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Starch Content in Shoot Tissues of Different Spruce Species (Picea A. Dietr.) in Introduction

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N.N. Besschetnova, V.P. Besschetnov, A.V. Kul'kova,  I.V. Mishukova

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UDС

UDС 630*232.12:582.475.2

DOI:

10.17238/issn0536-1036.2017.4.57

Abstract

Introduction is one of the most effective methods of afterculture of local dendroflora with valuable plant species. To diagnose the success of plants introduction we should clarify the nature of their adaptation to the new growth conditions. The composition and the ratio of reserve constituents and metabolites in tissue cells are highly important for assessing the plant establishment. Starch is the most important reserve constituent in the development of woody plants. The increase of temperature significantly affects the content of this nutrient. The increase of the starch content of tissue cells is associated with the release of plants from quiescence and preparation for the growing season. We have investigated the biological specificity of 13 spruce species,introduced in the Nizhny Novgorod region, and have established their heterogeneity in the starch content in tissue cells of the annual shoots, which could have the adaptation significance. Determination of starch in tissue cells of the annual shoots was detected by the Lugol staining reaction. Sections after staining with appropriate reagents and fixation were analyzed using a micrometer “Mikmed-2”. The estimation of the content of reserve constituents on the transverse section of the shoot was given for each accounting area separately and in the score in all accounting areas. Statistical and dispersion analyses were performed according to the common methods. We calculated the mean values for each botanical species included in the analysis scheme. The ratio between the species of the genus Spruce by the starch content in different tissues was not the same. The differences between the exotic species appeared under the same environmental conditions. The variance analysis confirmed the significance of differences between the studied spruce species in the starch content.

Authors

N.N. Besschetnova1, Doctor of Agricultural Sciences, Associate Professor V.P. Besschetnov1, Doctor of Biological Sciences, Professor A.V. Kul'kova1, Postgraduate Student I.V. Mishukova2, Leading Biologist

Affiliation

1State agricultural academy of Nizhny Novgorod, pr. Gagarina, 97, Nizhny Novgorod, 603107, Russian Federation; e-mail: lesfak@bk.ru
2Botanical Garden of the N.I. Lobachevsky State University of Nizhny Novgorod, ul. Botanicheskiy Sad, 1, Nizhny Novgorod, 603062, Russian Federation; e-mail: mishukowa.ir@yandex.ru

Keywords

spruce, introduction, adaptation, resistance, starch, shoot tissue.

For citation

Besschetnova N.N., Besschetnov V.P., Kul'kova A.V., Mishukova I.V. Starch Content in Shoot Tissues of Different Spruce Species (Picea A. Dietr.) in Introduction. Le-snoy zhurnal [Forestry journal], 2017, no. 4, pp. 57–68. 10.17238/issn0536-1036.2017.4.57

References

1. Barskaya E.I. Izmeneniya khloroplastov i vyzrevanie pobegov v svyazi s moro-zoustoychivost'yu drevesnykh rasteniy [Chloroplast Changes and Shoots Ripening Due to the Frost Resistance of Woody Plants]. Moscow, 1967. 223 p.
2. Besschetnova N.N. Sravnitel'naya otsenka plyusovykh derev'ev sosny obyknovennoy po soderzhaniyu krakhmala v pobegakh [Comparative Estimation of Starch Content in the Sprouts of Scotch Pine Plus-Trees]. Vestnik Mariyskogo gosudarstvennogo tekhnicheskogo uni-versiteta. Seriya: Les. Ekologiya. Prirodopol'zovanie [Vestnik of Mari State Technical Universi-ty. Series “Forest. Ecology. Nature management”], 2010, no. 2(9), pp. 49–56.
3. Besschetnova N.N. Sosna obyknovennaya (Pinus sylvestris L.). Selektsionnyy po-tentsial plyusovykh derev'ev [Scots Pine (Pinus sylvestris L.). Breeding Potential of Plus-Trees]. Saarbr?cken, Germany, 2011. 402 p.
4. Besschetnova N.N. Soderzhanie zhirov v kletkakh pobegov plyusovykh derev'ev sosny obyknovennoy [Fat Content in Shoot Cells of Scotch Pine Elite Trees]. Lesnoy zhur-nal [Forestry journal], 2012, no. 4, pp. 48–55.
5. Besschetnov V.P., Besschetnova N.N. Obrazovanie i lignifikatsiya ksilemy plyusovykh derev'ev sosny obyknovennoy [Formation and Lignification of Xylem of Scotch Pine Elite Trees]. Lesnoy zhurnal [Forestry journal], 2013, no. 2, pp. 45–52.
6. Besschetnov V.P., Besschetnova N.N., Khramova O.Yu., Ornatskiy A.N., Gorelov N.I. Dispersionnyy analiz mnogourovnevykh ierarkhicheskikh kompleksov: metod. ukazaniya dlya stud. i asp. [Dispersion Analysis of Multilevel Hierarchical Complexes]. Nizhny Nov-gorod, 2012. 33 p.
7. Besschetnova N.N. Sosna obyknovennaya (Pinus sylvestris L.). Effektivnost' ot-bora plyusovykh derev'ev: monogr. [Scots Pine (Pinus sylvestris L.). The Efficiency of Se-lection of Plus-Trees]. Nizhny Novgorod, 2016. 464 p.
8. Vorob'ev R.A., Teben'kova D.N. Razvitie vegetativnykh i generativnykh organov predstaviteley roda el' (Picea L.), introdutsirovannykh v Nizhegorodskoy oblasti [Results for the Development Phenological Observations of Vegetative and Generative Organs of Representatives of Spruce (Picea L.) Introduced in Nizhny Novgorod Region]. Vestnik Moskovskogo gosudarstvennogo universiteta lesa ? Lesnoy vestnik [Moscow State Forest University Bulletin – Lesnoy Vestnik], 2013, no. 7, pp. 97–105.
9. Vorob'ev R.A., Teben'kova D.N. Soderzhanie osnovnykh pigmentov v odnoletney i dvukhletney khvoe introdutsentov roda el' (Picea L.) v usloviyakh podzony yuzhnoy taygi (na primere Nizhegorodskoy oblasti) [The Main Pigment Content in Needles of Introduced Spruce in the Southern Taiga (Nizhny Novgorod Region)]. Lesovedenie [Russian Journal of Forest Science], 2013, no. 4, pp. 22–31.
10. Grodzinskiy A.M., Grodzinskiy D.M. Kratkiy spravochnik po fiziologii rasteniy [A Quick Reference Guide on Plant Physiology]. Kiev, 1964. 288 p.
11. Mamaev S.A. O problemakh i metodakh vnutrividovoy sistematiki drevesnykh rasteniy. II. Amplituda izmenchivosti [On the Problems and Methods of Intraspecific Systematics of Plants. II. Amplitude of Variability]. Zakonomernosti formoobrazovaniya i differentsiatsii vida u drevesnykh rasteniy: Trudy instituta ekologii rasteniy i zhivotnykh Ural'skogo filiala AN SSSR [Patterns of Species Formation and Species Differentiation in Woody Plants: Proc. Institute of Ecology of Plants and Animals of the Ural Branch of the Academy of Sciences of the USSR]. Sverdlovsk, 1969, iss. 64, pp. 3–38.
12. Prozina M.N. Botanicheskaya mikrotekhnika: ucheb. posobie [Botanical Micro-engineering]. Moscow, 1960. 205 p.
13. Andersone U., Ievinsh G. Changes of Morphogenic Competence in Mature Pinus sylvestris L. Buds in vitro. Ann. Bot., 2002, vol. 90, no. 2, pp. 293–298.  10.1093/aob/mcf176.
14. Bergstr?m B. Chemical and Structural Changes during Heartwood Formation in Pinus sylvestris. Forestry, 2003, vol. 76, no. 1, pp. 45–53.  10.1093/forestry/76.1.45.
15. Brahim B.M., Loustau D., Gaudill?re J.P., Saur E. Effects of Phosphate Deficien-cy on Photosynthesis and Accumulation of Starch and Soluble Sugars in 1-Year-Old Seed-lings of Maritime Pine (Pinus pinaster Ait). Ann. Sci. For., 1996, vol. 53, no. 4, pp. 801–810.  http://dx.doi.org/10.1051/forest:19960401.
16. Ericsson A., Lindgren A., Mattsson A. Effects of Cold-Storage and Planting Date on Subsequent Growth, Starch and Nitrogen Content in Scots Pine (Pinus sylvestris) and Norway Spruce (Picea abies) Seedlings. Studia Forestalia Suecia, 1983, no. 165, pp. 1–17.
17. Jim?nez M.D., Pardos M., Pu?rtolas J., Kleczkowski L.A., Pardos J.A. Deep Shade Alters the Acclimation Response to Moderate Water Stress in Quercus suber L. For-estry, 2009, vol. 82, no. 3, pp. 285–298.  10.1093/forestry/cpp008.
18. Kakei M., Clifford P.E. Effects of Lime Application and Test Branch Position on 14C-Photosynthate Partitioning in 3-Year-Old Sitka Spruce (Picea sitchensis) Plants Grow-ing in Pots Containing Peat Soils. Forestry, 1999, vol. 72, no. 3, pp. 223–235.  10.1093/forestry/72.3.223.
19. Ludlow A.R. Some Factors Influencing the Increment of Forests. Forestry, 1997, vol. 70, no. 4, pp. 381–388.  10.1093/forestry/70.4.381.
20. Mencuccini M., H?ltt? T. The Significance of Phloem Transport for the Speed with which Canopy Photosynthesis and Belowground Respiration are Linked. New Phytol., 2010, vol. 185, no. 1, pp. 189–203.  10.1111/j.1469-8137.2009.03050.x.
21. Mencuccini M., H?ltt? T., Sevanto S., Nikinmaa E. Concurrent Measurements of Change in the Bark and Xylem Diameters of Trees Reveal a Phloem-Generated Turgor Sig-nal. New Phytol., 2013, vol. 198, no. 4, pp. 1143–1154.  10.1111/nph.12224.
22. Pardos M., Royo A., Gil L., Pardos J.A. Effect of Nursery Location and Outplant-ing Date on Field Performance of Pinus halepensis and Quercus ilex Seedlings. Forestry, 2003, vol. 76, no. 1, pp. 67–81.  10.1093/forestry/76.1.67.
23. Rodr?guez-Calcerrada J., Pardos J.A., Aranda I. Contrasting Responses Facing Peak Drought in Seedlings of Two Co-Occurring Oak Species. Forestry, 2010, vol. 83, no. 4, pp. 369–378.  10.1093/forestry/cpq019.
24. Schaberg P.G., Snyder M.C., Shane J.B., Donnelly J.R. Seasonal Patterns of Carbo-hydrate Reserves in Red Spruce Seedlings. Tree Physiology, 2000, vol. 20, no. 8, pp. 549–555.
25. Woodruff D.R., Meinzer F.C. Water Stress, Shoot Growth and Storage of Non-structural Carbohydrates Along a Tree Height Gradient in a Tall Conifer. Plant, Cell & En-vironment, 2011, vol. 34, no. 11, pp. 1920–1930.  10.1111/j.1365-3040.2011.02388.x.
Received on March 19, 2017

Starch Content in Shoot Tissues of Different Spruce Species (Picea A. Dietr.) in Introduction

 

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