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首页> 外文期刊>Chemosphere >Effect of systemic herbicides on N-2-fixing and phosphate solubilizing microorganisms in relation to availability of nitrogen and phosphorus in paddy soils of West Bengal
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Effect of systemic herbicides on N-2-fixing and phosphate solubilizing microorganisms in relation to availability of nitrogen and phosphorus in paddy soils of West Bengal

机译:系统性除草剂对西孟加拉邦稻田土壤固氮和固磷的影响

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摘要

A field experiment has been conducted with four systemic herbicides viz., butachlor [N-(butoxymethyl)-2-chloro-2',6'-diethyl-acetanilide],fluchloralin[N-(2-chloroethyl)-(2,6-dinitro-N-propyl-4-trifluoromethyl) aniline], oxadiazon [5-terbutyl-3-(2,4-dichloro-5-isopropoxyphenyl)-1,3,4-oxadiazol-2-one] and oxyfluorfen [2-chloro-1-(3-ethoxy-4-nitrophenyl)-4-(trifluoromethyl) benzene] at their recommended field rates (2.0, 1.5, 0.4 and 0.12 kg a.i. ha(-1), respectively) to investigate their effects on growth and activities of aerobic nonsymbiotic N-2-fixing bacteria and phosphate solubilizing microorganisms in relation to availability of nitrogen and phosphorus in the rhizosphere soils as well as yield of the rice crop (Oryza sativa L cv. IR-36). Application of herbicides, in general, highly stimulated the population and activities of the target microorganisms, which resulted in a greater amount of atmospheric nitrogen fixation and phosphate solubilization in the rhizosphere soils of the test crop. The greater microbial activities subsequently augmented the mineralization and availability of nitrogen and phosphorus in the soil solution, which in turn increased the yield of the crop. Among the herbicides, oxyfluorfen was most stimulative followed by fluchloralin and oxadiazon in augmenting the microbial activities in soil. Butachlor also accentuated the mineralization and availability of nitrogen due to higher incitement of non-symbiotic N2-fixing bacteria in paddy soil. The grain and straw yields of the crop were also significantly increased due to the application of oxyfluorfen (20.2% and 21%) followed by fluchloralin (13.1% and 15.4%) and butachlor (9.1% and 10.2%), respectively. (c) 2006 Elsevier Ltd. All rights reserved.
机译:已经对四种内吸性除草剂进行了田间试验,即丁草胺[N-(丁氧基甲基)-2-氯-2',6'-二乙基乙苯胺],氟氯林[N-(2-氯乙基)-(2,6 -二硝基-N-丙基-4-三氟甲基)苯胺],草二酮[5-叔丁基-3-(2,4-二氯-5-异丙氧基苯基)-1,3,4-恶二唑-2-一]和氟芴[2 -氯-1-(3-乙氧基-4-硝基苯基)-4-(三氟甲基)苯]在推荐的田间速率下(分别为2.0、1.5、0.4和0.12 kg ai ha(-1))研究其对有氧非共生性固氮菌N 2和可溶解磷酸盐的微生物的生长和活性与根际土壤中氮和磷的有效性以及水稻作物的产量的关系(Oryza sativa L cv。IR-36)。通常,除草剂的使用极大地刺激了目标微生物的种群和活性,从而导致了试验作物根际土壤中大量的固氮和磷酸盐增溶作用。较高的微生物活性随后增加了土壤溶液中矿化作用以及氮和磷的利用率,进而增加了农作物的产量。在除草剂中,在增加土壤中微生物的活性方面,氧氟芬的刺激性最高,其次是氟氯林和草二氮。丁草胺还加剧了稻田土壤中非共生固氮细菌的诱因,从而加剧了氮的矿化作用和氮的利用。作物的谷物和稻草单产也显着提高,这是因为分别施用了氟草醚(20.2%和21%),氟氯林(13.1%和15.4%)和丁草胺(9.1%和10.2%)。 (c)2006 Elsevier Ltd.保留所有权利。

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