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Plasticity in nodal root elongation through the hardpan triggered by rewatering during soil moisture fluctuation stress in rice

机译:水稻土水分波动胁迫下复水引发硬结的结根伸长可塑性

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摘要

Rainfed lowland (RFL) rice fields have hardpans and experience soil moisture fluctuations (SMF) stress, which influence root system development. Here, we clarify the expression and timing of the plasticity in nodal root elongation through the hardpan under SMF and its contribution to shoot growth using a shallow-rooting IR64 and its deep-rooting introgression line, YTH304. Under SMF, soil moisture content had negative relationship with soil penetration resistance, regardless of hardpan bulk densities. YTH304 had greater root system below the hardpan than IR64 in hardpan with 1.50 but not in 1.70 g cm−3 bulk density (BD). YTH304 had greater plasticity in nodal root elongation through the hardpan than IR64 under SMF, which was clearly expressed during rewatering. YTH304 also had greater soil water uptake below the hardpan during drought and greater shoot growth than IR64. The results imply that deep root system development during SMF was due to the plasticity in nodal root elongation through the hardpan expressed during rewatering rather than during drought periods. This is against the long standing belief that active root elongation through the hardpan happens during drought. This also implies a need to revisit current root screening methods to identify rice lines with good hardpan penetration ability.
机译:雨养低地(RFL)稻田具有硬土,并且经受土壤水分波动(SMF)压力,从而影响根系发育。在这里,我们阐明了使用浅根IR64及其深根渗入系YTH304在SMF下通过硬盘的节点根伸长中可塑性的表达和时间,以及其对芽生长的贡献。在SMF条件下,无论硬盘堆密度如何,土壤含水量与土壤渗透能力均呈负相关。在硬盘下,YTH304的根系比IR64大,硬盘下的根系为1.50,而在1.70μgcm -3 堆密度(BD)下则没有。在SMF条件下,YTH304在硬盘上的根部根伸长比IR64具有更大的可塑性,这在补水过程中很明显。与干旱相比,YTH304在干旱期间硬地以下的土壤吸水量也更大,并且茎干生长也比IR64大。结果表明,SMF期间深根系统的发育归因于补水而不是干旱期间通过硬盘表达的结根伸长的可塑性。这与长期以来的信念相反,即在干旱期间会通过硬盘主动发生根伸长。这也意味着需要重新审视当前的根系筛选方法,以鉴定具有良好的硬盘穿透能力的水稻品系。

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