DAFTAR PUSTAKA
Ali, M.I., M.M. Yasser, A.S. Mousa, dan M.A. Khalek. 2012. Optimazion of factors affecting proliferation and flourishment of Trichoderma harzianum in Egyptian soil. Journal of Basic and Applied Mycology 3(1): 41-48.
Altomare, C., W.A. Norwell, T. Bjorkman, G.E. Harman. 1999. Solubilization of phosphates and micronutrients by plant growth promoting and biocontrol fungus Trichoderma harzianum strain 1295-22. Applied Environmental Microbiology 62: 2926-2933.
Backer, C.A., and V.D.B. Bakhuizen. 1963. Flora of Java (Spermatophytes Only). Vol. I. Wolter-Noordhoff NVP: Groningen.
Badan Pusat Statistik kabupaten Semarang. 2016. Kecamatan Getasan dalam Angka. BPS kabupaten Semarang: Ungaran.
Badan Pusat Statistik. 2015 Statistik Pertanian Hortikultura Jawa Tengah 2012-2014. Badan Pusat Statistik Provinsi Jawa Tengah: Semarang.
Badar, R., dan S.A. Qureshi. 2014. Comparative effect of biofertilizers, chemical fertilizer and fungicide on growth of Brassica nigra. International Journal of Advanced Research 2(8): 266-278.
Baker, R. 1988. Trichoderma spp. as plant stimulants. Critical Reviews in Biotechnology 7: 97-106.
Barnet, H.L. dan B.B Hunter. 1972. Illustrated Genera of Imperfect Fungi. 3rd Edition. Burgess Publishing Company: Oakland.
Bisnis UKM. 2009. Prospek Agribisnis Indonesia. Diakses online di http://bisnisukm.com /prospek-agrobisnis-indonesia.html. pada 16 Oktober 2014 pukul 05.25 WIB.
Brown, J.E., J.S. Isaacs, B.U. Krinke, M.A. Murtaugh, C.O. Sharbaugh, J. Stang, dan N.H. Wooldridge. 2005. Nutrition Through the Life Cycle. 2nd Edition. Thomson Wadsworth: Belmont.
Das, A., R. Prasad, A. Srivastava, H.P Giang, K. Bhatnagar, dan A. Varma. 2007. Soil Biology Vol. 12 Microbial Siderophores. Springer-Verlag: Berlin Heidelberg.
Dwidjoseputro, D. 1978. Pengantar Mikologi. Alumni: Bandung.
30 Farfour, S.A., dan M. Al-Saman. 2014. Root-rot and stem-canker control in faba bean
plants using some biofertilizers agents. Plant Pathology and Microbiology 5(1): 1-6.
Feyisa, B., A. Lencho, T. Selvaraj, dan G. Getaneh. 2016. Evaluation of some botanicals and Trichoderma harzianum for the management of tomato root-knot nematode (Meloidogybe incognita (kofoid and white) Chit Wood). Advances in Crop Science and Technology 4(1): 1-10.
Gomez, A.K., dan A.A. Gomez. 1995. Prosedur Statistika untuk Penelitian Pertanian. Penerjemah: Endang Sjamsuddin dan Justika S. Baharsjah. Universitas Indonesia Press: Jakarta.
Gupta, V., dan A.K. Sharma. 2013. Assessment of optimum temperature of Trichoderma harzianum by monitoring radian growth and population dynamics in different compoct manures under different temperature. Octa Journal of Biosciences 1(2): 151-157.
Gusnawaty, H.S., M. Taufik, dan E. Wahyudin. 2013. Uji efektivitas beberapa media untuk perbanyakan agens hayati Gliocladium sp. Jurnal Agroteknos 3(2): 73-79.
Haque, M.M., G.N.M. Ilias, dan A.H. Molla. 2012. Impact of Trichoderma-enriched biofertilizer on the growth and yield of mustard (Brassica rapa L.) and tomato (Solanum lycopersicum Mill.). The Agriculturists 10(2): 109-119.
Harman G.E., Howell C.R., Viterbo A., Chet I., dan Lorito M. 2006. Trichoderma Species-Opportunistic, Avirulent Plant Symbionts. Nature Reviews Microbiology 2: 43–56.
Hart, M.P., and D.M. Macleod. 1966. An apparatus for determining the effect of temperature and humidity on germination of fungal spores. Can. J. Bot. 33(1): 288-292.
Haryuni. 2012. Pengharuh Trichoderma sp. dan lama pemanasan mata tunas (bud chips) tebu terhadap pertumbuhan awal benih tebu varietas 864. Jurnal Ilmiah Agrineca 12(2): 117-130.
Hasan, M.R., dan A.H.M. Solaiman. 2012. Efficacy of organic and inorganic fertilizer on the growth of Brassica oleracea L. (cabbage). International Journal of Agriculture and Crop Science 4(3): 128-138.
Herlina, L. 2013. Uji potensi Gliocladium sp. terhadap pertumbuhan dan produksi tanaman tomat. Biosaintifika 5(2): 87-93.
31 Herlina, L. dan D. Pramesti. 2005. Aplikasi Penggunaan Agen Hayati Trichoderma
harzianum Terhadap Pertumbuhan, Produksi dan Kualitas Buah Tomat. Laporan Penelitian. Universitas Negeri Semarang: Semarang.
Hermosa, R., A. Viterbo, dan E. Monte. 2012. Plant-beneficial effect of Trichoderma and of its genes. Microbiology 158: 17-25.
Hexon, A.C., M.R. Lourdes, C.P. Carlos and L.B. Jose. 2009. Trichoderma virens, a plant beneficial fungus, enhances biomass production and promotes lateral root growth through an auxin-dependent mechanism in Arabidopsis. Plant Physiology 149: 1579-1592.
Iskandar M., dan W.S. Pinem. 2009. Uji efektifitas jamur (Gliocladium virens dan Trichoderma koningii) pada berbagai tingkat dosis terhadap penyakit busuk pangkal batang (Fusarium Oxysporum F. Sp. Passiflorae) pada tanaman markisah (Passiflora Edulis F. Edulis) di lapangan. USU e-Journals (UJ).
Ismail, N. dan A. Tenrirawe. 2011. Potensi agens hayati Trichoderma spp. sebagai agens pengendali hayati. Seminar Regoinal Inovasi Teknologi Pertanian. BPTP Sulawesi Utara: Sulawesi Utara.
Jackson, A.M., J.M. Whipps, dan J.M. Lynch. 1991. Effects of temperature, pH and water potential on growth of four fungi with disease biocontrol potential. World Journal Microbiology Biotechnology 7(1): 494-501.
John, R.P., R.D. Tyagi, D. Prévost, S.K. Brar, S. Pouleur, dan R.Y. Surampalli. 2010. Mycoparasitic Trichoderma viridae as a biocontrol agent against Fusarium oxysporum F. Sp. Adzuki and Pythium arrhenomanes and as a growth promoter soybean. Crop Protection 29: 1452-1459.
Kaewachai, S., K. Soytong, dan K.D. Hyde. 2009. Mycofungicides and fungal biofertilizers. Fungal Diversity 38: 25-50.
Kementerian Pertanian Republik Indonesia. 2010. Penyakit Akar Gada Keluarga Kubis. Portable Document Format (PDF). Kementrian Pertanian Republik Indonesia: Jakarta.
Kementerian Pertanian. 2015. Konsumsi Per Kapita Hortikultura. Direktorat Jenderal Hortikultura: Jakarta.
Kementerian Pertanian. 2015. Statistik Produksi Hortikultura Tahun 2014. Direktorat Jenderal Hortikultura: Jakarta.
32 Kubicak, C.P. dan G.E. Harman. 1998. Trichoderma and Gliocladium. Taylor and
Francies Ltd. : London.
Lehar, L. 2012. Pengujian pupuk organik agen hayati (Trichoderma sp.) terhadap pertumbuhan kentang (Solanum tuberosum L). Jurnal Penelitian Pertanian Terapan 12(2): 115-124.
Lestari Y. dan L. Indrayati. 2000. Pemanfaatan Trichoderma dalam Mempercepat Perombakan Bahan Organik pada Tanah Gambut. Di dalam: Prosiding Seminar Hasil Penelitian Tanaman Pangan Lahan Rawa. Balittra Banjarbaru.
Lo, C.T., dan C.Y. Lin. 2002. Screening strains of Trichoderma spp for plant growth enhancement in Taiwan. Plant Pathology Bulletin 11: 215-220.
Marh, S. 2005. Know Your Friends: Gliocladium virens. University of Wiscosin: Madison.
McDaniel, P.A., D.J. Lowe, O. Arnalds, dan C.L. Ping. 2012. Handbook of Soil Sciences: Andisols. 2nd Edition. CRC Press: Boca Raton.
Mishra, P.K., and F.N. Khan. 2015. Effect of Different Growth Media and Physical Factors on Biomass Production of Trichoderma Viride. People’s Journal of Scientific Research 8(2):11-16.
Moelyohadi, Y., M.H. Umar, Munandar, H. Renih, dan G. Nuni. 2012. Pemanfaatan berbagai jenis pupuk hayati pada budidaya tanaman jagung (Zea mays L.) efisien hara di lahan kering marginal. Jurnal Lahan Suboptimal, 1(1): 31-39.
Mwangi, M.W., E.O. Monda, S.A.Okoth, J.M.Jefwa. 2011. Inoculation of tomato seedlings with Trichoderma harzianum and arbuscular mycorrhizal fungi and their effect on growth and control of wilt in tomato seedlings. Brazilian Journal of Microbiology 42: 508-513.
Naseby, D.C., J.A. Pascual, dan J.M. Lynch. 2000. Effect of biocontrol strains of Trichoderma on plant growth, Phytium ultimum populations, soil microbial communities and soil enzyme activities. Journal of Applied Mycrobiology 88: 161-169.
Nzioki, H.S., dan D.L. Mutisya. 2016. Effect of Trichoderma harzianum strains in enhancing drought tolerance on maize under water stress condition in semi-arid regions. International Journal of Agriculture and Environmental Research 2(4): 794-803.
33 Okoth, S.A., P. Okoth, P. Wachira, dan H. Roimen. 2009. Spatial distribution of
Trichoderma spp. in Embu and Taita regions, Kenya. Tropical and Subtropical Agro Ecosystems 11(1): 291-202.
Ousley, M.A., J.M. Lynch, dan J.M. Whipps. 1994. Potential of Trichoderma as consistent plant growth stimulators. Biology and Fertility of Soils 17: 85–90.
Permadi, A.H. dan S. Sastrosiswojo. 1993. Kubis. Badan Penelitian dan Pengembangan Pertanian Balai Penelitian Hortikultura Lembang: Jakarta.
Pracaya. 2001. Kol alias Kubis. Penebar Swadaya: Jakarta.
Reetha, S., G. Bhuvaneswari, G. Selvakumar, P. Thamizhiniyan, and M. Pathmavathi. 2014. Effect of temperature and pH on growth of fungi Trichoderma harzianum. Journal of Chemical, Biological, and Physical Science 4(4): 3287-3292.
Respati, E., B.K. Wieta, Widawati, M. Megawati, Sehusma, dan S. Yani . 2013. Indikator makro sektor pertanian. Buletin Bulanan, VII(11) Edisi Desember 2013. Kementrian Pertanian RI: Jakarta.
Rosmarkam, A dan N.W. Yuwono. 2002. Ilmu Kesuburan Tanah. Kanisius. Yogyakarta.
Rukmana, R. 1995. Kubis (Seri Budidaya). Kanisius: Yogyakarta.
Saba, H., D. Vibhash, M. Manisha, K.S. Prashant, H. Farhan, dan A. Tauseef. 2012. Trichoderma – a promising plant growth stimulator and biocontrol agent. Mycosphere Doi 10.5943: 524-531.
Samuels, G.J., P. Chaverri, D.F. Farr and E.B. Mccray. 2007. Systematic mycology and Mycrobiology Laboratory. ARS USDA: Maryland.
Semangun, H. 1996. Pengantar Ilmu Penyakit Tumbuhan. Gadjah Mada University Press: Yogyakarta.
Serna-Cock, L., C. Arias-Garcia, dan L.J.V. Hernandez 2011. Effect of biofertilization on the growth of potted sugarcane plants (Saccharum officinarum). Rev. Bio. Agro 9: 85-95.
Sharma, P. 2011. Evaluation of disease control and plant growth promotion potential of biocontrol agents on Pisum sativum and comparison of their activity with popular chemicah control agent – carbendazim. Journal of Toxicology and Environmental Health Sciences 3(5): 127-138.
34 Singh, A., M. Shahid, M. Srivastava, S. Pandey, A. Sharma, dan V. Kumar. 2014.
Optimal physical parameters for growth of Trichoderma species at varying pH, temperature and agitation. Virology and Mycology 3(1): 1-7.
Soesanto, L. 2008. Pengantar Pengendalian Hayati Penyakit Tanaman Suplemen ke Gulma dan Nematode. Rajawali-Press: Jakarta.
Suryanti, T. Martoedjo, A.H. Tjokrosoedarmono, dan E. Sulistyaningsih. 2003. Pengendalian Penyakit Akar Merah Anggur pada teh dengan Trichoderma spp. Hlm. 143-146. Prosiding Kongres Nasional XVII dan Seminar Nasional FP: Bandung.
Taufik, M., A. Khaeruni, A. Wahab dan Amiruddin. 2011. Agens hayati dan Arachis pintoi memacu pertumbuhan tanaman lada (Piper nigrum) dan mengurangi kejadian penyakit kuning. Menara Perkebunan 79(2): 42-48.
Thamburaj, S., M. Kannan, dan V. Kanthaswamy. 1997. Horticultural Crop Varieties Released From Tamil Nadu Agricultural University. K.R.S Offset Printers: Coimbatore.
Tjasyono, B. 2004. Klimatologi. Institut Pertanian Bandung: Bandung.
Topolovec-pintarić, S., I. Žutić, dan E. Đermić. 2013. Enhanced growth of cabbage and red beet by Trichoderma viridae. Acta Agriculturae Slovenica 101(1): 87-92.
Uruilal, C., A.M. Kalay, E. Kaya, dan A. Siregar. 2012. Pemanfaatan kompos ela sagu, sekam dan dedak sebagai media perbanyakan agens hayati Trichoderma harzianum Rifai. Agrologia 1(1): 21-30.
Vinale, F., K. Sivasithamparam, E.L. Ghisalberti, R. Marra, S.L. Woo, dan M. Lorito. 2008. Trichoderma-plant-pathogen interaction. Soil Biology and Biochemistry 40: 1-10.
Widyastuti, S.M. 2007. Peran Trichoderma spp. dalam Revitalisasi Kehutanan di Indonesia. UGM Press: Yogyakarta.
Wulandari D. 2013. Pengaruh dekomposer Trichoderma harzianum terhadap pertumbuhan dan hasil sawi hijau pada tanah gambut. Jurnal Sains Mahasiswa Pertanian 2(1): 1-11.