首页> 外文会议>Conference of the Australian Society of Sugar Cane Technologists >DEEP PLACEMENT OF ORGANIC AMENDMENTS IN DENSE SODIC SUBSOILS: EFFECTS ON SUGARCANE ROOT GROWTH, SOIL CARBON LEVELS AND SOILBIOLOGICAL PROPERTIES
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DEEP PLACEMENT OF ORGANIC AMENDMENTS IN DENSE SODIC SUBSOILS: EFFECTS ON SUGARCANE ROOT GROWTH, SOIL CARBON LEVELS AND SOILBIOLOGICAL PROPERTIES

机译:致密素质底层有机修改的深度放置:对甘蔗根生长,土壤碳水平和污垢特性的影响

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Duplex soils with low yield potential are relatively common in the Australian sugar industry. Since some of these soils have dense sodic subsoils that drain poorly and limit root growth, efforts are being made to improve their productivity. A grower group in the Maryborough region established a field trial in 2011 to test the effect of adding organic matter and found that when the soil was deep-ripped and compost was slotted into the subsoil at depths of 30-40 cm, the ameliorant increased sugarcane yields in two of the following five years. Samples collected after the fourth ratoon crop was harvested in 2016 showed that soil pH, total C, labile C, total N, microbial activity and the number of free-living nematodes were all significantly higher in the slot where the amendment had been applied. However, despite these improvements in soil chemistry and biology, root function in the slot treated with compost (measured as root biomass and various morphological parameters) was no better than the non-treated zone. In contrast, samples collected from two trials where organic materials had been applied to the subsoil 6 and 13 months previously showed significant improvements in root biomass and parameters such as root length, root surface area and the number of tips and forks. Also, numbers of root-lesion nematode (Pratylenchus zeae) were significantly reduced by mill mud in one of the trials. These results indicate that subsoil ameliorants initially improve root biomass and function and sometimes reducepathogen loads. However, results from the trial where compost was applied five years previously suggest that the root health benefits provided by such ameliorants may decline with time.
机译:在澳大利亚糖业中,具有低产潜力的双相土壤相对普及。由于这些土壤中的一些具有致密的脱泥石,因此漏油差并限制根生长,因此正在努力提高其生产率。 Maryborough地区的种植者集团于2011年建立了田间试验,以测试加入有机物的效果,发现当土壤被深撕裂并在30-40厘米的深度时,堆肥进入底层时,改良的甘蔗增加五年后的两年内产生的产量。在2016年收获第四次速率作物后收集的样品表明,在应用修正的槽中,土壤pH,总C,稳定性C,总N,微生物活性和自由活性线虫的数量都显着高。然而,尽管土壤化学和生物学的改善,但用堆肥处理的槽中的根功能(以根生物量和各种形态参数测量)不优于未处理区域。相反,从两种试验中收集的样品,其中有机材料已应用于底层6和13个月以前显示出根生物量和参数的显着改善,例如根长,根表面积和尖端和叉的数量。此外,在其中一项试验中,通过磨削泥浆碎片的根病变线虫(Pratylenchus Zeae)的数量显着降低。这些结果表明,底土修士最初改善了根生物量和功能,有时是降临的降低载荷。然而,在五年来施加堆肥的试验结果之前表明这种改良剂提供的根系健康益处可能随着时间的推移而下降。

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