首页> 外文期刊>American Journal of Plant Sciences >Effect of Indoor and Underground Storage on Efficient Vegetative Propagation of Dwarf Napier Grass (Pennisetum purpureum Schumach)
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Effect of Indoor and Underground Storage on Efficient Vegetative Propagation of Dwarf Napier Grass (Pennisetum purpureum Schumach)

机译:室内和地下贮藏对矮生api草(Pennisetum purpureum Schumach)有效营养繁殖的影响

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Dwarf, late-heading (DL) Napier grass is suitable for both cut-and-carry and grazing management due to sufficient yield and quality potential. This species can hardly produce viable seed, and thus vegetative propagation should be essential before winter in temperate regions of southern Kyushu. The objective of this study was to determine the efficient storage methods of DL vegetative propagation. Two experiments were carried out, the first focused on indoor storage of 10-node stem sections under room or chilling (10°C) conditions and the second, on underground storage of ten-node and one-node stem sections at 10 cm, 25 cm or 40 cm depth. After both storages, both of ten-node stem sections, cut into single nodes, and one-node stem sections were transplanted into the soil and counted for the emergence every month in 3 months of planting. In indoor-storage, while storage temperature hardly affected the emergence (P > 0.05), storage period significantly reduced the emergence percentage. In underground storage, while one-node storage achieved constantly 60% emergence, ten-node storage achieved a higher emergence at 80% under 25-cm and 40-cm depths. The results of the study suggest that underground storage of longer stem sections at 25 cm depth could be applied to practical vegetative propagation in the region.
机译:矮尾late纳皮尔草具有足够的产量和质量潜力,因此既适合随身携带又适合放牧管理。该物种几乎无法产生有活力的种子,因此,在冬季之前,在九州南部的温带地区,营养繁殖至关重要。这项研究的目的是确定DL营养繁殖的有效存储方法。进行了两个实验,第一个实验着重于在室温或冷藏(10°C)条件下在室内存放10个节点的茎节,第二个实验是在10 cm,25的地下存储10个节点和一个节点的茎节。厘米或40厘米深。两次储存后,将十节茎节切成单节,然后将一节茎节移植到土壤中,并在种植的三个月内每月进行计数。在室内贮藏中,贮藏温度几乎不影响出苗率(P> 0.05),但贮藏期显着降低了出苗率。在地下存储中,一节点存储不断出现60%的出现,而十节点存储在25厘米和40厘米深度下的出现率更高,为80%。研究结果表明,在25 cm深度的较长茎段的地下存储可用于该地区的实际营养繁殖。

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