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      Bactérias promotoras de crescimento e adubação nitrogenada no crescimento inicial de cana-de-açúcar proveniente de mudas pré-brotadas Translated title: Plant growth-promoting bacteria and nitrogen fertilization effect on the initial growth of sugarcane from pre-sprouted seedlings

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          Abstract

          O objetivo deste trabalho foi avaliar os efeitos da inoculação de bactérias promotoras de crescimento sobre a formação de mudas pré-brotadas de cana-de-açúcar, oriundas de gemas individualizadas, e quantificar o crescimento inicial dessas mudas, em associação à aplicação de nitrogênio, em solo de baixa fertilidade. Foram conduzidos dois experimentos: um em casa de vegetação, com duração de 50 dias, e o outro, em vasos no campo, com duração de 180 dias. Em ambos os experimentos, utilizou-se o delineamento de blocos ao acaso, em arranjo fatorial 2x3, no primeiro experimento - com ou sem inoculante, e com três quantidades de reserva nas gemas -, e 2x2x4, no segundo - com ou sem inoculante, com ou sem nitrogênio, avaliados em quatro épocas: aos 45, 90, 135 e 180 dias. O inoculante produziu efeito na fase inicial de crescimento das mudas pré-brotadas, com aumento na velocidade de brotação e no acúmulo da matéria seca de raízes e da parte aérea, independentemente da quantidade de reserva da gema. No segundo experimento, o inoculante promoveu ganhos no crescimento inicial da parte aérea e do sistema radicular, até os 180 dias após o transplantio, com aumento em altura, perfilhamento, diâmetro do colmo, produção da matéria seca de colmos e de palha e do comprimento radicular, independentemente da aplicação de nitrogênio. O inoculante tem efeito fisiológico positivo sobre o crescimento das plantas.

          Translated abstract

          The objective of this work was to evaluate the effects of the inoculation with plant growth-promoting bacteria on the formation of sugarcane pre-sprouted seedlings, originated from individual buds, and to quantify the initial growth of these seedlings in association with nitrogen application, in a low fertility soil. Two experiments were carried out: one in greenhouse conditions, with a time span of 50 days, and the other in vases under field conditions, with a time span of 180 days. In both experiments, a randomized complete block design was used with a factorial arrangement of 2x3, in the first experiment - with or without inoculation, and with three quantities of bud reserve -, and of 2x2x4, in the second one - with or without inoculation, with or without nitrogen, evaluated in four times: at 45, 90, 135, and 180 days. The inoculant had effect on the initial growth of the pre-sprouted seedlings, increasing sprouting speed and dry matter accumulation on roots and shoots, regardless of the bud reserve amount. In the second experiment, the inoculant increased the initial growth of shoots and root system up to 180 days after transplantation, increasing height, tillering, stalk diameter, dry matter production of stalks and straw, and root length, regardless of nitrogen application. The inoculant has a positive physiological effect on plant growth.

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          Use of nitrogen-fixing bacteria as biofertiliser for non-legumes: prospects and challenges.

          The potential of nitrogen-fixing (NF) bacteria to form a symbiotic relationship with leguminous plants and fix atmospheric nitrogen has been exploited in the field to meet the nitrogen requirement of the latter. This phenomenon provides an alternative to the use of the nitrogenous fertiliser whose excessive and imbalanced use over the decades has contributed to green house emission (N2O) and underground water leaching. Recently, it was observed that non-leguminous plants like rice, sugarcane, wheat and maize form an extended niche for various species of NF bacteria. These bacteria thrive within the plant, successfully colonizing roots, stems and leaves. During the association, the invading bacteria benefit the acquired host with a marked increase in plant growth, vigor and yield. With increasing population, the demand of non-leguminous plant products is growing. In this regard, the richness of NF flora within non-leguminous plants and extent of their interaction with the host definitely shows a ray of hope in developing an ecofriendly alternative to the nitrogenous fertilisers. In this review, we have discussed the association of NF bacteria with various non-leguminous plants emphasizing on their potential to promote host plant growth and yield. In addition, plant growth-promoting traits observed in these NF bacteria and their mode of interaction with the host plant have been described briefly.
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            Sistema brasileiro de classificação de solos

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              Utilização prática da análise de crescimento vegetal

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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                pab
                Pesquisa Agropecuária Brasileira
                Pesq. agropec. bras.
                Embrapa Informação Tecnológica (Brasília )
                1678-3921
                January 2015
                : 50
                : 1
                : 33-43
                Affiliations
                [1 ] Universidade Estadual Paulista Brazil
                [2 ] Agência Paulista de Tecnologia dos Agronegócios Brazil
                [3 ] Embrapa Agrobiologia Brazil
                [4 ] Agência Paulista de Tecnologia dos Agronegócios Brazil
                Article
                S0100-204X2015000100033
                10.1590/S0100-204X2015000100004
                0866abac-8147-4bc5-a305-6d938ee278d9

                http://creativecommons.org/licenses/by/4.0/

                History
                Product

                SciELO Brazil

                Self URI (journal page): http://www.scielo.br/scielo.php?script=sci_serial&pid=0100-204X&lng=en
                Categories
                AGRICULTURE, DAIRY & ANIMAL SCIENCE
                AGRICULTURE, MULTIDISCIPLINARY

                Animal agriculture,General agriculture
                Saccharum,diazotrophic bactéria,biofertilizer,phytohormones,biological nitrogen fixation.,bactérias diazotróficas,biofertilizante,fitormônios,fixação biológica de nitrogênio.

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