed by the reverse complement of the 771-788th position of sequence 2)
[0097] U...
Embodiment 2
[0135] Embodiment 2, functional identification of transgenic rice
[0136] Positive T was identified in Example 1 with 24 strains 1 The transgenic rice transgenic plants transformed into the RNAi expression vector pCAM23A-UCH320, the non-transgenic wild type rice variety Zhonghua No. 11, and the control plants obtained in Example 1 transformed into the pCAM23A empty vector were used as experimental materials. The seeds of each experimental material were sown in petri dishes for accelerated germination (80-100 seeds were sown for each experimental material), and the accelerated seedlings were transplanted into flower pots to emerge, and then transferred to large fields in the suburbs of Beijing for growth. After harvesting the ears of each experimental material plant, it was analyzed and identified in the following aspects:
[0137] 1. Analysis of rice ear phenotype
[0138] The results showed that compared with the non-transgenic wild-type rice variety Zhonghua 11, 24 positi...
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