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Optimal pre-plant irrigation and fertilization can improve biomass accumulation by maintaining the root and leaf productive capacity of cotton crop

机译:最佳的种植前灌溉和施肥可以通过维持棉花作物的根和叶生产力来改善生物量积累

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摘要

Cotton is a major cash crop grown worldwide primarily for fiber and oil seed. As the most important cultural practices for cotton production, single pre-plant irrigation and basal fertilization for cotton plant growth and yield are well documented, but their coupling effects are poorly understood in arid regions. A 2-year outdoor pot trial was conducted to unravel the effects of pre-plant irrigation and basal fertilization on leaf area, root growth, biomass accumulation, and capacity of leaf area and root in cotton plant. Two pre-plant irrigations (i.e., W80, well-watered and W0, not watered) and two basal dressing fertilizations (F10, surface application and F30, deep application) were used in the experiments. The aboveground and reproductive biomass were highest in W80F10 after 69 days after emergence. Furthermore, W80F10 increased the root length in the 0–40 cm soil layer and the leaf area and improved the loading boll capacity of the effective root length and leaf area. The effective root length and leaf area had substantial direct effects on the aboveground and root biomass, respectively. Our data suggest that basal fertilizer surface application under adequate pre-plant irrigation is an effective strategy for optimal cotton production, which improves the coordination of water-nutrient absorption and photosynthetic areas and promotes assimilated distribution to the reproductive structures.
机译:棉花是世界范围内主要用于纤维和油料种子的主要经济作物。作为棉花生产中最重要的文化习俗,对棉花生长和产量进行单一的种植前灌溉和基础施肥已得到了很好的证明,但在干旱地区人们对它们的耦合作用了解甚少。进行了为期2年的室外盆栽试验,以阐明种植前灌溉和基础施肥对棉株叶片面积,根系生长,生物量积累以及叶片面积和根系容量的影响。在实验中使用了两次种植前灌溉(即W80,水量充足且未灌溉的W0)和两次基础追肥(F10,表层施肥和F30,深层施肥)。出土后69天,W80F10的地上和生殖生物量最高。此外,W80F10增加了0–40 cm土壤层和叶面积的根长,并提高了有效根长和叶面积的承压能力。有效根长和叶面积分别对地上生物量和根系生物量有直接的影响。我们的数据表明,在充足的种植前灌溉下施用基肥表面肥料是优化棉花产量的有效策略,可改善水养分吸收与光合作用区域的协调性,并促进向生殖结构的同化分配。

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