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首页> 外文期刊>Cahiers Agricultures >Improvement of production technology for seed yams ( Dioscorea rotundata Poir.)
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Improvement of production technology for seed yams ( Dioscorea rotundata Poir.)

机译:改良种子山药的生产技术(Dioscorea rotundata Poir。)

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White yam (Dioscorea rotundata Poir.) is an annual crop grown almost exclusively for its tubers, which are a good source of carbohydrates. It is mainly cropped in the "yam zone", an area extending from the Cameroonian mountains to central Cote d’Ivoire. Here food yams play a vital role in nutrition, traditional culture, rituals, religion, and local commerce. The major constraint to yam production is the cost of planting material, which represents 38-45% of total production costs. This study was undertaken to investigate (i) different sprouting media which could replace sawdust for germination of yam minisetts; (ii) the effect of different types of mulch, plant staking, and population densities on seed yam yields, using 20 to 30g minisetts as planting material. Sprouting media, such as topsoil, sand, coffee husks, and gravel can replace sawdust for germination of yam minisetts (Table 1). The very porous latter three media must be mulched in order to improve water retention; watering frequency should also be increased to keep these media permanently wet, thus improving sprouting conditions. Healing minisett wounds for 1, 2, or 3 days increased rotting (Table 2). Polyethylene mulch, with the white side up, increased seed yam yields (23.75t/ha). This practice, combined with plant staking, increased seed yam yields even further (30.50t/ha). In the absence of black-and-white polyethylene mulch, staking yam plants increased seed yam yields under standard farm conditions (22.75t/ha). When yam plants were neither mulched nor staked, yield dropped drastically (13.73t/ha) because of tuber weight reduction (Table 3). Using plastic mulch and/or staking yam plants provided the best conditions for the production of abundant high quality planting material. The performance of minisetts under plastic mulch (white side up) was better than without mulch (Table 4). At each plant density, the mean tuber size was over 50% larger under plastic mulch than in the no-mulch treatment; the proportion of marketable tubers (more than 200g) was also greater with mulch. Tuber size decreased with increasing plant densities. For cv Malende (lowland cultivar), the mean tuber weight ranged from 940.54g at 20,000 plants/ha to 311.47g at 100,000 plants/ha. With cv Bonakanda (medium elevation cultivar), mean tuber weight was lowest in the no-mulch treatment (ranging from 533.74g at 20 000 plants/ha to 182.14g at 100,000 plants/ha); the yield was also the lowest (16.32t/ha). To produce good quality seed yams, cultivars adapted to the ecological conditions of the production zone should be chosen; yam plants should also be mulch and/or staked, and high density plant populations (80,000 to 100,000 plants/ha) should be adopted to obtain high yields (28.90 to 30.40 t/ha, respectively).
机译:白薯(Dioscorea rotundata Poir。)是一年生作物,几乎专门用于块茎,而块茎是碳水化合物的良好来源。它主要在“山药区”种植,该区从喀麦隆山脉延伸到科特迪瓦中部。在这里,山药在营养,传统文化,仪式,宗教和当地商业中起着至关重要的作用。产量的主要限制因素是种植材料的成本,占总生产成本的38-45%。这项研究的目的是调查(i)可以代替木屑发芽山药微型定植的不同发芽培养基; (ii)使用20至30克小型定居点作为种植材料,不同类型的覆盖物,植物桩号和种群密度对种子山药产量的影响。发芽的介质(例如表土,沙子,咖啡果壳和砾石)可以代替锯末,从而使山药微型定居点发芽(表1)。必须覆盖非常多孔的后三种介质,以提高保水性。还应增加浇水频率,以使这些培养基永久湿润,从而改善发芽条件。愈合minisett伤口1、2或3天会增加腐烂(表2)。聚乙烯覆盖物(白色面朝上)增加了种子山药的产量(23.75t / ha)。这种做法,再加上植物立桩,可以进一步提高山药的产量(30.50t / ha)。在没有黑白聚乙烯覆盖物的情况下,在标准农场条件下(22.75t / ha)对山药植物进行放样可提高种子山药的产量。当山药植株既不覆盖也不放牧时,由于块茎减重,产量急剧下降(13.73t / ha)(表3)。使用塑料覆盖和/或山药桩为生产丰富的高质量种植材料提供了最佳条件。微型覆盖物(白色面朝上)下的性能优于无覆盖物(表4)。在每种植物密度下,塑料覆盖的平均块茎尺寸比非覆盖处理大50%以上。覆盖的市售块茎(大于200克)的比例也更大。块茎大小随植物密度的增加而减小。对于cv Malende(低地栽培品种),平均块茎重量在20,000.00公顷/公顷时为940.54g至100,000.000公顷/公顷时为311.47g。对于cv Bonakanda(中等海拔品种),在不覆盖处理中平均块茎重量最低(从20000株/公顷的533.74g到100,000株/公顷的182.14g);产量也是最低的(16.32t / ha)。为了生产优质的山药,应选择适合生产区生态条件的品种。山药植物也应进行覆盖和/或放牧,并且应采用高密度植物种群(80,000至100,000株/公顷)以获得高产(分别为28.90至30.40吨/公顷)。

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