Chin J Plant Ecol ›› 2023, Vol. 47 ›› Issue (12): 1708-1717.DOI: 10.17521/cjpe.2022.0470
• Research Articles • Previous Articles Next Articles
ZHANG Qi1, Yeerjiang BAIKETUERHAN2, WANG Juan1,*()
Received:
2022-11-18
Accepted:
2023-04-06
Online:
2023-12-20
Published:
2023-04-20
Contact:
*(wangjuan@bjfu.edu.cn)
Supported by:
ZHANG Qi, Yeerjiang BAIKETUERHAN, WANG Juan. Gender dimorphism in nutritional resource requirements of dioecious tree species Rhamnus schneideri var. manshurica[J]. Chin J Plant Ecol, 2023, 47(12): 1708-1717.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.plant-ecology.com/EN/10.17521/cjpe.2022.0470
性别 Sex | 2019年花期 Flower period in 2019 | 2019年果期 Fruit period in 2019 | 2020年果期 Fruit period in 2020 | 2021年花期 Flower period in 2021 | 2021年果期 Fruit period in 2021 |
---|---|---|---|---|---|
雌株 Female | 37 | 33 | 32 | 32 | 30 |
雄株 Male | 14 | 10 | 9 | 30 | 30 |
合计 Total | 51 | 43 | 41 | 62 | 60 |
Table 1 Individual number of Rhamnus schneideri var. manshurica surveyed in each stage of reproduction
性别 Sex | 2019年花期 Flower period in 2019 | 2019年果期 Fruit period in 2019 | 2020年果期 Fruit period in 2020 | 2021年花期 Flower period in 2021 | 2021年果期 Fruit period in 2021 |
---|---|---|---|---|---|
雌株 Female | 37 | 33 | 32 | 32 | 30 |
雄株 Male | 14 | 10 | 9 | 30 | 30 |
合计 Total | 51 | 43 | 41 | 62 | 60 |
变异来源 Source of variation | 氮 N | 磷 P | 钾 K | 钙 Ca | 镁 Mg | 铁 Fe | 硼 B | |||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
F | p | F | p | F | p | F | p | F | p | F | p | F | p | |
性别 Sex | 0.42 | 0.517 | 1.22 | 0.271 | 0.27 | 0.606 | 0.57 | 0.450 | 0.30 | 0.584 | 0.45 | 0.502 | 0.51 | 0.476 |
繁殖阶段 Stages of reproduction | 83.92 | <0.001 | 32.44 | <0.001 | 74.03 | <0.001 | 87.42 | <0.001 | 77.31 | <0.001 | 89.52 | <0.001 | 86.47 | 0.000 |
性别×繁殖阶段 Sex × stages of reproduction | 2.47 | 0.045 | 7.41 | <0.001 | 4.28 | 0.002 | 2.16 | 0.074 | 4.3 | 0.002 | 3.27 | 0.012 | 2.70 | 0.031 |
Table 2 Effects of gender and reproduction stage on nutrient contents in leaves of Rhamnus schneideri var. manshurica
变异来源 Source of variation | 氮 N | 磷 P | 钾 K | 钙 Ca | 镁 Mg | 铁 Fe | 硼 B | |||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
F | p | F | p | F | p | F | p | F | p | F | p | F | p | |
性别 Sex | 0.42 | 0.517 | 1.22 | 0.271 | 0.27 | 0.606 | 0.57 | 0.450 | 0.30 | 0.584 | 0.45 | 0.502 | 0.51 | 0.476 |
繁殖阶段 Stages of reproduction | 83.92 | <0.001 | 32.44 | <0.001 | 74.03 | <0.001 | 87.42 | <0.001 | 77.31 | <0.001 | 89.52 | <0.001 | 86.47 | 0.000 |
性别×繁殖阶段 Sex × stages of reproduction | 2.47 | 0.045 | 7.41 | <0.001 | 4.28 | 0.002 | 2.16 | 0.074 | 4.3 | 0.002 | 3.27 | 0.012 | 2.70 | 0.031 |
Fig. 1 Dynamic changes of nutrient contents in leaves of male and female Rhamnus schneideri var. manshurica in flower periods (mean ± SD). Different uppercase letters indicate significant differences between male and female plants (p < 0.05), and different lowercase letters indicate significant differences between years (p < 0.05). B, boron; Ca, calcium; Fe, ferrum; K, potassium; Mg, magnesium; N, nitrogen; P, phosphorus.
Fig. 2 Dynamic changes of nutrient contents in leaves of male and female Rhamnus schneideri var. manshurica in fruit periods (mean ± SD). Different uppercase letters indicate significant differences between male and female plants (p < 0.05), and different lowercase letters indicate significant differences between years (p < 0.05). B, boron; Ca, calcium; Fe, ferrum; K, potassium; Mg, magnesium; N, nitrogen; P, phosphorus.
Fig. 3 Differences in flower biomass and flower number between male and female Rhamnus schneideri var. manshurica at different stages of reproduction. A, B, Flower period in 2019. C, D, Flower period in 2021.
年份 year | 株数 Tree number | 果生物量 Fruit biomass (g) | 果数 Fruit number |
---|---|---|---|
2019 | 33 | 0.14 ± 0.04b | 9.08 ± 2.67b |
2020 | 32 | 0.71 ± 0.26a | 37.21 ± 13.73a |
2021 | 30 | 0.31 ± 0.11ab | 12.74 ± 4.76b |
总计 Total | 95 | 0.39 ± 0.10 | 19.71 ± 5.07 |
Table 3 Differences in fruit biomass and fruit number of female Rhamnus schneideri var. manshurica in fruit stage (mean ± SE)
年份 year | 株数 Tree number | 果生物量 Fruit biomass (g) | 果数 Fruit number |
---|---|---|---|
2019 | 33 | 0.14 ± 0.04b | 9.08 ± 2.67b |
2020 | 32 | 0.71 ± 0.26a | 37.21 ± 13.73a |
2021 | 30 | 0.31 ± 0.11ab | 12.74 ± 4.76b |
总计 Total | 95 | 0.39 ± 0.10 | 19.71 ± 5.07 |
性别 Sex | 全氮 Total nitrogen (g·kg-1) | 全磷 Total phosphorus (g·kg-1) | 全钾 Total potassium (g·kg-1) |
---|---|---|---|
雌株 Female | 1.97 ± 0.02 | 0.80 ± 0.01 | 1.41 ± 0.00 |
雄株 Male | 1.96 ± 0.02 | 0.80 ± 0.01 | 1.41 ± 0.00 |
p | 0.622 | 0.974 | 0.408 |
Table 4 Soil (0-10 cm) element content and differences between male and female plants of Rhamnus schneideri var. manshurica (mean ± SE)
性别 Sex | 全氮 Total nitrogen (g·kg-1) | 全磷 Total phosphorus (g·kg-1) | 全钾 Total potassium (g·kg-1) |
---|---|---|---|
雌株 Female | 1.97 ± 0.02 | 0.80 ± 0.01 | 1.41 ± 0.00 |
雄株 Male | 1.96 ± 0.02 | 0.80 ± 0.01 | 1.41 ± 0.00 |
p | 0.622 | 0.974 | 0.408 |
[1] |
Ågren GI, Wetterstedt JÅM, Billberger MFK (2012). Nutrient limitation on terrestrial plant growth—Modeling the interaction between nitrogen and phosphorus. New Phytologist, 194, 953-960.
DOI URL |
[2] | Ågren J, Danell K, Elmqvist T, Ericson L, Hjältén J (1999). Sexual dimorphism and biotic interactions//Geber MA, Dawson TE, Delph LF. Gender and Sexual Dimorphism in Flowering Plants. Springer, Berlin. 217-246. |
[3] |
Aschan G, Pfanz H (2003). Non-foliar photosynthesis—A strategy of additional carbon acquisition. Flora, 198, 81-97.
DOI URL |
[4] |
Ashman TL (1994). A dynamic perspective on the physiological cost of reproduction in plants. The American Naturalist, 144, 300-316.
DOI URL |
[5] |
Bullock SH (1984). Biomass and nutrient allocation in a neotropical dioecious palm. Oecologia, 63, 426-428.
DOI PMID |
[6] | Chen LH, Dong TF, Duan BL (2014). Sex-specific carbon and nitrogen partitioning under N deposition in Populus cathayana. Trees, 28, 793-806. |
[7] | Chen YL, Zhou BK (1982). Flora of China. Tomus 48(1). Rhamnaceae. Science Press, Beijing. |
[ 陈艺林, 周邦楷 (2004). 中国植物志. 第四十八卷(第一分册). 鼠李科. 科学出版社, 北京.] | |
[8] |
Cipollini ML, Stiles EW (1991). Costs of reproduction in Nyssa sylvatica: sexual dimorphism in reproductive frequency and nutrient flux. Oecologia, 86, 585-593.
DOI PMID |
[9] | Dawson TE, Geber MA (1999). Sexual dimorphism in physiology and morphology//Geber MA, Dawson TE, Delph LF. Gender and Sexual Dimorphism in Flowering Plants. Springer, Berlin. 175-215. |
[10] |
de Marco A, Vittozzi P, de Santo AV (2023). Elements dynamics, from leaf to stable leaf litter residue and soil, for two functional types of tree planted on volcanic deposits. Plant and Soil, 482, 127-140.
DOI |
[11] | Delph LF (1999). Sexual dimorphism in life history//Geber MA, Dawson TE, Delph LF. Gender and Sexual Dimorphism in Flowering Plants. Springer, Berlin. 149-173. |
[12] |
Ehlers BK, Thompson JD (2004). Temporal variation in sex allocation in hermaphrodites of gynodioecious Thymus vulgaris L. Journal of Ecology, 92, 15-23.
DOI URL |
[13] | Gao M, Chen YC, Wu LW, Wang YD (2019). Dynamic patterns of sex-specific difference of water and nitrogen use efficiency in Litsea cubeba. Scientia Silvae Sinicae, 55(4), 62-68. |
[ 高暝, 陈益存, 吴立文, 汪阳东 (2019). 山鸡椒水分及氮素利用效率性别特异性动态. 林业科学, 55(4), 62-68.] | |
[14] |
García MB, Antor RJ (1995). Sex ratio and sexual dimorphism in the dioecious Borderea pyrenaica (Dioscoreaceae). Oecologia, 101, 59-67.
DOI PMID |
[15] |
Hemborg ÅM (1999). Sexual differences in biomass and nutrient allocation of first-year Silene dioica plants. Oecologia, 118, 453-460.
DOI PMID |
[16] | Huang KS, Pan XF, Ou J, Zeng XY, Liao JM, Liang WH (2021). Variation of nutrient elements content in leaves of different varieties of Illicium verum at flowering and fruit-setting stage and regularity of flowers and fruits dropping. Journal of West China Forestry Science, 50(6), 1-7. |
[ 黄开顺, 潘晓芳, 欧军, 曾祥艳, 廖健明, 梁文汇 (2021). 不同品种八角开花坐果期叶片营养元素含量变化及落花落果规律. 西部林业科学, 50(6), 1-7.] | |
[17] |
Jiang H, Zhang S, Lei YB, Xu G, Zhang D (2016). Alternative growth and defensive strategies reveal potential and gender specific trade-offs in dioecious plants Salix paraplesia to nutrient availability. Frontiers in Plant Science, 7, 1064. DOI: 10.3389/fpls.2016.01064.
PMID |
[18] |
Kachi N, Hirose T (1983). Limiting nutrients for plant growth in coastal sand dune soils. Journal of Ecology, 71, 937-944.
DOI URL |
[19] | Li H, C Crabbe MJ, Xu F, Wang W, Ma L, Niu R, Gao X, Li X, Zhang P, Ma X, Chen H (2017). Seasonal variations in carbon, nitrogen and phosphorus concentrations and C:N:P stoichiometry in different organs of a Larix principis-rupprechtii Mayr. plantation in the Qinling Mountains, China. PLoS ONE, 12, e0185163. DOI: 10.1371/journal.pone.0185163. |
[20] | Li Z, Wu N, Liu T, Tang M, Chen H (2020). Gender-related responses of dioecious plant Populus cathayana to AMF, drought and planting pattern. Scientific Reports, 10, 11530. DOI: 10.1038/s41598-020-68112-0. |
[21] | Liu M, Ma ZG, Wang W, Zhang JL (2018). Dynamic variation and resorption efficiencies of foliar nutrients in Fraxinus pennysylvanica street tree. Tianjin Agricultural Sciences, 24(8), 74-76. |
[ 刘明, 马作国, 王武, 张金龙 (2018). 洋白蜡行道树叶片养分动态及再吸收特征. 天津农业科学, 24(8), 74-76.] | |
[22] |
Mahajan G, Chauhan BS, Timsina J, Singh PP, Singh K (2012). Crop performance and water- and nitrogen-use efficiencies in dry-seeded rice in response to irrigation and fertilizer amounts in northwest India. Field Crops Research, 134, 59-70.
DOI URL |
[23] |
McDowell SCL, McDowell NG, Marshall JD, Hultine K (2000). Carbon and nitrogen allocation to male and female reproduction in Rocky Mountain Douglas-fir (Pseudotsuga menziesii var. glauca, Pinaceae). American Journal of Botany, 87, 539-546.
PMID |
[24] |
Montesinos D, Villar-Salvador P, García-Fayos P, Verdú M (2012). Genders in Juniperus thurifera have different functional responses to variations in nutrient availability. New Phytologist, 193, 705-712.
DOI PMID |
[25] |
Ning P, Li S, Yu P, Zhang Y, Li CJ (2013). Post-silking accumulation and partitioning of dry matter, nitrogen, phosphorus and potassium in maize varieties differing in leaf longevity. Field Crops Research, 144, 19-27.
DOI URL |
[26] | Nowak-Dyjeta K, Giertych MJ, Thomas P, Iszkuło G (2017). Males and females of Juniperus communis L. and Taxus baccata L. show different seasonal patterns of nitrogen and carbon content in needles. Acta Physiologiae Plantarum, 39, 191. DOI: 10.1007/s11738-017-2489-3. |
[27] |
Obeso JR (2002). The costs of reproduction in plants. New Phytologist, 155, 321-348.
DOI PMID |
[28] |
Pearse IS, Koenig WD, Kelly D (2016). Mechanisms of mast seeding: resources, weather, cues, and selection. New Phytologist, 212, 546-562.
DOI PMID |
[29] | Pers-Kamczyc E, Mąderek E, Kamczyc J (2022). Seed quantity or quality?—Reproductive responses of females of two dioecious woody species to long-term fertilisation. International Journal of Molecular Sciences, 23, 3187. DOI: 10.3390/ijms23063187. |
[30] |
Pickup M, Barrett SCH (2012). Reversal of height dimorphism promotes pollen and seed dispersal in a wind-pollinated dioecious plant. Biology Letters, 8, 245-248.
DOI PMID |
[31] | Rabska M, Pers-Kamczyc E, Żytkowiak R, Adamczyk D, Iszkuło G (2020). Sexual dimorphism in the chemical composition of male and female in the dioecious tree, Juniperus communis L., growing under different nutritional conditions. International Journal of Molecular Sciences, 21, 8094. DOI: 10.3390/ijms21218094. |
[32] | Rabska M, Warwick NWM, Iszkuło G, Gross CL (2021). Intersexual differences in leaf size and shape in dioecious Adriana tomentosa. Journal of Plant Ecology, 14, 67-83. |
[33] |
Robakowski P, Pers-Kamczyc E, Ratajczak E, Thomas PA, Ye ZP, Rabska M, Iszkuło G (2018). Photochemistry and antioxidative capacity of female and male Taxus baccata L. acclimated to different nutritional environments. Frontiers in Plant Science, 9, 742. DOI: 10.3389/fpls. 2018.00742.
PMID |
[34] |
Sánchez Vilas J, Pannell JR (2011). Sexual dimorphism in resource acquisition and deployment: both size and timing matter. Annals of Botany, 107, 119-126.
DOI PMID |
[35] | Sánchez Vilas J, Retuerto R (2017). Sexual dimorphism in water and nitrogen use strategies in Honckenya peploides: timing matters. Journal of Plant Ecology, 10, 702-712. |
[36] | Song AY, Dong LS, Chen JX, Peng L, Liu JT, Xia JB, Chen YP (2019). Comparation of seasonal dynamics of mineral elements contents in different organs of male and female plants of Fraxinus velutina. Scientia Silvae Sinicae, 55(10), 162-170. |
[ 宋爱云, 董林水, 陈纪香, 彭玲, 刘京涛, 夏江宝, 陈印平 (2019). 绒毛白蜡雌雄株不同器官矿质元素季节动态的比较. 林业科学, 55(10), 162-170.] | |
[37] |
Song HF, Cai ZY, Liao J, Tang DT, Zhang S (2019). Sexually differential gene expressions in poplar roots in response to nitrogen deficiency. Tree Physiology, 39, 1614-1629.
DOI PMID |
[38] |
Teitel Z, Pickup M, Field DL, Barrett SCH (2016). The dynamics of resource allocation and costs of reproduction in a sexually dimorphic, wind-pollinated dioecious plant. Plant Biology, 18, 98-103.
DOI PMID |
[39] |
Wang J, Zhang C, Zhao X,von Gadow K (2014). Reproductive allocation of two dioecious Rhamnus species in temperate forests of northeast China. Iforest - Biogeosciences and Forestry, 7, 25-32.
DOI URL |
[40] | Wang LB, Huang YH, Fan CY, Zhang XN, Wang J (2020). Study on gender differentiation of reproduction cost in Rhamnus schneideri var. manshurica. Journal of Central South University of Forestry & Technology, 40(12), 69-74. |
[ 王俪玢, 黄云浩, 范春雨, 张新娜, 王娟 (2020). 东北鼠李生殖耗费的性别分异研究. 中南林业科技大学学报, 40(12), 69-74.] | |
[41] |
Xia Z, He Y, Yu L, Lv R, Korpelainen H, Li C (2020). Sex-specific strategies of phosphorus (P) acquisition in Populus cathayana as affected by soil P availability and distribution. New Phytologist, 225, 782-792.
DOI URL |
[42] |
Yu K, Fan QL, Wang Y, Wei JR, Ma Q, Yu D, Li JR (2013). Function of leafy sepals in Paris polyphylla: photosynthate allocation and partitioning to the fruit and rhizome. Functional Plant Biology, 40, 393-399.
DOI URL |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 444
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 538
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Copyright © 2022 Chinese Journal of Plant Ecology
Tel: 010-62836134, 62836138, E-mail: apes@ibcas.ac.cn, cjpe@ibcas.ac.cn