| Literature DB >> 20926551 |
Sheng Zhang1, Hao Jiang, Shuming Peng, Helena Korpelainen, Chunyang Li.
Abstract
Low temperature is one of the abiotic factors limiting plant growth and productivity. Yet, knowledge about sex-related responses to low temperature is very limited. In our study, the effects of low, non-freezing temperature on morphological, physiological, and ultrastructural traits of leaves inEntities:
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Year: 2010 PMID: 20926551 PMCID: PMC3003813 DOI: 10.1093/jxb/erq306
Source DB: PubMed Journal: J Exp Bot ISSN: 0022-0957 Impact factor: 6.992
Fig. 1.The morphological traits of P. cathayana leaves after 14 d of chilling stress.
Results of multivariate analysis of variance (MANOVA) on all growth, physiological and biochemical data in P. cathayana males and females
| Effect | Test statistic | Value | Hypothesis df | Error df | Significance | |
| Sex | Pillai's Trace | 1.000 | 2.682E3 | 11.000 | 2.000 | 0.000 |
| Wilks’ Lambda | 0.000 | 2.682E3 | 11.000 | 2.000 | 0.000 | |
| Hotelling's Trace | 1.475E4 | 2.682E3 | 11.000 | 2.000 | 0.000 | |
| Roy's Largest Root | 1.475E4 | 2.682E3 | 11.000 | 2.000 | 0.000 | |
| Temperature | Pillai's Trace | 1.996 | 132.460 | 22.000 | 6.000 | 0.000 |
| Wilks’ Lambda | 0.000 | 1.647E3 | 22.000 | 4.000 | 0.000 | |
| Hotelling's Trace | 3.372E5 | 1.533E4 | 22.000 | 2.000 | 0.000 | |
| Roy's Largest Root | 3.369E5 | 9.189E4 | 11.000 | 3.000 | 0.000 | |
| Sex×Temperature | Pillai's Trace | 1.974 | 20.527 | 22.000 | 6.000 | 0.001 |
| Wilks’ Lambda | 0.000 | 1.480E2 | 22.000 | 4.000 | 0.000 | |
| Hotelling's Trace | 1.743E4 | 792.203 | 22.000 | 2.000 | 0.001 | |
| Roy's Largest Root | 1.739E4 | 4.743E3 | 11.000 | 3.000 | 0.000 |
Exact statistic.
The statistic is an upper bound of F that yields a lower bound for the significance level.
Fig. 2.The height and base stem increases in males and females of P. cathayana at 25, 15, and 4 °C during 14 d of treatment. (This figure is available in colour at JXB online.)
The gas exchange parameters and chlorophyll pigment concentrations in male and female leaves of P. cathayana as affected by temperature (25, 15, and 4 °C)
| Parameters | 25 °C males | 25 °C females | 15 °C males | 15 °C females | 4 °C males | 4 °C females | |||
| 16.19±0.75 bc | 16.79±0.70 c | 15.72±0.64 bc | 13.90±0.50 b | 2.99±0.13 a | 1.10±0.19 a | 0.027* | 0.000** | 0.059 | |
| 0.45±0.01 d | 0.51±0.05 d | 0.44±0.02 cd | 0.34±0.02 c | 0.17±0.01 b | 0.04±0.00 a | 0.035* | 0.000** | 0.017* | |
| 400.29±4.97 a | 406.67±7.60 ab | 416.97±7.41 ab | 419.44±3.90 ab | 433.13±6.79 bc | 445.33±6.22 c | 0.304 | 0.001** | 0.836 | |
| 5.98±0.10 d | 6.44±0.24 d | 3.19±0.27 c | 2.96±0.24 c | 1.72±0.11 b | 0.66±0.07 a | 0.188 | 0.000** | 0.021* | |
| 25.60±1.18 bc | 25.44±1.01 bc | 25.99±0.92 c | 25.89± 1.17 c | 24.11±1.32 b | 20.98±0.79 a | 0.002** | 0.000** | 0.001** | |
| 20.08±1.16 c | 15.39±0.71 b | 14.25±0.72 b | 15.62±0.77 b | 8.78±0.15 a | 5.98±0.39 a | 0.014* | 0.000** | 0.001** | |
| 4.04±0.11 a | 4.30±0.25 ab | 4.57±0.35 ab | 3.66±0.14 a | 5.79±0.19 b | 5.59±0.33 b | 0.174 | 0.000** | 0.125 | |
| 45.70±1.08 d | 40.82±0.70 c | 40.26±1.14 c | 41.42±0.94 cd | 32.86±0.31 b | 26.97±1.18 a | 0.001** | 0.000** | 0.001** | |
| 1.28±0.83 a | 1.66±0.08 ab | 1.85±0.15 b | 1.65±0.04 ab | 2.75±0.07 c | 3.52±0.10 d | 0.002** | 0.000** | 0.000** |
Each value is the mean ±SE. Fs, sex effect; Ft, temperature effect; Fs×t, sex and temperature interaction effect; Fw, fresh weight; *, 0.01
Fig. 3.Relative electrolyte leakage (REL) of cellular membrane in male and female leaves of P. cathayana as affected by temperature (open squares, 25 °C; hatched squares, 15 °C; closed squares, 4 °C). Fs, sex effect; Ft, temperature effect; Fs×t, sex and temperature interaction effect.
Fig. 4.The contents of TBARS (A), proteins (B), proline (C), and soluble sugars (D) in male and female leaves of P. cathayana as affected by temperature (open squares, 25 °C; hatched squares, 15 °C; closed squares, 4 °C. Fs, sex effect; Ft, temperature effect; Fs×t, sex and temperature interaction effect; Fw, fresh weight. The bars with different letters are significantly different from each other (P ≤0.05). Each value is the mean ±SE (n=3).
Fig. 5.The production rate of (A), H2O2 content (B), and the activities of SOD, APX, POD, and GR in male and female leaves of P. cathayana as affected by temperature (open squares, 25 °C; hatched squares, 15 °C; closed squares, 4 °C). Fs, sex effect; Ft, temperature effect; Fs×t, sex and temperature interaction effect; Fw, fresh weight. The bars with different letters are significantly different from each other (P ≤0.05). Each value is the mean ±SE (n=3).
Fig. 6.Transmission electron micrographs of mesophyll cells of P. cathayana males and females under different temperatures. (A) 25 °C, males; (B) 25 °C, females; (C) 15 °C, males; (D) 15 °C, females; (E) 4 °C, males; (F) 4 °C, females. Ch, chloroplast; Gr, granum; M, mitochondrion; N, nucleolus; Nu, nucleus; P, plastoglobule; SG, starch grain; V, vacuole; vs, small vesicle.
Fig. 7.Ultrastructure of chloroplast in P. cathayana males and females under different temperatures. (A) 25 °C, males; (B) 25 °C, females; (C) 15 °C, males; (D) 15 °C, females; (E) 4 °C, males; (F) 4 °C, females. Gr, granum; M, mitochondrion; P, plastoglobule; SG, starch grain; V, vacuole; vs, small vesicle; pm, plasmalemma.