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Genotypic Variations in Response of Lateral Root Development to Fluctuating Soil Moisture in Rice

机译:水稻侧根发育对土壤水分波动的响应的基因型变异

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Developmental plasticity in lateral roots may be one of the key traits for the growth of rice plants under soil moisture fluctuations. We aimed to examine responses in seminal root system development to changing soil moisture for diverse rice cultivars. Special attention was paid to the two different types of lateral roots; the generally long, thick L type capable of branching into higher orders, and the non-branching S type. Plants were grown in half-split polyvinyl chloride tubes fixed with transparent acrylic plate for root observation under glasshouse conditions. When plants were grown first under drought conditions, then rewatered, the seminal root system development in terms of dry weight and total length was promoted as compared with plants grown under continuously well-watered conditions in IRAT 109 and Dular, drought tolerant cultivars. Promoted production of L type lateral roots mainly contributed to the development of the longer seminal root system. Plants exposed to soil submergence before they were grown under drought conditions did not show such promoted responses in these two cultivars. However, in KDML 105, a drought tolerant cultivar, the production of especially L type laterals was substantially promoted under drought and rewatered conditions. Honenwase was characterized by the shallow root system and great reduction in root system length when soil moisture becomes limited. These facts show that genotypic variations exist in the plastic response of rice seminal root system and that the L type lateral root plays a key role in manifestation of this plasticity.
机译:在土壤水分波动下,侧根的发育可塑性可能是水稻植物生长的关键特征之一。我们旨在研究不同水稻品种在生根系统发育过程中对改变土壤水分的反应。特别注意了两种不同类型的侧根。通常是长而粗的L型,能够分支成更高阶,而非分支S型。将植物在固定有透明丙烯酸板的半裂聚氯乙烯管中生长,以便在温室条件下观察根。当植物先在干旱条件下生长,然后再浇水时,与在IRAT 109和耐旱的Dular品种中连续不断浇水的条件下生长的植物相比,在干重和总长方面促进了精根系统的发育。促进L型侧根的生产主要是为了促进更长的精根系统的发展。在干旱条件下生长之前暴露于土壤中的植物在这两个品种中均未显示出这种促进的反应。然而,在耐旱品种KDML 105中,在干旱和补水条件下,尤其是L型侧枝的产量大大提高。 honenwase的特征是根系浅,当土壤水分受到限制时,根系长度会大大减少。这些事实表明,基因型变异存在于水稻精根系统的塑性响应中,L型侧根在这种可塑性的表现中起关键作用。

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