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首页> 外文期刊>Plant Production Science >Root Development, Water Uptake, and Shoot Dry Matter Production under Water Deficit Conditions in Two CSSLs of Rice: Functional Roles of Root Plasticity
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Root Development, Water Uptake, and Shoot Dry Matter Production under Water Deficit Conditions in Two CSSLs of Rice: Functional Roles of Root Plasticity

机译:水分亏缺条件下两种水稻CSSLs的根系发育,水分吸收和芽干物质生产:根系可塑性的功能性作用

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Root traits that can contribute to drought resistance have not been clearly indentified. We examined the role of root system development in enhancing water uptake and contribution to dry matter production by using the root box-pinboard method, with which quantitative assessment of root system development and the water uptake of root are possible. Chromosome segment substitution lines CSSL45 and CSSL50, and the recurrent parent Nipponbare were grown under continuously waterlogged conditions (control), and various intensities of water deficit in root boxes. There was no significant difference among the genotypes in shoot growth and root development, while CSSL45 and CSSL50 showed greater shoot dry weight than Nipponbare under water deficit conditions. This was due to their abilities to promote root system development as compared with Nipponbare, which facilitated greater water extraction than Nipponbare, especially under the mild water deficit condition of 20–25% w/w soil moisture contents. Furthermore, the increased root length density did not exceed the estimated critical value for water uptake, which indicates that plastic root system development was functionally effective and efficient for the enhancement of water uptake under mild water deficit conditions.
机译:尚未明确可以导致抗旱性的根系特征。我们研究了根系发育在通过使用根箱钉板法提高水分吸收和对干物质生产的贡献中的作用,利用该方法可以定量评估根系发育和根系的水分吸收。染色体片段替代品系CSSL45和CSSL50,以及复发的亲本日本ippo在连续浸水的条件下(对照)和根箱中各种水分亏缺的条件下生长。在缺水条件下,芽苗生长和根系发育的基因型之间无显着差异,而CSSL45和CSSL50显示出的芽苗干重比日本晴更大。这是因为与日本ippo相比,它们具有促进根系发育的能力,与日本ippo相比,水分的提取能力更高,尤其是在水分含量为20-25%w / w的温和缺水条件下。此外,增加的根长密度没有超过估计的吸水临界值,这表明在适度缺水的条件下,塑料根系发育在功能上是有效的,并且对于增加吸水量是有效的。

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