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Farklı İBA konsantrasyonları ve bekletme sürelerinde bozkır otu çeliklerinin çoğaltılması

Yıl 2022, Cilt: 23 Sayı: 1, 35 - 43, 16.05.2022
https://doi.org/10.17474/artvinofd.978268

Öz

Yarı çalı bir yem bitkisi olan bozkır otu, Türkiye’nin kurak alanlarındaki meralarda doğal olarak yetişmektedir. Bozkır otunun doğada tohum ile büyümesi çok yavaş ve tohum canlılığı süresinin kısa olması ülkemizde bozkır otu tarımında kısıtlamaya neden olmaktadır. Vejetatif çoğaltma yöntemi olarak çelikle çoğaltma ile bozkır otu fidesi daha kısa sürede seri bir şekilde üretilebilir. Bu sebeple, Tesadüf Parselleri Deneme Desenine göre serada yürütülen bu çalışmada 4 adet sürede (5, 30, 180 ve 900 s) ve 12 farklı IBA konsantrasyonlarına (250, 500, 1000, 1500, 2000, 2500, 3000, 4000, 5000, 6000, 10000 ve 15000 mg kg-1) bozkır otu çelikleri maruz bırakıldı. Bu çeliklerin köklenme yüzdesi, kök sayısı, fide ve kök uzunluğu, yaş fide ve kök ağırlığı, kuru kök ağırlığı ve yaprak sararması incelenmiştir. Çeliklerde köklenme yüzdesi (%100), kök sayısı (>7 adet), fide uzunluğu (>20 cm), kök uzunluğu (>10 cm), kök ağırlığı (>0.60 g), kuru kök ağırlığı (>0.1 g) ve yaprak sararması (Skor >1.60) açısından en iyi gelişim 900 saniyede 500 mg kg-1 IBA, 180 saniyede 5.000 mg kg-1 IBA ve 5 saniyede 10.000 mg kg-1 IBA konsantrasyonlarından elde edilmiştir. Sonuç olarak bozkır otunun ekonomik ve hızlı bir şekilde çelikle çoğaltılması için 900 saniyede 500 mg kg-1 IBA, 180 saniyede 5.000 mg kg-1 IBA ve 5 saniyede 10.000 mg kg-1 IBA konsantrasyonları önerilmektedir.

Kaynakça

  • Acar R (2013) The Importance of Forage Kochia (Kochia prostrata (L.) Schrad.) Found in Natural Areas in KOP Region, and the Advantages of Its Use in Pasture Improvement (KOP Doğal Alanlarında Bulunan Bozkır Otu (Kochia prostrata (L.) Schrad.) Bitkisinin Önemi ve Mera Islahında Kullanımının Avantajları), I. KOP Regional Development Symposium Proceedings,14-16 November 2013 Konya, Turkey (In Turkish)
  • Acar R, Koç N (2019) The Determination of Yield and Some Yield Components of Different Forage Kochia (Kochia prostrata (L.) Schrad.) Phenotypes Collected and Grown From Natural Areas. Fresenius Environmental Bulletin 28 (2A): 1429-33.
  • Acar R, Özköse A (2012) Importance of Kochia prostrata (L.) Schrad in Arid and Semi-arid Regions for Livestock Feeds. Options Méditerranéennes Série A Séminaires Méditerranéens 102: 375-379.
  • AOAC (2003) Official Methods of Analysis of the Association of Official’s Analytical Chemists. 17th ed. Association of Official Analytical Chemists, Arlington, Virginia.
  • Bailey DW, Tabini RA, Waldron BL, Libbin JD, Al-Khalidi K, Alqadi A, Oun MA, Jensen KB (2010) Potential of Kochia prostrata and Perennial Grasses For Rangeland Restoration in Jordan. Rangeland Ecology and Management 63 (6): 707-711.
  • Baul TK, Mezbahuddin M, Hossain MM, Mohiuddin M (2010) Vegetative Propagation of Holarrhena pubescens, A Wild Tropical Medicinal Plant: Effect of Indole-3-Butyric Acid (IBA) on Stem Cuttings. Forestry Studies in China 12(4): 228-235.
  • Blauer AC, McArthur E, Stevens R, Nelson S (1993) Evaluation of Roadside Stabilizationa and Beautification Plantings in South-Central Utah. Research paper INT (USA), https://digitalcommons.usu.edu/govdocs_plants/1 Access Date: 15th April 2019.
  • Freed R, Einensmith SP, Guets S, Reicosky D, Smail VW, Wolberg P (1989) User’s Guide to MSTAT-C Analysis of Agronomic Research Experiments. Michigan State University, USA.
  • Harrison R, Chatterton N, Waldron B, Davenport B, Palazzo A, Horton W, Asay K, (2000). Forage Kochia, Its Compatibility Potential Aggressiveness on Intermountain Rangelands. Utah Agricultural Experiment Station Research Report 162.
  • Husen A, Iqbal M, Siddiqui SN, Sohrab SS, Masresha G (2017) Effect of Indole-3-Butyric Acid on Clonal Propagation of Mulberry (Morus alba L.) Stem Cuttings: Rooting and Associated Biochemical Changes. Proceedings of the National Academy of Sciences, India Section B: Biological Sciences, 87(1): 161-166.
  • Koç Koyun N (2021) The Determination of Genetic Relationships and Some Botanical Properties of Forage Kochia (Kochia prostrata (L) Scrad) Population Grown in Konya Conditions. The Graduate School of Natural and Applied Science of Selçuk University. PhD Thesis, Konya, 235 p.
  • Kara N, Baydar, H, Erbaş S (2011) Effects of Different Cuttings Periods and IBA Concentrations on Rooting Ability of Some Medicinal Plant. Derim 28(2):71-81.
  • Kroin J (2011) How to Improve Cuttings Propagation Using Water-Based Indole-3-Butyric Acid Rooting Solutions. In Combined Proceedings International Plant Propagators' Society Vol. 61: p. 201t.
  • Gibson EL, de Oliveira Gonçalves E, dos Santos AR, Araújo EF, Wendling I, Alexandre RS, Caldeira MVW (2021) Responsiveness of Melanoxylon brauna to Mini-cuttings Technique. Rhizosphere 17: 100303.
  • Özgen M, Altınok S, Özcan S, Sevimay CS (1997) In vitro Micropropagation of Alfalfa (Medicago sativa L.) Cultivars. Turkish Journal of Botany 21(5): 275-278.
  • Özgen M, Özcan S, Sevimay CS, Sancak C, Yildiz M (1998) High Frequency Adventitious Shoot Regeneration in Sainfoin. Plant Cell, Tissue and Organ Culture 52(3): 205-208.
  • Pourghorban M, Khaghani S, Azadi P, Mirzakhani A, Changizi M (2019) Propagation of Rosa hybrida L. cv. Dolce Vita by Stenting and Stem Cutting Methods in Response to Different Concentrations of IBA. Advances in Horticultural Science 33(1): 105-111.
  • Sall J, Stephens ML, Lehman A, Loring S (2017) JMP Start Statistics: A Guide to Statistics and Data Analysis Using JMP. Sas Institute.
  • Shamsutdinov NZ, Shamsutdinov Z (2009) Halophytes Usage for Soil Desalting and Sustainable Development of Agriculture in Arid Regions of Russia. Kostyakov All-Russian Research Institute of Hydraulic Engineering and Land Reclamation.
  • Singh S, Singh AK (2017) Mahua (Bassia latifolia Roxb). In: Ghosh SN, Singh A and Thakur A (Eds) Underutilized Fruit Crops: Importance & Cultivation. NPH. India, 1447
  • Stevens R, Jorgensen KR, McArthur ED, Davis JN (1985) 'Immigrant' Forage Kochia. Rangelands Archives 7(1): 22-23.
  • Su PX, Xie TT, Zhou ZJ (2011) C4 Plant Species and Geographical Distribution in Relation to Climate in the Desert Vegetation of China. Sciences in Cold and Arid Regions 3(5): 381-391.
  • Susaj E, Susaj L, Kallço I (2012) Effect of Different NAA and IBA Concentrations on Rooting of Vegetative Cuttings of Two Rose Cultivars. Research Journal of Agricultural Science 44(3): 121-127.
  • Van de Pol PA, Joosten MHAJ, Keizer H (1986) Stenting of roses, Starch Depletion and Accumulation during the Early Development. Acta Horticulturae 189: 51-59
  • Van de Pol PA, Pierik RLM (1995) The Newest Developments in Rose (Rosa hybrida) Propagation. Serie Horticultura.
  • Waldron BL, Larson SR, Peel MD, Jensen KB, Mukimov TC, Rabbimov A, ZoBell DR, Wang RC, Smith RC, Deane Harrison R (2013) ‘Snowstorm’, A New Forage Kochia Cultivar with Improved Stature, Productivity, and Nutritional Content for Enhanced Fall and Winter Grazing. Journal of Plant Registrations 7 (2): 140-50.
  • Weaver RJ (1972) Plant Growth Substances in Agriculture. W.H. Freeman and Company. San Frasisco, 504s.
  • Wieland PA, Frolich EF, Wallace A (1971) Vegetative Propagation of Woody Shrub Species From The Northern Mojave and Southern Great Basin Deserts. Madrono 21(3): 149-152.
  • Yıldız K, Çekiç Ç, Güneş M, Özgen, M (2009) The Determination of Rooting Success of Different Types of Black Mulberry (Morus nigra L.) Cuttings. GOÜ Ziraat Fakültesi Dergisi 26(1): 1-5 (In Turkish).
  • Yücesan Z, Üçler AÖ, Oktan E, Bayraktar A, Şafak T (2018) Effects Of Different Greenhouse Media and Hormones on Propagation by Cutting of Weigela floribunda and Spiraea x vanhouttei. Artvin Çoruh University Journal of Forestry Faculty 19 (1): 27-34. (In Turkish).
  • Zadbar M, Dormanov DN, Shariph-abad HH, Dorikov M, Jalilvand H (2007) Row Distance Method Sowing of Forage Kochia, eastern saltwort and winterfat. Pakistan Journal of Biological Sciences 10(10): 1571-1579.

The propagation of forage kochia cutting in different IBA concentrations and at holding times

Yıl 2022, Cilt: 23 Sayı: 1, 35 - 43, 16.05.2022
https://doi.org/10.17474/artvinofd.978268

Öz

Forage kochia, a subshrub forage plant, grows naturally in the pastures of dry areas in Turkey. Their seeds grow slowly in nature, and being short duration of seed viability could be caused by limitations on the cultivation of forage kochia in Turkey. Forage kochia seedlings can be produced serially quickly with cutting propagation as vegetation propagation method. Therefore, forage kochia cuttings were exposed to 12 different IBA concentrations (250, 500, 1000, 1500, 2000, 2500, 3000, 4000, 5000, 6000, 10000, and 15000 mg kg-1) at four holding times (5, 30, 180, and 900 s) in this research carried out Completely Randomized Design in the greenhouse. We investigated the percentage of rooting, the number of the root, shoot and root length, shoot and root weight, dry root weight, and leave yellowing of these cutting. The best developments in the percentage of rooting (100%), number of roots (> 7), shoot length (> 20 cm), root length (>10 cm), root weight (>0.60 g), dry root weight (>0.1 g) and leave yellowing (score >1.60) were obtained from 500 mg kg-1 IBA at 900 s, 5000 mg kg-1 IBA at 180 s, and 10000 mg kg-1 IBA at 5 s interactions. As a result, we advised 500 mg kg-1 IBA at 900 s, 5000 mg kg-1 IBA at 180 s and 10000 mg kg-1 IBA at 5 s for the quick and economically cutting propagation of forage kochia.

Kaynakça

  • Acar R (2013) The Importance of Forage Kochia (Kochia prostrata (L.) Schrad.) Found in Natural Areas in KOP Region, and the Advantages of Its Use in Pasture Improvement (KOP Doğal Alanlarında Bulunan Bozkır Otu (Kochia prostrata (L.) Schrad.) Bitkisinin Önemi ve Mera Islahında Kullanımının Avantajları), I. KOP Regional Development Symposium Proceedings,14-16 November 2013 Konya, Turkey (In Turkish)
  • Acar R, Koç N (2019) The Determination of Yield and Some Yield Components of Different Forage Kochia (Kochia prostrata (L.) Schrad.) Phenotypes Collected and Grown From Natural Areas. Fresenius Environmental Bulletin 28 (2A): 1429-33.
  • Acar R, Özköse A (2012) Importance of Kochia prostrata (L.) Schrad in Arid and Semi-arid Regions for Livestock Feeds. Options Méditerranéennes Série A Séminaires Méditerranéens 102: 375-379.
  • AOAC (2003) Official Methods of Analysis of the Association of Official’s Analytical Chemists. 17th ed. Association of Official Analytical Chemists, Arlington, Virginia.
  • Bailey DW, Tabini RA, Waldron BL, Libbin JD, Al-Khalidi K, Alqadi A, Oun MA, Jensen KB (2010) Potential of Kochia prostrata and Perennial Grasses For Rangeland Restoration in Jordan. Rangeland Ecology and Management 63 (6): 707-711.
  • Baul TK, Mezbahuddin M, Hossain MM, Mohiuddin M (2010) Vegetative Propagation of Holarrhena pubescens, A Wild Tropical Medicinal Plant: Effect of Indole-3-Butyric Acid (IBA) on Stem Cuttings. Forestry Studies in China 12(4): 228-235.
  • Blauer AC, McArthur E, Stevens R, Nelson S (1993) Evaluation of Roadside Stabilizationa and Beautification Plantings in South-Central Utah. Research paper INT (USA), https://digitalcommons.usu.edu/govdocs_plants/1 Access Date: 15th April 2019.
  • Freed R, Einensmith SP, Guets S, Reicosky D, Smail VW, Wolberg P (1989) User’s Guide to MSTAT-C Analysis of Agronomic Research Experiments. Michigan State University, USA.
  • Harrison R, Chatterton N, Waldron B, Davenport B, Palazzo A, Horton W, Asay K, (2000). Forage Kochia, Its Compatibility Potential Aggressiveness on Intermountain Rangelands. Utah Agricultural Experiment Station Research Report 162.
  • Husen A, Iqbal M, Siddiqui SN, Sohrab SS, Masresha G (2017) Effect of Indole-3-Butyric Acid on Clonal Propagation of Mulberry (Morus alba L.) Stem Cuttings: Rooting and Associated Biochemical Changes. Proceedings of the National Academy of Sciences, India Section B: Biological Sciences, 87(1): 161-166.
  • Koç Koyun N (2021) The Determination of Genetic Relationships and Some Botanical Properties of Forage Kochia (Kochia prostrata (L) Scrad) Population Grown in Konya Conditions. The Graduate School of Natural and Applied Science of Selçuk University. PhD Thesis, Konya, 235 p.
  • Kara N, Baydar, H, Erbaş S (2011) Effects of Different Cuttings Periods and IBA Concentrations on Rooting Ability of Some Medicinal Plant. Derim 28(2):71-81.
  • Kroin J (2011) How to Improve Cuttings Propagation Using Water-Based Indole-3-Butyric Acid Rooting Solutions. In Combined Proceedings International Plant Propagators' Society Vol. 61: p. 201t.
  • Gibson EL, de Oliveira Gonçalves E, dos Santos AR, Araújo EF, Wendling I, Alexandre RS, Caldeira MVW (2021) Responsiveness of Melanoxylon brauna to Mini-cuttings Technique. Rhizosphere 17: 100303.
  • Özgen M, Altınok S, Özcan S, Sevimay CS (1997) In vitro Micropropagation of Alfalfa (Medicago sativa L.) Cultivars. Turkish Journal of Botany 21(5): 275-278.
  • Özgen M, Özcan S, Sevimay CS, Sancak C, Yildiz M (1998) High Frequency Adventitious Shoot Regeneration in Sainfoin. Plant Cell, Tissue and Organ Culture 52(3): 205-208.
  • Pourghorban M, Khaghani S, Azadi P, Mirzakhani A, Changizi M (2019) Propagation of Rosa hybrida L. cv. Dolce Vita by Stenting and Stem Cutting Methods in Response to Different Concentrations of IBA. Advances in Horticultural Science 33(1): 105-111.
  • Sall J, Stephens ML, Lehman A, Loring S (2017) JMP Start Statistics: A Guide to Statistics and Data Analysis Using JMP. Sas Institute.
  • Shamsutdinov NZ, Shamsutdinov Z (2009) Halophytes Usage for Soil Desalting and Sustainable Development of Agriculture in Arid Regions of Russia. Kostyakov All-Russian Research Institute of Hydraulic Engineering and Land Reclamation.
  • Singh S, Singh AK (2017) Mahua (Bassia latifolia Roxb). In: Ghosh SN, Singh A and Thakur A (Eds) Underutilized Fruit Crops: Importance & Cultivation. NPH. India, 1447
  • Stevens R, Jorgensen KR, McArthur ED, Davis JN (1985) 'Immigrant' Forage Kochia. Rangelands Archives 7(1): 22-23.
  • Su PX, Xie TT, Zhou ZJ (2011) C4 Plant Species and Geographical Distribution in Relation to Climate in the Desert Vegetation of China. Sciences in Cold and Arid Regions 3(5): 381-391.
  • Susaj E, Susaj L, Kallço I (2012) Effect of Different NAA and IBA Concentrations on Rooting of Vegetative Cuttings of Two Rose Cultivars. Research Journal of Agricultural Science 44(3): 121-127.
  • Van de Pol PA, Joosten MHAJ, Keizer H (1986) Stenting of roses, Starch Depletion and Accumulation during the Early Development. Acta Horticulturae 189: 51-59
  • Van de Pol PA, Pierik RLM (1995) The Newest Developments in Rose (Rosa hybrida) Propagation. Serie Horticultura.
  • Waldron BL, Larson SR, Peel MD, Jensen KB, Mukimov TC, Rabbimov A, ZoBell DR, Wang RC, Smith RC, Deane Harrison R (2013) ‘Snowstorm’, A New Forage Kochia Cultivar with Improved Stature, Productivity, and Nutritional Content for Enhanced Fall and Winter Grazing. Journal of Plant Registrations 7 (2): 140-50.
  • Weaver RJ (1972) Plant Growth Substances in Agriculture. W.H. Freeman and Company. San Frasisco, 504s.
  • Wieland PA, Frolich EF, Wallace A (1971) Vegetative Propagation of Woody Shrub Species From The Northern Mojave and Southern Great Basin Deserts. Madrono 21(3): 149-152.
  • Yıldız K, Çekiç Ç, Güneş M, Özgen, M (2009) The Determination of Rooting Success of Different Types of Black Mulberry (Morus nigra L.) Cuttings. GOÜ Ziraat Fakültesi Dergisi 26(1): 1-5 (In Turkish).
  • Yücesan Z, Üçler AÖ, Oktan E, Bayraktar A, Şafak T (2018) Effects Of Different Greenhouse Media and Hormones on Propagation by Cutting of Weigela floribunda and Spiraea x vanhouttei. Artvin Çoruh University Journal of Forestry Faculty 19 (1): 27-34. (In Turkish).
  • Zadbar M, Dormanov DN, Shariph-abad HH, Dorikov M, Jalilvand H (2007) Row Distance Method Sowing of Forage Kochia, eastern saltwort and winterfat. Pakistan Journal of Biological Sciences 10(10): 1571-1579.
Toplam 31 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Ziraat, Veterinerlik ve Gıda Bilimleri
Bölüm Araştırma Makalesi
Yazarlar

Nur Koç Koyun 0000-0002-3053-6127

Ramazan Acar 0000-0002-3347-6537

Kabul Tarihi 19 Ocak 2022
Yayımlanma Tarihi 16 Mayıs 2022
Yayımlandığı Sayı Yıl 2022 Cilt: 23 Sayı: 1

Kaynak Göster

APA Koç Koyun, N., & Acar, R. (2022). The propagation of forage kochia cutting in different IBA concentrations and at holding times. Artvin Çoruh Üniversitesi Orman Fakültesi Dergisi, 23(1), 35-43. https://doi.org/10.17474/artvinofd.978268
AMA Koç Koyun N, Acar R. The propagation of forage kochia cutting in different IBA concentrations and at holding times. AÇÜOFD. Mayıs 2022;23(1):35-43. doi:10.17474/artvinofd.978268
Chicago Koç Koyun, Nur, ve Ramazan Acar. “The propagation of forage kochia cutting in different IBA concentrations and at holding times”. Artvin Çoruh Üniversitesi Orman Fakültesi Dergisi 23, sy. 1 (Mayıs 2022): 35-43. https://doi.org/10.17474/artvinofd.978268.
EndNote Koç Koyun N, Acar R (01 Mayıs 2022) The propagation of forage kochia cutting in different IBA concentrations and at holding times. Artvin Çoruh Üniversitesi Orman Fakültesi Dergisi 23 1 35–43.
IEEE N. Koç Koyun ve R. Acar, “The propagation of forage kochia cutting in different IBA concentrations and at holding times”, AÇÜOFD, c. 23, sy. 1, ss. 35–43, 2022, doi: 10.17474/artvinofd.978268.
ISNAD Koç Koyun, Nur - Acar, Ramazan. “The propagation of forage kochia cutting in different IBA concentrations and at holding times”. Artvin Çoruh Üniversitesi Orman Fakültesi Dergisi 23/1 (Mayıs2022), 35-43. https://doi.org/10.17474/artvinofd.978268.
JAMA Koç Koyun N, Acar R. The propagation of forage kochia cutting in different IBA concentrations and at holding times. AÇÜOFD. 2022;23:35–43.
MLA Koç Koyun, Nur ve Ramazan Acar. “The propagation of forage kochia cutting in different IBA concentrations and at holding times”. Artvin Çoruh Üniversitesi Orman Fakültesi Dergisi, c. 23, sy. 1, 2022, ss. 35-43, doi:10.17474/artvinofd.978268.
Vancouver Koç Koyun N, Acar R. The propagation of forage kochia cutting in different IBA concentrations and at holding times. AÇÜOFD. 2022;23(1):35-43.
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