| Literature DB >> 32349671 |
Izabel Costa Silva Neta1, Édila Vilela de Resende Von Pinho2, Viviane Maria de Abreu3, Danielle Rezende Vilela2, Milena Christy Santos1, Heloisa Oliveira Dos Santos2, Ricardo Augusto Diniz Cabral Ferreira4, Renzo Garcia Von Pinho2, Renato Coelho de Castro Vasconcellos5.
Abstract
BACKGROUND: The study of cold tolerance in maize seeds and seedlings through physiological quality assessments, as well as the genetic control associated with this trait, allows an early characterization of genotypes. Here we studied the genetic control for cold tolerance during the germination process in maize seeds and genes influenced by this stress.Entities:
Keywords: Heterosis; Maternal effect; Vigor; Zea mays
Mesh:
Substances:
Year: 2020 PMID: 32349671 PMCID: PMC7191758 DOI: 10.1186/s12870-020-02387-3
Source DB: PubMed Journal: BMC Plant Biol ISSN: 1471-2229 Impact factor: 4.215
Analysis of variance for the germination test at 25 °C in maize lines and hybrids seeds
| SV | DF | SS | MS | Fc | Pr > Fc |
|---|---|---|---|---|---|
| Treatment | 23 | 962.48 | 41.84 | 1.00 | 0.47ns |
| Error | 65 | 3006.75 | 41.76 | ||
| CV (%) = 13.52 | Mean: 95.6 | ||||
ns: not significant at 1% probability by the F test
Mean values for the germination test in percentage (GER) evaluated 4, 7, 14, and 21 days after sowing and heterosis, carried out at 25 °C in maize lines and hybrids seeds
| Female Parental | Male Parental | Treat | GER(%) | Heterosis | |
|---|---|---|---|---|---|
| 44 | 44 | 1 | 99 | A | – |
| 54 | 54 | 2 | 96 | A | – |
| 57 | 57 | 3 | 94 | A | – |
| 63 | 63 | 4 | 96 | A | – |
| 64 | 64 | 5 | 98 | A | – |
| 91 | 91 | 6 | 99 | A | – |
| 63 | 44 | 7 | 99 | A | 1.25 |
| 64 | 44 | 8 | 90 | A | −8.5 |
| 91 | 44 | 9 | 100 | A | 0.5 |
| 63 | 54 | 10 | 97 | A | 0.75 |
| 64 | 54 | 11 | 100 | A | 3 |
| 91 | 54 | 12 | 100 | A | 1.75 |
| 63 | 57 | 13 | 97 | A | 2.25 |
| 64 | 57 | 14 | 90 | A | −6 |
| 91 | 57 | 15 | 100 | A | 3 |
| 44 | 63 | 16 | 100 | A | 2.25 |
| 54 | 63 | 17 | 96 | A | 0.25 |
| 57 | 63 | 18 | 90 | A | −4.75 |
| 44 | 64 | 19 | 99 | A | 0.5 |
| 54 | 64 | 20 | 100 | A | 2.5 |
| 57 | 64 | 21 | 98 | A | 1.5 |
| 44 | 91 | 22 | 99 | A | −0.5 |
| 54 | 91 | 23 | 97 | A | −1 |
| 57 | 91 | 24 | 95 | A | −1.5 |
Means followed by the same capital letter in the column do not differ from each other at 5% probability by the Scott Knott test
Summary of the analysis of variance for the germination (GER) and protrusion (PROT) tests carried out at 10 °C in maize lines and hybrids seeds
| SV | DF | MS | |
|---|---|---|---|
| GER | PROT | ||
| Genotypes | 23 | 4546.6a | 221.52a |
| Error | 65 | 133.2 | 3.99 |
| Total | 88 | ||
| General Mean | 39.04 | 94.88 | |
| CV (%) | 29.56 | 2.10 | |
a Significant at 1% by the F test
Mean values in percentage for germination (GER) and protrusion (PROT) tests evaluated 4, 7, 14, and 21 days after sowing and heterosis, carried out at 10 °C in maize lines and hybrids seeds
| Female Parental | Male Parental | Treat | PROT | Heterosis | GER | Heterosis | ||
|---|---|---|---|---|---|---|---|---|
| 44 | 44 | 1 | 97 | B | – | 0 | C | – |
| 54 | 54 | 2 | 79 | D | – | 0 | C | – |
| 57 | 57 | 3 | 96 | B | – | 3 | C | – |
| 63 | 63 | 4 | 90 | C | – | 3 | C | – |
| 64 | 64 | 5 | 97 | B | – | 25 | C | – |
| 91 | 91 | 6 | 100 | A | – | 16 | C | – |
| 63 | 44 | 7 | 100 | A | 6.75 | 68 | A | 66.25 |
| 64 | 44 | 8 | 99 | A | 2 | 17 | C | 4.25 |
| 91 | 44 | 9 | 95 | B | −3.75 | 81 | A | 73.25 |
| 63 | 54 | 10 | 63 | E | −21.25 | 0 | C | −1.25 |
| 64 | 54 | 11 | 95 | B | 7 | 15 | C | 2.75 |
| 91 | 54 | 12 | 100 | A | 10.25 | 46 | B | 37.75 |
| 63 | 57 | 13 | 96 | B | 3.25 | 21 | C | 17.75 |
| 64 | 57 | 14 | 96 | B | −0.5 | 28 | C | 14.25 |
| 91 | 57 | 15 | 99 | A | 1.25 | 88 | A | 78.75 |
| 44 | 63 | 16 | 99 | A | 5.75 | 33 | C | 31.25 |
| 54 | 63 | 17 | 95 | B | 10.75 | 83 | A | 81.25 |
| 57 | 63 | 18 | 90 | C | −2.75 | 18 | C | 14.75 |
| 44 | 64 | 19 | 100 | A | 3 | 74 | A | 61.25 |
| 54 | 64 | 20 | 100 | A | 12 | 48 | B | 35.25 |
| 57 | 64 | 21 | 95 | B | −1.5 | 81 | A | 66.75 |
| 44 | 91 | 22 | 100 | A | 1.25 | 60 | B | 51.75 |
| 54 | 91 | 23 | 97 | A | 7.75 | 81 | A | 73.25 |
| 57 | 91 | 24 | 99 | A | 0.75 | 88 | A | 78.25 |
Means followed by the same capital letter in the column do not differ from each other at 5% probability by the Scott Knott test
Mean squares of the general (GCA) and specific (SCA) combining abilities and reciprocal effects (RE) for protrusion percentage (PROT) and percentage of germination (TG) in maize seeds
| SV | DF | MS | |
|---|---|---|---|
| GER | PROT | ||
| GCA | 5 | 3650.89a | 498.96a |
| SCA | 9 | 5821.98a | 163.79a |
| RE | 9 | 7850.26a | 285.45a |
| Error | 65 | 133.21 | 3.98 |
a Significant at 1% by the F test
Estimates of the general combining ability (G), specific combining ability (S), maternal (M) and non-maternal (N) reciprocal effects for protrusion (PROT) and germination percentage (GER) when germinated at 10 °C
| Parameter | PROT | GER |
|---|---|---|
| G144 | 2.392 | 3.659 |
| G254 | −5.408 | −9.591 |
| G357 | 0.058 | −1.611 |
| G463 | −3.208 | −7.140 |
| G564 | 2.192 | −2.964 |
| G691 | 3.975 | 17.646 |
| S14 | 5.442 | 14.440 |
| S15 | −0.458 | 16.164 |
| S16 | −1.825 | 15.754 |
| S24 | −8.758 | 18.940 |
| S25 | 5.342 | −18.986 |
| S26 | 4.808 | 10.404 |
| S34 | 1.775 | −11.290 |
| S35 | −2.125 | 11.434 |
| S36 | −0.158 | 32.674 |
| M1 | 0.838 | 3.533 |
| M2 | −5.384 | −13.783 |
| M3 | 1.949 | −5.650 |
| M4 | 3.968 | 2.117 |
| M5 | −0.032 | 16.867 |
| M6 | −1.338 | −3.083 |
| N14 | 3.630 | 16.083 |
| N15 | −1.370 | −26.067 |
| N16 | −2.259 | 9.983 |
| N24 | −8.148 | −25.350 |
| N25 | 2.852 | 38.150 |
| N26 | 5.296 | −12.800 |
| N34 | 4.519 | 9.267 |
| N35 | −1.481 | −12.083 |
| N36 | −3.037 | 2.817 |
The numbers 1, 2, 3, 4, 5 and 6, following the letters, correspond to lines 44, 54, 57, 63, 64 and 91 respectively
Fig. 1Isoenzymatic patterns of the esterase enzyme (EST) in dry maize seeds (SS) and moistened at 10 °C for 4 (4d) and 7 (7d) days in lines 54, 64 and in the hybrid 64 × 54 and its reciprocal 54 × 64
Fig. 2Isoenzymatic patterns of heat-resistant proteins in dry maize seeds (SS) and moistened at 10 °C for 4 (4d) and 7 days (7d) in lines 54, 64 and in the hybrid 64 × 54 and its reciprocal 54 × 64
Fig. 3Relative expression of the SAD (Putative stearoyl-ACP desaturase) gene in dried (SS) and moistened maize seeds at 10 °C for 4 (4d) and 7 (7d) days in lines 54, 64 and in the hybrid 64 × 54 and its reciprocal 54 × 64
Fig. 4Expression of the APX (Ascorbate Peroxidase) gene in dry maize seeds (SS) and moistened at 10 °C for 4 (4d) and 7 (7d) days in lines 54, 64 and in the hybrid 64 × 54 and its reciprocal 54 × 64
Fig. 5Expression of the SOD (Superoxide Dismutase) gene in dried maize seeds (SS) and moistened at 10 °C for 4 (4d) and 7 (7d) days in lines 54, 64 and in the hybrid 64 × 54 and its reciprocal 54 × 64
Fig. 6Expression of the ZmMPK5 (Mitogen Activated Protein Kinase) gene in dry maize seeds (SS) and moistened at 10 °C for 4 (4d) and 7 (7d) days in lines 54, 64 and in the hybrid 64 × 54 and its reciprocal 54 × 64
Primers used in the qRT-PCR analysis
| Gene | Identification | Sequence 5′ - > 3’ | GenBank Acession Number | |
|---|---|---|---|---|
| Reference gene | F | AAGGCCAAGATCCAGGACAA | GRMZM2G027378_T01 | |
| R | TTGCTTTCCAGCGAAGATGA | |||
| Putative stearoyl-ACP desaturase | F | GGA TTT CCT CCC TGA CCC A | KU949326 | |
| R | GTC CAT GCC CTC GTC CAA A | |||
| Mitogen Activated Protein Kinase | F | ACTGATGGACCGCAAACC | AB016802 | |
| R | GGGTGACG AGGAAGTTGG | |||
| Superoxide Dismutase/Antioxidant | F | TGGAGCACCAGAAGATGA | X17565 | |
| R | CTCGTGTCC ACCCTTTCC | |||
| Ascorbate Peroxidase/Antioxidant | F | TGAGCGACCAGGACATTG | EU969033 | |
| R | GAGGGCTTTGTCA CTTGGT |
(F) sequence of the forward primer and (R) sequence of the reverse primer