| Literature DB >> 28510859 |
Mariana G Lopez1,2, Cecilia C Xifreda3, Lidia Poggio1, Arturo F Wulff4,5.
Abstract
BACKGROUND: Senecio is the largest genus in the Asteraceae family growing in all environments around the world. It displays taxonomic and systematical difficulties. Cytogenetic knowledge of this genus is ancient, scarce and mainly restricted to chromosome number records.Entities:
Keywords: Chiasmata; Chromosome number; Cytogenetics; Meiotic analysis; Meiotic recombination; Senecio
Year: 2013 PMID: 28510859 PMCID: PMC5432766 DOI: 10.1186/1999-3110-54-20
Source DB: PubMed Journal: Bot Stud ISSN: 1817-406X Impact factor: 2.787
Meiotic analysis and pollen stainability of entities belonging to different Subseries of sect.
| Species | 2n | Meiotic configuration | Chiasmata/cell | Interstitial ch. | Pollen stainability | ||
|---|---|---|---|---|---|---|---|
| M | M | ||||||
|
| |||||||
| 40 | 20 II (92.8%) | 27.5 ± 2.4 | 30 | 4.2 ± 2.3 | 4 | 96.1 - 99.4% | |
| 19 II + 2 I (3.6%) | (z1 = −1.04) | (z2 = 4.99)++ | |||||
| 18 II + 4 I (3.6%) | (0–9) | ||||||
| 40 | 20 II (87.1%) | 24.9 ± 3.5 | 24 | 3.0 ± 2.2 | 2 | 98.4 - 99.6% | |
| 19 II + 2 I (10%) | (z1 = −2.19)++ | (z2 = 5.37)++ | |||||
| 17 II + 1 IV + 2 I (1.45%) | (0–9) | ||||||
| 18 II + 1 III + 1 I (1.45%) | |||||||
| 40 | 20 II (91.7%) | 26.1 ± 2.8 | 29 | 2.6 ± 2.6 | 1 | 97.4 - 98.3% | |
| 19 II + 2 I (8.3%) | (z1 = −1.63) | (z2 = 5.49)++ | |||||
| (0–12) | |||||||
| 40 | 20 II (93.3%) | 29.5 ± 2.0 | 30 | 3.3 ± 2.1 | 4 | 98.90% | |
| 18 II + 4 I (4.5%) | (z1 = −0.11) | (z2 = 5.28)++ | |||||
| 19 II + 2 I (2.2%) | (0–9) | ||||||
| 40 | 20 II (94.45%) | 31.7 ± 3.2 | 33 | 8.8 ± 2.1 | 10 | 92.1 - 98.8% | |
| 19 II + 2 I (1.85%) | (z1 = 0.81) | (z2 = 3.52)++ | |||||
| 18 II + 1 IV (1.85%) | (2–17) | ||||||
| 16 II + 2 IV (1.85%) | |||||||
| 40 | 20 II (100%) | 32.0 ± 2.2 | 31 | 6.7 ± 4.2 | 3 | 83.40% | |
| (z1 = 0.89) | (z2 = 4.20)++ | ||||||
| (1–14) | |||||||
| 40 | 20 II (94.9%) | 30.9 ± 2.4 | 31 | 9.2 ± 3.6 | 8 | 96.7 - 99.5% | |
| 18 II + 1 IV (3.8%) | (z1 = 0.42) | (z2 = 3.40)++ | |||||
| 19 II + 2 I (1.3%) | (2–19) | ||||||
| 40 + 0-1B | 20 II (98.7%) | 33.5 ± 2.1 | 33 | 8.2 ± 3.5 | 10 | 93.7 - 99.6% | |
| 18 II + 1 IV (1.3%) | (z1 = −1.56) | (z2 = 3.74)++ | |||||
| (0–16) | |||||||
| 80 + 0-6B | 40 II (60%) | 47.2 ± 5.8 | 46 | 4.6 ± 3.3 | 2 | 98.5 - 99.5% | |
| 38 II + 1 IV (30%) | (z1 = −3.64)++ | (z2 = 4.86)++ | |||||
| 36 II + 2 IV (10%) | (1–9) | ||||||
| 40 + 0-1B | 20 II (75%) | 27.0 ± 2.6 | 27 | 2.5 ± 2.1 | 1 | 98.3 - 98.7% | |
| 19 II + 2 I (16.7%) | (z1 = −0.99) | (z2 = 5.55)++ | |||||
| 17 II + 6 I (4.15%) | (0–7) | ||||||
| 18 II + 1 IV (4.15%) | |||||||
| 80 + 0-10B | 40 II (36.1%) | 59.7 ± 3.6 | 60 | 10.4 ± 4.2 | 11 | 98.8 - 99.6% | |
| 38 II + 1 IV (22.2%) | (z1 = −0.06) | (z2 = 6.62)++ | |||||
| 36 II + 2 IV (19.4%) | (3–20) | ||||||
| 32 II + 4 IV (8.3%) | |||||||
| 34 II + 3 IV (5.5%) | |||||||
| 38 II + 1 III + 1 I (5.5%) | |||||||
| 32 II + 3 IV + 4 I (3%) | |||||||
| 40 | 20 II (96.6%) | 30.4 ± 1.6 | 30 | 4.9 ± 2.1 | 5 | 81.6 - 98.6% | |
| 19 II + 2 I (3.4%) | (z1 = 0.23) | (z2 = 4.76)++ | |||||
| (1–10) | |||||||
| 40 | without data | 99.40% | |||||
| 40 + 0-6B | 20 II (85.8%) | 28.8 ± 2.5 | 30 | 4.6 ± 2.4 | 4 | 98.2 -98.7% | |
| 18 II + 1 IV (7.1%) | (z1 = −0.48) | (z2 = 4.88)++ | |||||
| 16 II + 2 IV (3.1%) | (0–13) | ||||||
| 19 II + 2 I (2%) | |||||||
| 18 II + 4 I (1%) | |||||||
| 15 II + 1 IV + 1 VI (1%) | |||||||
| 40 | 20 II (100%) | 24.5 ± 3.0 | 27 | 1.2 ± 1.5 | 0 | 71.50% | |
| (z1 = −2.46)++ | (z2 = 5.93)++ | ||||||
| (0–3) | |||||||
| 80 + 0-9B | 38 II + 1 IV (34.9%) | 54.4 ± 6.6 | 55 | 5.3 ± 3.7 | 3 | 90 - 95% | |
| 40 II (27.8%) | (z1 = −1.57) | (z2 = 7.75)++ | |||||
| 36 II + 2 IV (12%) | (1–14) | ||||||
| 34 II + 3 IV (4.6%) | |||||||
| 30 II + 5 IV (4.6%) | |||||||
| 37 II + 1 IV + 2 I (2.3%) | |||||||
| 39 II + 2 I (2.3%) | |||||||
| 38 II + 4 I (2.3%) | |||||||
| 35 II + 1 VI + 1 IV (2.3%) | |||||||
| 35 II + 1 IV + 2 III (2.3%) | |||||||
| 35 II + 2 IV + 2 I (2.3%) | |||||||
| 32 II + 4 IV(2.3%) | |||||||
| S. subulatus var. | 80 | 34 II + 3 IV (50%) | 62.0 ± 4.8 | 54 | 11.5 ± 3.6 | 16 | 98.50% |
| 36 II + 2 IV (30%) | (z1 = 0.76) | (z2 = 6.36)++ | |||||
| 32 II + 4 IV (20%) | (7–16) | ||||||
| 40 + 0-1B | 20 II (95.1%) | 21.1 ± 4.1 | 25 | 3.4 ± 2.8 | 1 | 90 - 99.3% | |
| 19 II + 2 I (3.7%) | (z1 = −1.25) | (z2 = 5.23)++ | |||||
| 18 II + 1 IV (1.2%) | (0–13) | ||||||
| 80 | 38 II + 1 IV (25%) | 55.9 ± 3.2 | 58 | 7.3 ± 4.5 | 5 | 90 - 99.4% | |
| 34 II + 3 IV (25%) | (z1 = −1.01) | (z2 = 7.30)++ | |||||
| 36 II + 2 IV (18.75%) | (1–20) | ||||||
| 40 II (6.25%) | |||||||
| 32 II + 4 IV (6.25%) | |||||||
| 39 II + 2 I (6.25%) | |||||||
| 37 II + 1 IV + 2 I (6.25%) | |||||||
| 32 II + 3 IV + 4 I (6.25%) | |||||||
| 80 + 0-5B | 40 II (34.1%) | 52.7 ± 5.8 | 52 | 7.6 ± 4.8 | 5 | 72.9 - 99.9% | |
| 38 II + 1 IV (21.95%) | (z1 = −2.21)++ | (z2 = 7.23)++ | |||||
| 36 II + 2 IV (20.32%) | (0–21) | ||||||
| 34 II + 3 IV (4.95%) | |||||||
| 39 II + 2 I (3.25%) | |||||||
| 37 II + 1 IV + 2 I (3.25%) | |||||||
| 34 II + 2 IV + 1 III + 1 I (1.63%) | |||||||
| 35 II + 2 IV + 2 I (1.63%) | |||||||
| 32 II + 4 IV (1.63%) | |||||||
| 38 II + 4 I (0.81%) | |||||||
| 36 II + 1 IV + 4 I (0.81%) | |||||||
| 33 II + 3 IV + 2 I (0.81%) | |||||||
| 33 II + 2 IV + 2 III (0.81%) | |||||||
| 33 II + 1 VI + 2 IV (0.81%) | |||||||
| 32 II + 3 IV + 4 I (0.81%) | |||||||
| 31 II + 1 X + 2 IV (0.81%) | |||||||
| 31 II + 1VI + 2 IV + 1 III + 1 I (0.81%) | |||||||
| 30 II + 5 IV (0.81%) | |||||||
|
| |||||||
| 40 + 0-1B | 20 II (94.4%) | 31.4 ± 3.0 | 32 | 5.6 ± 3.0 | 6 | 94.1 - 99.7% | |
| 18 II + 1 IV (3.5%) | (z1 = 0.68) | (z2 = 4.56)++ | |||||
| 19 II + 2 I (2.1%) | (0–13) | ||||||
| 80 + 0-2B | 34 II + 3 IV (21.1%) | 58.7 ± 2.2 | 61 | 13.7 ± 3.9 | 12 | 98.90% | |
| 32 II + 4 IV (21%) | (z1 = 0.08) | (z2 = 5.88)++ | |||||
| 40 II (10.4%) | (8–21) | ||||||
| 38 II + 1 IV (10.4%) | |||||||
| 39 II + 2 I (5.3%) | |||||||
| 36 II + 2 IV (5.3%) | |||||||
| 36 II + 1 IV + 1 III + 1 I (5.3%) | |||||||
| 30 II + 5 IV (5.3%) | |||||||
| 30 II + 4 IV + 1 III + 1 I (5.3%) | |||||||
| 28 II + 5 IV + 1 III + 1 I (5.3%) | |||||||
| 24 II + 7 IV + 1 III + 1 I (5.3%) | |||||||
|
| |||||||
| 40 | 20 II (100%) | 27.9 ± 2.6 | 28 | 6.0 ± 2.3 | 7 | 91.50% | |
| (z1 = −0.94) | (z2 = 4.43)++ | ||||||
| (2–9) | |||||||
| 40 + 0-2B | 20 II (98.2%) | 24.8 ± 3.1 | 21 | 3.7 ± 2.2 | 4 | 97.8 - 99.8% | |
| 19 II + 2 I (1.8%) | (z1 = −2.31)++ | (z2 = 5.15)++ | |||||
| (0–10) | |||||||
| 40 | 20 II (75.7%) | 24.1 ± 2.6 | 24 | 4.2 ± 2.3 | 4 | 97.5 - 99.5% | |
| 19 II + 2 I (10.8%) | (z1 = −2.36)++ | (z2 = 5.01)++ | |||||
| 18 II + 1 IV (8.1%) | (0–9) | ||||||
| 18 II + 4 I (5.4%) | |||||||
| 40 + 0-7B | 20 II (90%) | 28.4 ± 2.9 | 29 | 3.8 ± 2.0 | 3 | 98.60% | |
| 19 II + 2 I (6.7%) | (z1 = −0.64) | (z2 = 5.12) ++ | |||||
| 18 II + 1 IV (3.3%) | (0–9) | ||||||
| 40 | 20 II (87%) | 28.0 ± 2.6 | 28 | 3.2 ± 2.3 | 5 | without data | |
| 19 II + 2 I (8.7%) | (z1 = −0.82) | (z2 = 5.32)++ | |||||
| 18 II + 1 III + 1 I (2.15%) | (0–9) | ||||||
| 18 II + 1 IV (2.15%) | |||||||
| 40 | 20 II (92.7%) | 25.1 ± 3.0 | 24 | 4.8 ± 2.0 | 6 | 94.4 - 99.1% | |
| 16 II + 2 IV (4.9%) | (z1 = −2.16)++ | (z2 = 4.82)++ | |||||
| 18 II + 1 IV (2.4%) | (1–10) | ||||||
|
| |||||||
| 40 | 20 II (88.2%) | 25.8 ± 2.8 | 26 | 4.2 ± 2.2 | 2 | without data | |
| 19 II + 2 I (5.9%) | (z1 = −1.73) | (z2 = 4.98)++ | |||||
| 18 II + 4 I (5.9%) | (1–9) | ||||||
In the first column. numbers in parentheses indicate the number of individuals and cells. respectively. analyzed in each taxon. Chromosome number (2n); meiotic configurations and corresponding percentage. Media (). standard deviation (sd) and mode (M) of total chiasmata per cell and interstitial chiasmata (interstitical ch.). range of instestitial chiasmata in parentheses. both statistics values z1 and z2 and percentage of pollen stainability are shown.
*chromosome record already published by the authors.
**new chromosome record.
++significant values (p < 0.05).
z1: proportion of open bivalents. z2: proportion of interstitial chiasmata.
Figure 1Cytogenetic analysis of sect. taxa. A: S. eruciformis var. brachycephalus, diakinesis with 19 II + 2 I. B: S. eruciformis var. eruciformis, metaphase I with 20 II. C: S. grisebachii var. schizotus, diakinesis with 16 II + 1IV + 4 I. D: S. linariifolius var. subtomentosus, diakinesis with 18 II + 1 III + 1 I. E: S. glaber, diakinesis with 20 II. F: S. riojanus, prometaphase II with 20 chromosomes in each pole. G: S. ganganensis, prometaphase I with 20 II. H: S. goldsackii, metaphase I with 20 II. I: S. grisebachii var. leptotus, diakinesis with 20 II + 3 B chromosomes (1 IIB + 1 IB). J: S. brasiliensis var. tripartitus, diakinesis with 20 II. K: S. melanopotamicus, diakinesis with 20 II. L S. subulatus var. salsus, diakinesis with 34 II + 3 IV. M: S. viridis var. viridis, prometaphase I with 27 II + 5 IV + 1 III + 3 I, displaying evident secondary association of bivalents. N: S. microphyllus, metaphase I with 38 II + 1 IV + 2 IB. O: S. subulatus var erectus cytotype 2n = 40, late metaphase I with 20 II. P: S. subulatus var. erectus cytotype 2n = 80, diakinesis with 30 II + 5 IV. Asterisks indicate secondary association of bivalents; white triangles indicate univalents (I); line arrows indicate heteromorphic bivalents; black triangles indicate quadrivalents (IV); tick white arrows indicate trivalents (III); thick black arrows indicate B chromosomes; c: close bivalents; qi: interstitial chiasmata. Bars = 10 μm.
Figure 2Meiotic behavior of sect. taxa. A: S. melanopotamicus, diakinesis with 20 II, arrow indicate chromosome breakage. B: S. goldsackii, metaphase I, 1 II and 2 I out of plate. C: S. melanopotamicus, telophase I, a chromosome not included in a pole. D: S. microphyllus, prophase II with A and B (arrows) chromosomes not included in cell poles. E: S. goldsackii, telophase II with a bridge. F-G: S. subulatus var. erectus, F: microsporocyte with one big micronucleus (A chromosome); G: microsporocyte with one small micronucleus (arrow, B chromosome). H: S. ganganensis, telophase II with micronuclei. I: S. eruciformis var. brachycephalus, tetrads with one micronucleus. Bars = 10 μm.