• Tidak ada hasil yang ditemukan

Allemann, J., & Mphundi, P. M. (2010). Screening of some South African maize (Zea mays L.) cultivars for acetochlor tolerance. South African Journal of

Plant and Soil, 27(3), 235-241.

https://doi.org/10.1080/02571862.2010.10639992.

Alonso, D. G., Koskinen, W. C., Oliveira Jr, R. S., Constantin, J., & Mislankar, S.

(2011). Sorption–desorption of indaziflam in selected agricultural soils.

Journal of Agricultural and Food Chemistry, 59(24), 13096-13101.

https://doi.org/10.1021/jf203014g.

Ampong-Nyarko, K., De Datta, S. K., & Dingkuhn, M. (1992). Physiological response of rice and weeds to low light intensity at different growth stages.

Weed Research, 32(6), 465-472. https://doi.org/10.1111/j.1365-3180.1992.tb01907.x.

Armel, G. R., Wilson, H. P., Richardson, R. J., & Hines, T. E. (2003). Mesotrione alone and in mixtures with glyphosate in glyphosate-resistant corn (Zea mays). Weed Technology, 17(4), 680-685. https://doi.org/10.1614/WT02-77.

Ashton, F. M., Klingman, G. C., & Noordhoff, L. J. (1982). Weed science:

principles and practices (2nd ed.). John Wiley and Sons, Inc. New York. p 257-259.

Avila-Garcia, W. V., & Mallory-Smith, C. (2011). Glyphosate-resistant Italian ryegrass (Lolium perenne) populations also exhibit resistance to glufosinate. Weed Science, 59(3), 305-309. https://doi.org/10.1614/WS-D-11-00012.1.

Bentivegna, D. J., Moyano, G. L., Daddario, J. F. F., & Tucat, G. (2017).

Determination of optimal doses of glyphosate for controlling weeds at several stages in Southwestern Buenos Aires Province (Argentina).

Journal of Plant Protection Research, 57(4), 347-354.

https://doi.org/10.1515/jppr-2017-0047.

Brabham, C., Lei, L., Gu, Y., Stork, J., Barrett, M., & DeBolt, S. (2014).

Indaziflam herbicidal action: a potent cellulose biosynthesis inhibitor.

Plant Physiology, 166(3), 1177-1185.

https://doi.org/10.1104/pp.114.241950.

Breden, G., & James, T. B. (2009). Goosegrass (Eleusine indica). Turfgrass Science. University of Tenessee.

Chen, J. C., Huang, H. J., Wei, S. H., Zhang, C. X., & Huang, Z. F. (2015).

Characterization of glyphosate-resistant goosegrass (Eleusine indica)

populations in China. Journal of Integrative Agriculture, 14(5), 919-925.

https://doi.org/10.1016/S2095-3119(14)60910-2.

Chin, H. F. (1979). Weed seed - a potential source of danger. Pg.115–119 in L. T.

Kwee, ed Proceedings of the Plant Protection Seminar. Kuala Lumpur, Malaysia, Malaysian Plant Protection Society.

Dalimuthe, S. P., Purba, E., & Meiriani. (2015). Respons dosis biotip rumput belulang [Eleusine indica (L.) Gaertn] resisten-glifosat terhadap glifosat, parakuat dan indaziflam. Jurnal Online Agroekoteknologi, 3(2), 625-633.

Direktorat Jenderal Perkebunan. (2019). Statistik perkebunan indonesia komoditas kelapa sawit 2017-2019 Kementerian Pertanian, Jakarta.

Direktorat Jenderal Perkebunan. (2020). Statistik perkebunan indonesia komoditas kelapa sawit 2018-2020 Kementerian Pertanian, Jakarta.

Djojosumarto, P. (2008). Teknik aplikasi pestisida pertanian. Kanisius.

Yogyakarta.

Duke, S. O. (1985). Weed physiology. Vol. II. Herbicide Physiology, CRC Press, Boca Raton. Prado, R. (2017). Pro-106-Ser mutation and EPSPS overexpression acting together simultaneously in glyphosate-resistant goosegrass (Eleusine indica). Scientific Reports, 7(1), 1-10. https://doi.org/10.1038/s41598-017-06772-1.

Giles, K. L., Cohen, D., & Beardsell, M. F. (1976). Effects of water stress on the ultrastructure of leaf cells of Sorghum bicolor. Plant Physiology, 57(1), 11-14. https://doi.org/10.1104/pp.57.1.11.

Golob, C. T., Williams, M. W., & Johnston, W. J. (2008). Efficacy of a new potassium salt formulation of glyphosate (roundup promax) compared to other formulations of glyphosate. Washington State University, United States.

Grey, T. L., Webster, T. M., & Culpepper, A. S. (2008). Weed control as affected by pendimethalin timing and application method in conservation tillage cotton (Gossypium hirsutum L.). The Journal of Cotton Science, 12, 318-324.

Hager, A. G., & Refsell, D. (2008). Weed resistance to herbicides. Department of Crop Sciences, America. http://ipm.illionis.edu.

Haitas, V. C., Kotoula‐Syka, E., & Eleftherohorinos, I. G. (1995). Influence of propaquizafop application rate and time on Sorghum halepense (L.) Pers.

control and cotton (Gossypium hirsutum) yield. Weed Research, 35(1), 1-6. https://doi.org/10.1111/j.1365-3180.1995.tb02009.x.

Hambali, D., Purba, E., & Kardhinata, E. H. (2015). Dose response biotip rumput belulang [Eleusine indica (L.) Gaertn] resisten-parakuat terhadap parakuat, diuron, dan ametrin. Jurnal Online Agroekoteknologi, 3(2), 574-580.

Heap, I. (2021). International survey of herbicide resistant weeds.

http://www.weedscience.com. Diakses tanggal 22 Mei 2021.

Herrmann, C. M., Goll, M. A., Phillippo, C. J., & Zandstra, B. H. (2017).

Postemergence weed control in onion with bentazon, flumioxazin, and oxyfluorfen. Weed Technology, 31(2), 279-290.

https://doi.org/10.1017/wet.2016.16.

Hess, M., Barralis, G., Bleiholder, H., Buhr, L., Eggers, T. H., Hack, H., & Stauss, R. (1997). Use of the extended BBCH scale-general for the descriptions of the growth stages of mono; and dicotyledonous weed species. Weed Research, 37(6), 433-441.

Holm, L. G., Plucknett, D. L., Pancho, J. V., & Herberger, J. P. (1977). The world's worst weeds. Distribution and biology. University Press of Hawaii, Honolulu, Hawaii. 609 pp.

Huffman, J. L., Riggins, C. W., Steckel, L. E., & Tranel, P. J. (2016). The EPSPS Pro106Ser substitution solely accounts for glyphosate resistance in a goosegrass (Eleusine indica) population from Tennessee, United States.

Journal of Integrative Agriculture, 15(6), 1304-1312.

https://doi.org/10.1016/S2095-3119(15)61220-5.

Ismail, B. S., Chuah, T. S., Salmijah, S., Teng, Y. T., & Schumacher, R. W.

(2002). Germination and seedling emergence of glyphosate‐resistant and susceptible biotypes of goosegrass (Eleusine indica [L.] Gaertn.). Weed Biology and Management, 2(4), 177-185.

Jalaludin, A., Ngim, J., Bakar, B. H. J, & Alias, Z. (2010). Preliminary findings of potentially resistant goosegrass (Eleusine indica) to glufosinate‐ammonium in Malaysia. Weed Biology and Management, 10(4), 256-260. https://doi.org/10.1111/j.1445-6664.2010.00392.x.

Jalaludin, A., Yu, Q., & Powles, S. B. (2015). Multiple resistance across glufosinate, glyphosate, paraquat and ACC ase‐inhibiting herbicides in an Eleusine indica population. Weed Research, 55(1), 82-89.

Jalaludin, A., Yu, Q., Zoellner, P., Beffa, R., & Powles, S. B. (2017).

Characterisation of glufosinate resistance mechanisms in Eleusine indica.

Pest Management Science, 73(6), 1091-1100.

https://doi.org/10.1002/ps.4528.

Jasieniuk, M., Brûlé-Babel, A. L., & Morrison, I. N. (1996). The evolution and genetics of herbicide resistance in weeds. Weed Science, 44(1), 176-193.

https://doi.org/10.1017/S0043174500093747.

Johansen, D. A. (1940). Plant Microtechnique. McGraw-Hill Book Company, Inc:

London; 530p.

Kaundun, S. S., Zelaya, I. A., Dale, R. P., Lycett, A. J., Carter, P., Sharples, K. R.,

& McIndoe, E. (2008). Importance of the P106S target-site mutation in conferring resistance to glyphosate in a goosegrass (Eleusine indica) population from the Philippines. Weed Science, 56(5), 637-646.

https://doi.org/10.1614/WS-07-148.1.

Knezevic, S. Z., Jhala, A., & Gaines, T. (2017). Herbicide resistance and moleculer aspects 2nd edition. Encyclopedia of Applied. Plant Sciences, 3, 455-458. http://dx.doi.org/10.1016/B978-0-12-394807-6.00025-3.

Knezevic, S. Z., Streibig, J. C., & Ritz, C. (2007). Utilizing R software package for dose-response studies: the concept and data analysis. Weed Technology, 21(3), 840-848. https://doi.org/10.1614/WT-06-161.1.

Kurniadie, D., Sumekar, Y., & Nulkarim, S. (2019). Pengaruh perbedaan waktu turun hujan terhadap aplikasi herbisida kalium glifosat dalam mengendalikan gulma dominan kelapa sawit. Kultivasi, 18(1), 817-826.

https://doi.org/10.24198/kltv.v18i1.20988.

Lee, L. J., & Ngim, J. (2000). A first report of glyphosate‐resistant goosegrass (Eleusine indica (L) Gaertn) in Malaysia. Pest Management Science, 56(4), 336-339.

Lewis, D. F., McElroy, S., & Breeden, G. K. (2012). Control of summer annual grasses during seeded zoysiagrass establishment with various timings and rates of fluazifop, triclopyr, and fluazifop plus triclopyr. Weed Technology, 26(2), 267-271. https://doi.org/10.1614/WT-D-11-00117.1.

Lubis, L. A., Purba, E., & Sipayung, R. (2012). Respons dosis biotip Eleusine indica resisten-glifosat terhadap glifosat, parakuat, dan glufosinat. Jurnal Online Agroekoteknologi, 1(1), 109-123.

McCullough, P. E., Yu, J., & de Barreda, D. G. (2013). Efficacy of preemergence herbicides for controlling a dinitroaniline-resistant goosegrass (Eleusine indica) in Georgia. Weed Technology, 27(4), 639-644.

https://doi.org/10.1614/WT-D-13-00060.1.

Mohamad, R. B., Wibawa, W., Mohayidin, M. G., Puteh, A. B., Juraimi, A. S., Awang, Y., & Lassim, M. B. M. (2010). Management of mixed weeds in young oil-palm plantation with selected broad-spectrum herbicides.

Pertanika Journal of Tropical Agricultural Science, 33(2), 193-203.

Molin, W. T., Wright, A. A., & Nandula, V. K. (2013). Glyphosate-resistant goosegrass from Mississippi. Agronomy, 3(2), 474-487.

https://doi.org/10.3390/agronomy3020474.

Monaco, T. J., Weller, S. C., & Ashton, F. M. (2002). Weed science : principles and practices 4th edition. JohnWiley & Sons, Inc, United State.

Mueller, T. C., Barnett, K. A., Brosnan, J. T., & Steckel, L. E. (2011).

Glyphosate-resistant goosegrass (Eleusine indica) confirmed in Tennessee.

Weed Science, 59(4), 562-566. https://doi.org/10.1614/WS-D-11-00063.1.

Munthe, A. S., Purba, E., & Lahay, R. R. (2016). Germination seed response of Eleusine indica L. Gaertn to depth and buried time. Jurnal Agroekoteknologi, 4(4), 2367-2375.

Mysore, K. S., & Baird, V. (1997). Nuclear DNA content in species of Eleusine (Graminae): a critical re-evaluation using laser flow cytometry. Plant

Systematics and Evolution, 207, 1–11.

https://doi.org/10.1007/BF00985206.

Nandula, V. K., Reddy, K. N., Duke, S. O., & Poston, D. H. (2005). Glyphosate-resistant weeds: current status and future outlook. Outlooks on Pest Management, 16(4), 183-187.

Nasution, U. (1983). Gulma dan pengendaliannya di perkebunan karet Sumatera Utara dan Aceh. Pusat Penelitian dan Pengembangan Perkebunan. Tanjung Morawa.

Niki, T., Yoshida, S., & Sakai, A. (1978). Studies on chilling injury in plant cells I. Ultrastructural changes associated with chilling injury in callus tissues of Cornus stolonifera. Plant and Cell Physiology, 19(1), 139-148.

https://doi.org/10.1093/oxfordjournals.pcp.a075568.

Ng, C. H., Ratnam, W., Surif, S., & Ismail, B. S. (2004). Inheritance of glyphosate resistance in goosegrass (Eleusine indica). Weed Science, 52(4), 564-570.

https://doi.org/10.1614/WS-03-105R2.

Owen, M. J., & Powles, S. B. (2009). Distribution and frequency of herbicide-resistant wild oat (Avena spp.) across the Western Australian grain belt.

Crop and Pasture Science, 60(1), 25-31. https://doi.org/10.1071/CP08178.

Pallett, K. E., Little, J. P., Veerasekaran, P., & Viviani, F. (1997). Inhibition of 4-hydroxyphenylpyruvate dioxygenase: the mode of action of herbicide RPA

201772 (isoxaflutole). Pesticide Science, 50, 83-84.

https://doi.org/10.1002/(SICI)1096-9063(199705)50:1%3C83::AID-PS554%3E3.0.CO;2-S.

Panda, S., Lal, S., Kewat, M. L., Sharma, J. K., & Saini, M. K. (2015). Weed control in soybean with propaquizafop alone and in mixture with imazethapyr. Indian Journal of Weed Science, 47(1), 31-33.

Permana, J., Widaryanto, E., & Wicaksono, K. P. (2018). Penggunaan herbisida oksifluorfen dan pendimethalin pada tanaman bawang merah (Allium ascalonicum L.). Jurnal Produksi Tanaman, 6(4), 561-568.

Powles, S. B., & Yu, Q. (2010). Evolution in action: plants resistant to herbicides.

Annual Review of Plant Biology, 61, 317-347.

https://doi.org/10.1146/annurev-arplant-042809-112119.

Purba, E. (2009). Keanekaragaman herbisida dalam pengendalian gulma mengatasi populasi gulma resisten dan toleran herbisida. Pidato Pengukuhan Guru Besar Tetap Universitas Sumatera Utara, Medan.

Rahmadhani, A., Purba, E., & Hanafiah, D. S. (2016). Respons lima populasi Eleusine indica L. Gaertn resisten-herbisida terhadap glifosat dan parakuat. Jurnal Online Agroekoteknologi, 4(4), 2245–2254.

Ren, B., Zhang, J., Dong, S., Liu, P., & Zhao, B. (2016). Effects of waterlogging on leaf mesophyll cell ultrastructure and photosynthetic characteristics of

summer maize. PloS One, 11(9), e0161424.

https://doi.org/10.1371/journal.pone.0161424.

Rusli, M. H., Seman, I. A., Kamarudin, N., & Chuan, S. K. (2014). The combination effect of MSMA and Diuron (MONEX HC) in controlling glyphosate resistant Eleusine indica in oil palm plantation. The Planter, 90(1064), 801-815.

Sahid, I., Hamzah, A., & Aris, P. M. (1992). Effects of paraquat and alachlor on soil microorganisms in peat soil. Pertanika, 15, 121-121.

Samedani, B., Juraimi, A. S., Abdullah, S. A. S., Rafii, M. Y., Rahim, A. A., &

Anwar, M. (2014). Effect of cover crops on weed community and oil palm yield. International Journal of Agriculture and Biology, 16(1), 23-31.

Santhakumar, N. T. (2003). Mechanism of herbicide resistance in weed. Plant &

Soil Sciences University of Massachusetts, Amherst. Diakses dari http://www.weedscience.org.

Saw, K. O. (2011). Morphological and microscopical characters of Eleusine indica (L.) Gaertn. Universities Research Journal, 4(1), 225-244.

Sebastian, D. J., Nissen, S. J., & Rodrigues, J. D. S. (2016). Pre-emergence control of six invasive winter annual grasses with imazapic and indaziflam. Invasive Plant Science and Management, 9(4), 308-316.

https://doi.org/10.1614/IPSM-D-16-00045.1.

Seng, C. T., Lun, L. V., San, C. T., & Sahid, I. B. (2010). Initial report of glufosinate and paraquat multiple resistance that evolved in a biotype of goosegrass (Eleusine indica) in Malaysia. Weed Biology and Management, 10(4), 229-233. https://doi.org/10.1111/j.1445-6664.2010.00388.x.

Seras. (1994). Standard operating procedures: plant biomass determination.

scientific engineering response and analytical services. 1–5 p.

https://doi.org/10.1201/b14412-17.

Serikat Petani Kelapa Sawit. (2016). Standar operasional prosedur manajemen pemeliharaan tanaman kelapa sawit. Online. Diakses dari:

https://spks.or.id/file/publikasi/7__SOP_PEMELIHARAAN_Fixed-edit1.pdf.

Shurtleff, M. C., Fermanian, T. W., & Randell, R. (1987). Controlling turfgrass pests. Prentice Hall, International Inc. Englewood Cliffs. New Jersey.

Sim, K. C., Tan, S. H. A., Wong, K. J., & Chuah, T. S. (2018). Efficacy of MSMA based premix herbicides on control of goosegrass (Eleusine indica) that evolved resistance across glyphosate, glufosinate and fluazifop. The Planter, 94(1102), 13-20.

Simarmata, M. (2009). Herbicide combination for controlling glyphosate resistant weed. Akta Agrosia, 12(1), 83-88.

Simarmata, M., Bughrara, S., & Penner, D. (2005). Inheritance of glyphosate resistance in rigid ryegrass (Lolium rigidum) from California. Weed Science, 53(5), 615-619. https://doi.org/10.1614/WS-04-187R.1.

Simarmata, M., Kaufmann, J. E., & Penner, D. (2003). Potential basis of glyphosate resistance in California rigid ryegrass (Lolium rigidum). Weed Science, 51(5), 678-682. https://doi.org/10.1614/P2002-124.

Soltani, N., Nurse, R. E., & Sikkema, P. H. (2012). Weed control in dry bean with pendimethalin plus reduced rates of imazethapyr. International Research Journal of Agricultural Science and Soil Science, 2(8), 312-317.

Soltani, N., Nurse, R. E., Shropshire, C., & Sikkema, P. H. (2013). Weed control in white bean with pendimethalin applied preplant followed by postemergence broadleaved herbicides. The Open Plant Science Journal, 7, 24-30.

Steckel, L. (2010). Goosegrass. The University of Tennessee.

http://turfgrass.weedscience. Diaksses pada tanggal 05 April 2016.

Sumintapura, A. Z., & Soeratno, I. (1975). Herbisida dan pemakaiannya. bagian ilmu produksi tanaman. Universitas Padjajaran. Bandung. Hal 15-77.

Syahputra, A. B., Purba. E., & Hasanah, Y. (2016). Sebaran gulma Eleusine indica L. Gaertn resisten ganda herbisida pada satu kebun kelapa sawit di Sumatera Utara. Jurnal Online Agroekoteknologi, 4(4), 2407-2419.

Takano, H. K., Oliveira Jr, R. S., Constantin, J., Silva, V. F. V., & Mendes, R. R.

(2018). Chemical control of glyphosate-resistant goosegrass. Planta Daninha, 36, 1-10. http://dx.doi.org/10.1590/s0100-83582018360100055.

Takano, H. K., Oliveira, J. R. S., Constantin, J., Braz, G. B. P., & Padovese, J. C.

(2016). Growth, development and seed production of goosegrass. Planta Daninha, 34(2), 249–258. https://doi.org/10.1590/s0100-83582016340200006.

Tampubolon, K., & Purba, E. (2018a). Screening single resistance of Eleusine indica on oil palm plantation in Padang Lawas and Tapanuli Selatan Regency Indonesia. Jurnal Natural, 18(2), 101-106.

https://doi.org/10.24815/jn.v18i2.11223.

Tampubolon, K., & Purba, E. (2018b). Konfirmasi resistensi Eleusine indica terhadap glifosat pada perkebunan kelapa sawit di Kabupaten Langkat.

Jurnal Pertanian Tropik, 5(2), 276-283.

https://doi.org/10.32734/jpt.v5i2.3016.

Tampubolon, K., Purba, E., Basyuni, M., & Hanafiah, D. S. (2018a). Distribution mapping of glyphosate-resistant Eleusine indica in Serdang Bedagai

Regency. Jurnal Natural, 18(3), 127-134.

https://doi.org/10.24815/jn.v18i3.11201.

Tampubolon, K., Purba, E., Hanafiah, D. S., & Basyuni, M. (2018b). Sebaran populasi dan klasifikasi resistensi Eleusine indica terhadap glifosat pada perkebunan kelapa sawit di Kabupaten Deli Serdang. Caraka Tani:

Journal of Sustainable Agriculture, 33(2), 146-152.

https://doi.org/10.20961/carakatani.v33i2.24300.

Tampubolon, K., Purba, E., & Hanafiah, D. S. (2018c). Resistensi Eleusine indica terhadap glifosat pada perkebunan kelapa sawit di Kabupaten Batu Bara.

Jurnal Agrotek Tropika, 6(3), 133-139.

http://dx.doi.org/10.23960/jat.v6i3.2798.

Tampubolon, K., Purba, E., Basyuni, M., & Hanafiah, D. S. (2019a). Glyphosate resistance of Eleusine indica populations from North Sumatra, Indonesia.

Biodiversitas Journal of Biological Diversity, 20(7), 1910-1916.

https://doi.org/10.13057/biodiv/d200717.

Tampubolon, K., Purba, E., Basyuni, M., & Hanafiah, D. S. (2019b). Histological, physiological and agronomic characters of glyphosate-resistant Eleusine indica biotypes. Internasional Journal of Agriculture and Biology, 22(6), 1636-1644. https://doi.org/10.17957/IJAB/15.1245.

Tampubolon, P. K., Purba, E., & Mukhlis. (2019c). The efficacy indaziflam on weed seedbank vertically on the ultisol soil on palm oil plantations. In IOP Conference Series: Earth and Environmental Science. 260, 012163.

Thakare, S. S., Chirde, P. N., Shingrup P. V., Deshmukh, J. P., Kakde, S. U., &

Gholap, A. N. (2018). Weed management in onion by pre- and post-emergence herbicides. International Journal of Current Microbiology and Applied Sciences, Special Issue-6, 2197-2202.

Tu, M., Hurd, C., & Randall, J. M. (2001). Weed control methods handbook: tools and techniques for use in natural areas. The Nature Conservancy.

Umiyati, U. (2016). Studi efektivitas herbisida oksifluorfen 240 gl-1 sebagai pengendali gulma pada budidaya bawang merah (Allium ascalonicum L.).

Kultivasi, 15(1), 46-51. https://doi.org/10.24198/kltv.v15i1.12003.

Uva, R. H., Neal, J. C., & DiTomaso, J. M. (1997). Weeds of the Northeast.

Cornell University Press, Ithaca.

Valverde, B. E. (2003). Herbicide resistance management in developing countries.

FAO Plant Production and Protection Papers, 223-244.

Valverde, B. E., Riches, C. R., & Caseley, J. C. (2000). Prevention and management of herbicide resistant weeds in rice: experiences from Central America with Echinochloa colona. Cámara de Insumos Agropecuarios, Costa Rica. 123 p.

Weaver, S., Downs, M., & Neufeld, B. (2004). Response of paraquat-resistant and-susceptible horseweed (Conyza canadensis) to diquat, linuron, and oxyfluorfen. Weed Science, 52(4), 549-553. https://doi.org/10.1614/WS-03-102R.

Widaryanto, E., & Roviyanti, F. (2017). Efficacy of oxyfluorfen herbicide for weed control in broccoli (Brassica oleracea L. var. Italica). Asian Journal of Crop Science, 9(2), 28-34. http://dx.doi.org/10.3923/ajcs.2017.28.34.

Widayat, D., & Yustisiyanika, R. G. (2015). Pengaruh dosis herbisida glifosat terhadap gulma, pertumbuhan, dan hasil tiga kultivar kedelai (Glycine max (L.) pada sistem tanpa olah tanah (TOT). Kultivasi, 14(2), 23-28.

Willcox, T. (2012). Crowsfoot grass (Eleusine indica). Bulletin vol. 33 Weed Profile. United States.

Zagonel, J., Reghin, M. Y., & Venâncio, W. S. (1999). Controle pós-emergente de plantas daninhas em cenoura. Horticultura Brasileira, 17(1), 69-71.

http://dx.doi.org/10.1590/S0102-05361999000100020.

Zhang, C., Feng, L., He, T.T., Yang, C.H., Chen, G.Q., & Tian, X.S. (2015).

Investigating the mechanisms of glyphosate resistance in Goosegrass (Eleusine indica) population from South China. Journal of Integrative Agriculture. 14 (5): 909-918. https://doi.org/10.1016/S2095-3119(14)60890-X.

Zelaya, I. A., Owen, M. D. K., & VanGessel, M. J. (2004). Inheritance of evolved glyphosate resistance in Conyza canadensis (L.) Cronq. Theoretical and Applied Genetics, 110(1), 58-70. https://doi.org/10.1007/s00122-004-1804-8.

LAMPIRAN

Lampiran 1. Ringkasan One-way ANOVA mortalitas dan bobobt kering populasi Eleusine indica dari perkebunan kelapa sawit di Sumatera Utara.

Kabupaten db

Keterangan: nilai sig<0,05 menunjukkan berpengaruh nyata (*) dan nilai sig>0.05 menunjukkan pengaruh tidak nyata (tn).

Lampiran 2. One-way ANOVA SPSS biotip Eleusine indica resisten-glifosat bertahan hidup terhadap glifosat 1080 g b.a./ha pada pengujian campuran.

Source Sum of Squares df Mean Square F Sig Between Groups 149964,016 29 5171,173 18,681* 0,000

Within Groups 24913,867 90 276,821

Total 174877,882 119

CV= 31,66%

Lampiran 3. One-way ANOVA IBM SPSS jumlah anakan biotip Eleusine indica resisten-glifosat terhadap glifosat 1080 g b.a./ha pada pengujian campuran.

Source Sum of Squares df Mean Square F Sig.

Between Groups 55154,042 29 1901,864 9,896* 0,000

Within Groups 17296,750 90 192,186

Total 72450,792 119

CV= 29,85%

Lampiran 4. One-way ANOVA IBM SPSS fitotoksisitas biotip Eleusine indica resisten-glifosat terhadap glifosat 1080 g b.a./ha pada 3, 7, 21 hari setelah semprot (HSS) dalam pengujian campuran.

Source Sum of Squares df Mean Square F Sig.

7 HSS

Lampiran 5. One-way ANOVA IBM SPSS umur berbunga biotip Eleusine indica resisten-glifosat terhadap glifosat 1080 g b.a./ha pada pengujian campuran. resisten-glifosat terhadap glifosat 1080 g b.a./ha pada pengujian campuran.

Lampiran 7. One-way ANOVA IBM SPSS biotip Eleusine indica resisten-glifosat bertahan hidup terhadap MSMA+diuron dosis 2945+600 g b.a./ha pada pengujian herbisida campuran.

Lampiran 8. One-way ANOVA IBM SPSS jumlah anakan biotip Eleusine indica resisten-glifosat terhadap MSMA+diuron dosis 2945+600 g b.a./ha pada pengujian herbisida campuran.

Lampiran 9. One-way ANOVA IBM SPSS fitotoksisitas biotip Eleusine indica resisten-glifosat terhadap MSMA+diuron dosis 2945+600 g b.a./ha pada 3, 7, dan 21 hari setelah semprot (HSS).

Source Sum of Squares df Mean Square F Sig. indica resisten-glifosat terhadap MSMA+diuron dosis 2945+600 g b.a./ha pada pengujian herbisida campuran.

Source Sum of Squares df Mean Square F Sig.

Between Groups 42795,742 29 1475,715 407,094* 0,000

Within Groups 326,250 90 3,625

Total 43121,992 119

CV= 13,37%

Lampiran 11. One-way ANOVA IBM SPSS bobot kering biotip Eleusine indica resisten-glifosat terhadap MSMA+diuron dosis 2945+600 g b.a./ha pada pengujian herbisida campuran.

Lampiran 12. ANOVA IBM SPSS Eleusine indica sensitif-glifosat bertahan hidup pada pengujian resistensi ganda.

Lampiran 13. ANOVA IBM SPSS jumlah anakan Eleusine indica sensitif-glifosat pada 3 minggu setelah semprot (MSS) pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig. indica sensitif-glifosat pada 1, 3, 5, 7, dan 14 hari setelah semprot (HSS) dalam pengujian resistensi ganda.

5 HSS

Lampiran 16. ANOVA IBM SPSS bobot kering Eleusine indica sensitif-glifosat pada pengujian resistensi ganda.

Lampiran 17. Persamaan regresi probit lethal dose 50 (LD50) Eleusine indica sensitif-glifosat terhadap herbisida glifosat, parakuat, amonium glufosinat, dan triklopir pada pengujian resistensi ganda.

Regresi Probit Perlakuan Estimate Std. Error Sig.

Sensitif Glifosat 3,353 0,296 0,000

Intercept -6,212 0,708 0,000

Sensitif Parakuat 1,718 0,329 0,000

Intercept -1,343 0,620 0,030

Sensitif Amonium Glufosinat 2,487 0,121 0,000

Intercept -4,254 0,233 0,000

Sensitif Triklopir 1,720 0,094 0,000

Intercept -3,533 0,235 0,000

Lampiran 18. Lethal dose 50 (LD50) Eleusine indica sensitif-glifosat terhadap herbisida glifosat, parakuat, amonium glufosinat, dan triklopir menggunakan regresi probit pada pengujian resistensi ganda.

Probability Glifosat Parakuat Ammonium Glufosinat Triklopir

Probit

0,950 220,514 54,786 235,540 1022,446 indica sensitif-glifosat terhadap herbisida glifosat, parakuat, amonium glufosinat, dan triklopir pada pengujian resistensi ganda.

Regresi Probit Perlakuan Estimate Std. Error Sig.

Sensitif Glifosat -6,588 1,124 0,000

Intercept 12,744 2,262 0,000

Sensitif Parakuat -1,317 0,291 0,000

Intercept 1,084 0,592 0,067

Sensitif Amonium Glufosinat -2,743 0,219 0,000

Intercept 5,279 0,445 0,000

Sensitif Triklopir -1,719 0,291 0,000

Intercept 3,174 0,720 0,000

Lampiran 20. Reduksi pertumbuhan 50 (GR50) Eleusine indica sensitif-glifosat terhadap herbisida glifosat, parakuat, amonium glufosinat, dan triklopir menggunakan regresi probit pada pengujian resistensi ganda.

Probability Glifosat Parakuat Ammonium Glufosinat Triklopir

Probit

0,800 64,089 1,527 41,474 22,738

Lampiran 21. ANOVA IBM SPSS biotip Eleusine indica resisten-glifosat (03) bertahan hidup pada pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig.

Lampiran 22. ANOVA SPSS jumlah anakan biotip Eleusine indica resisten-glifosat (03) pada 3 MSS pada uji resistensi ganda.

Source Sum of Squares df Mean Square F Sig.

Lampiran 23. ANOVA IBM SPSS umur berbunga biotip Eleusine indica resisten-glifosat (03) pada pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig.

Lampiran 24. ANOVA IBM SPSS klorofil relatif daun (nilai SPAD) biotip Eleusine indica resisten-glifosat (03) pada 1, 3, 5, 7, dan 14 hari setelah semprot (HSS) dalam pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig.

Lampiran 25. ANOVA IBM SPSS bobot kering biotip Eleusine indica resisten-glifosat (03) pada pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig indica resisten-glifosat (03) terhadap herbisida glifosat, parakuat, amonium glufosinat, dan triklopir pada pengujian resistensi ganda.

Regresi Probit Perlakuan Estimate Std. Error Sig.

Biotip 03 Glifosat 1,006 0,056 0,000

Intercept -2,262 0,151 0,000

Biotip 03 Parakuat 1,265 0,064 0,000

Intercept -2,320 0,149 0,000

Biotip 03 Amonium Glufosinat 5,534 0,461 0,000

Intercept -11,158 0,984 0,000

Biotip 03 Triklopir 2,765 0,135 0,000

Intercept -6,139 0,323 0,000

Lampiran 27. Lethal dose 50 (LD50) biotip Eleusine indica resisten-glifosat (03) terhadap herbisida glifosat, parakuat, amonium glufosinat, dan triklopir menggunakan regresi probit pada pengujian resistensi ganda.

Probability Glifosat Parakuat Ammonium Glufosinat Triklopir

Probit

0,600 316,957 108,114 115,360 205,261

0,930 5205,587 1000,434 191,849 568,192

0,940 6237,373 1155,106 198,258 606,827

0,950 7665,983 1360,904 205,830 654,108

0,960 9767,794 1650,004 215,097 714,384

0,970 13157,149 2090,889 227,062 796,149 0,980 19549,263 2864,488 244,005 919,510 0,990 36490,026 4704,661 273,312 1153,884 Lampiran 28. Persamaan regresi probit reduksi pertumbuhan 50 (LD50) biotip

Eleusine indica resisten-glifosat (03) terhadap herbisida glifosat, parakuat, amonium glufosinat, dan triklopir pada pengujian resistensi ganda.

Regresi Probit Perlakuan Estimate Std. Error Sig.

Biotip 03 Glifosat -1,290 0,133 0,000

Intercept 3,015 0,362 0,000

Biotip 03 Parakuat -1,359 0,156 0,000

Intercept 2,670 0,323 0,000

Biotip 03 Amonium Glufosinat -2,034 0,197 0,000

Intercept 3,561 0,404 0,000

Biotip 03 Triklopir -4,178 0,522 0,000

Intercept 8,748 1,163 0,000

Lampiran 29. Reduksi pertumbuhan 50 (GR50) biotip Eleusine indica resisten-glifosat (03) terhadap herbisida resisten-glifosat, parakuat, amonium glufosinat, dan triklopir menggunakan regresi probit pada pengujian resistensi ganda.

Probability Glifosat Parakuat Ammonium Glufosinat Triklopir

Probit

0,010 13778,211 4763,171 783,607 447,189

0,020 8471,432 3000,818 575,558 384,813

0,030 6222,062 2238,358 473,221 349,828

0,040 4933,038 1795,391 408,416 325,623

0,050 4084,183 1500,573 362,306 307,175

0,060 3477,783 1288,103 327,184 292,299

0,070 3020,641 1126,711 299,202 279,849

0,080 2662,557 999,440 276,184 269,152

0,090 2373,888 896,219 256,792 259,780

0,100 2135,914 810,654 240,147 251,441

0,150 1379,248 535,066 181,960 219,670

Lampiran 30. ANOVA IBM SPSS biotip Eleusine indica resisten-glifosat (12) bertahan hidup pada pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig

Lampiran 31. ANOVA IBM SPSS jumlah anakan biotip Eleusine indica resisten-glifosat (12) pada pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig

Lampiran 32. ANOVA IBM SPSS umur berbunga biotip Eleusine indica resisten-glifosat (12) pada pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig. setelah semprot (HSS) dalam pengujian resistensi ganda.

Source Sum of Squares df Mean Square F Sig