Indica rice "Takanari" outcompetes japonica rice "Koshihikari" under low fertility conditions in soil developed on a sand dune

Jean Yves Dukuzumuremyi , Weiguo Cheng , Samuel Munyaka Kimani , Christian Nkurunziza , Margi Asih Maimunah , Shuirong Tang , Yuka Sasaki , Hideki Murayama
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Abstract

Significantly, soil fertility and rice variety influence rice growth. Under different conditions, Indica rice "Takanari (Tak)" outperformed Japonica rice "Koshihikari (Kos)" in terms of N-uptake and biomass production. However, it is still unclear how Tak and Kos respond to rice growth and N-uptake in low-fertility (sandy) and normal (alluvial) soils. Therefore, we conducted a pot experiment at Tsuruoka in the 2022 rice-growing season. Tak and Kos were transplanted individually and interplanted (Tak+Kos) with the main treatments of alluvial soil, sandy, and sand with chemical fertilizers (sand+CF). Rice growth parameters (shoot height, tiller numbers, and leaf color) were weekly investigated, while rice biomass and N-uptake were measured after harvest. Shoot height, rice tillers, leaf color, plant biomass, and N-uptake were significantly different among all treatments. Tak had significantly higher rice biomass and N-uptake than Kos in all treatments for both planting modes. The ratios of aboveground biomass and N-uptake between Tak and Kos in interplanting were higher than their respective ratios in individual planting. The ratios of aboveground biomass in interplanting were higher than in individual planting at 41.7 %, 26.4 %, and 18.4 % in sandy, alluvial, and sand+CF, respectively. Whereas, the ratios of N-uptake in interplanting were higher than in individual planting at 41.9 %, 36.6 %, and 26.6 % in sandy, alluvial, and sand+CF, respectively. Regardless of low growth for both varieties in the sandy, Tak increased the competitive ability of N-uptake and biomass production. Therefore, rice cultivar selection and management of fertilizing practices are required for rice growing in low-soil fertility fields.

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在沙丘上发育的土壤中,籼稻 "Takanari "在低肥力条件下优于粳稻 "Koshihikari"
土壤肥力和水稻品种对水稻生长有显著影响。在不同条件下,籼稻 "Takanari(Tak)"在氮吸收和生物量生产方面优于粳稻 "Koshihikari(Kos)"。然而,Tak 和 Kos 在低肥力土壤(沙质土壤)和正常土壤(冲积层土壤)中对水稻生长和氮吸收的反应尚不清楚。因此,我们于 2022 年水稻生长季节在鹤冈进行了盆栽试验。在冲积土、沙土和施用化肥的沙土(沙土+化肥)的主要处理中,分别移栽了 Tak 和 Kos(Tak+Kos)。每周调查水稻生长参数(穗高、分蘖数和叶色),收获后测量水稻生物量和氮吸收量。在所有处理中,芽高、水稻分蘖数、叶色、植株生物量和氮吸收量均有显著差异。在两种种植模式的所有处理中,Tak 的水稻生物量和氮吸收量都明显高于 Kos。插秧时,Tak 和 Kos 的地上部生物量和氮吸收量之比均高于单独插秧时各自的比率。在沙地、冲积地和沙地+CF 中,间作种植的地上生物量比分别为 41.7%、26.4% 和 18.4%,高于单独种植。而在沙地、冲积地和沙地+CF 中,间作的氮吸收比分别为 41.9 %、36.6 % 和 26.6 %,高于单独种植。尽管两个品种在沙地中的生长量都较低,但德克提高了氮吸收和生物量生产的竞争能力。因此,在土壤肥力较低的田块种植水稻需要进行品种选择和施肥管理。
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来源期刊
Soil security
Soil security Soil Science
CiteScore
4.00
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审稿时长
90 days
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