Method for accelerating vegetation in low-nitrogen condition
A condition and plant technology, applied in the field of promoting plant growth, using genetic engineering to promote plant growth under low nitrogen conditions, can solve the problems such as no, and achieve the effects of reducing the degree of damage, increasing the biomass accumulation, and increasing the number of lateral roots
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[0028]In this experiment, Arabidopsis wild-type WT (Columbia ecotype), T-DNA insertion mutants lnt1-1 and lnt1-2, and mutant complementation materials AtLNT1+lnt1, promoterAtLNT1::GUS transgenic lines were used. The Arabidopsis mutants lnt1-1 (SALK_074896) and lnt1-2 (SALK_051843) were purchased from Salk Institute Genomic Analysis Laboratory (http: / / signal.salk.edu / ).
[0029] 1. The preparation method of mutant complementation material AtLNT1+lnt1, promoterAtLNT1::GUS transgenic line is as follows:
[0030] 1. AtLNT1 RNA isolation and cDNA reverse transcription:
[0031] Isolation of total RNA and reverse transcription of cDNA can be carried out according to conventional methods ("Molecular Cloning Experiment Guide" (Third Edition) J. Sambrook, Science Press).
[0032] 2. Preparation of mutant complementary material AtLNT1+lnt1:
[0033] AtLNT1 cDNA was amplified with primers 5'-AAGCTT CTATGCAGGAACGTTG-3' and 5'-GTCGACCCCAAAGGATATGATAAT-3', digested with Hind III and SalI,...
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