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首页> 外文期刊>Agricultural Systems >Soil management: The key factors for higher productivity in the fields utilizing the system of rice intensification (SRI) in the central highland of Madagascar
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Soil management: The key factors for higher productivity in the fields utilizing the system of rice intensification (SRI) in the central highland of Madagascar

机译:土壤管理:利用马达加斯加中部高原稻米强化系统(SRI)提高田间生产力的关键因素

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The system of rice intensification (SRI) developed in Madagascar in the 1980s has been promoted as an integrated crop and resource management approach to rice-cultivation, especially for resource-limited smallholder farms. While advocates have claimed that SRI Could boost rice yields with less external input. many criticisms have challenged its effectiveness regarding yields and applicability to larger-scale rice farming systems. In this Study, we conducted a field survey and on-farm experiments to assess rice yield performance and key management practices on a few of the early SRI-practicing smallholder farms in the central highland of Madagascar.Rice grain yields at the survey fields were 9.9 t ha(-1) maximum without using mineral fertilizer. Deep plowing to the depth of 25-30 cm as well as SRI practices have been conducted Continuously since the early 1990s. In addition, an effective drainage system facilitated intensive water management at these high-yielding fields. On-farm experiments demonstrated some yield increases with no interaction for the examined SRI practices, though the effects were not great enough to explain the high yields at these fields. The soils of these high-yielding fields contained relatively large amounts of soil organic carbon (SOC) from the surface to the deep soil layers, and the soil mineralizable nitrogen was closely correlated with rice grain yields.The results indicated that the high yields at the fields of those who were early to adopt SRI were mainly due to the soil fertility associated with great nitrogen-supplying ability, rather than 'synergetic effects' of the SRI components. This high N-supplying ability of the soil and accumulated SOC from surface to deep soil layers were attributable to the long-term combined practices of extensive organic applications and deep plowing. Soil hydrology could be another key factor stimulating high rates of soil N-mineralization.These management practices were, however, only applied to the limited numbers of fields within less than 1.0 ha of total landholdings of these farmers due to the great demand in labor and organic resources and the difficulty in controlling irrigation water. Intensive weeding and widely spaced transplanting of Young seedlings were also performed in the fields with irrigation and drainage systems sufficient to avoid yield losses from flooding and drought. Although extensive and long-term systematic research is further required to fully assess the benefits of this sort of intensive management as opposed to conventional methods, the preferential allocation of intensive management by the successful SRI-adopters might be the implication of its location-specificity and difficulty in scaling up even within the resource-limited smallholder farms.
机译:1980年代在马达加斯加开发的稻米集约化(SRI)系统已作为一种综合的作物和资源管理方法进行稻米种植而得到推广,特别是对于资源有限的小农户。尽管拥护者声称,SRI可以在减少外部投入的情况下提高水稻产量。在产量和对大规模水稻种植系统的适用性方面,许多批评都对它的有效性提出了挑战。在这项研究中,我们进行了田野调查和农场实验,以评估马达加斯加中部高地一些采用SRI的早期小农户的水稻产量表现和关键管理措施,调查田地的稻米产量为9.9不使用矿物肥料时最大t ha(-1)。自1990年代初以来,已经连续进行了深耕25-30 cm的深度以及进行SRI作业。此外,有效的排水系统促进了这些高产田的集约化水管理。农场实验表明,对于所研究的SRI做法,单产有所提高,但没有相互影响,尽管效果还不足以解释这些田地的高产。这些高产田的土壤从表层到深层土壤均含有大量的有机碳(SOC),土壤可矿化氮与水稻籽粒产量密切相关。早期采用SRI的人的田地主要是由于土壤肥力和强大的供氮能力,而不是SRI成分的“协同效应”。土壤的这种高氮供应能力以及从表层到深层土壤的累积SOC归因于广泛的有机应用和深耕的长期结合实践。土壤水文学可能是刺激土壤氮矿化率高的另一个关键因素,但是由于劳动力和劳动力的巨大需求,这些管理实践仅适用于这些农民总土地少于1.0公顷的有限田地有机资源和控制灌溉水的困难。在农田上还进行了密集的除草和大面积移栽,其灌溉和排水系统足以避免洪水和干旱造成产量损失。尽管还需要进行广泛而长期的系统研究,以全面评估这种集约化管理相对于传统方法的好处,但成功的SRI采用者对集约化管理的优先分配可能是其位置特定性和即使在资源有限的小农户农场中也难以扩大规模。

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