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降低株高对水稻耐旱性的影响。

Effect of reduced plant height on drought tolerance in rice.

作者信息

Ahmadikhah Asadollah, Marufinia Amir

机构信息

Department of Biotechnology, Faculty of New Technologies, Shahid Beheshti University, Tehran, Iran.

Department of Plant Breeding and Biotechnology, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan, Iran.

出版信息

3 Biotech. 2016 Dec;6(2):221. doi: 10.1007/s13205-016-0542-3. Epub 2016 Oct 12.

Abstract

Drought stress due to water deficit is a major problem of rice cultivation as a most drought-sensitive crop plant. A rice mutant line (MT58) was developed after mutagenesis of cv. Neda by ethyl methane sulfonate (EMS) and selected for dwarfism (18 cm shorter than Neda). The extent of its molecular changes relative to parental cultivar was assessed by SSR and ISSR markers, and the response of the line along with parental cultivar and another mutant line (MTA) to mild and severe water deficit, was evaluated in a field experiment. A molecular assessment using 41 SSR markers showed that dwarf line MT58 had significant molecular difference with two other lines. ISSR assay also proved the considerable mutational effect of EMS on two mutant lines compared with the original wild line. Field experiments revealed that limited irrigation caused mild-to-severe decrease in all the studied traits, including chlorophyll contents. In mild water-stress mutant line, MT58 showed a low (3 %) yield loss as compared with cultivar Neda with a high (14 %) yield loss. Interestingly, in severe water-stress mutant line, MT58 showed a low (19 %) yield loss as compared with mutant line MTA and cv. Neda with high (33 and 31 %, respectively) yield loss. In severe stress, mutant MT58 had the highest values of panicle length, total kernels per panicle, fertile kernels, and chlorophyll contents, while cv. Neda had the highest values of plant height, tiller number, and plant yield, and reduction in chlorophyll content at drought stress condition was correlated with yield loss (0.64 and 0.697 for chl.a and chl.b, respectively). The results of this research obviously confirm that mutant line MT58 despite of its stunt figure shows a low yield loss due to drought stress and hence is a promising line for cultivation under drought condition.

摘要

由于水分亏缺导致的干旱胁迫是水稻种植面临的一个主要问题,水稻是对干旱最为敏感的作物之一。通过用甲基磺酸乙酯(EMS)对Neda品种进行诱变,培育出了一个水稻突变系(MT58),并因其矮化性状(比Neda矮18厘米)而被筛选出来。利用SSR和ISSR标记评估了该突变系相对于亲本品种的分子变化程度,并在田间试验中评估了该突变系与亲本品种以及另一个突变系(MTA)对轻度和重度水分亏缺的响应。使用41个SSR标记进行的分子评估表明,矮化系MT58与其他两个系存在显著的分子差异。ISSR分析也证明,与原始野生系相比,EMS对两个突变系具有相当大的诱变效应。田间试验表明,有限灌溉导致所有研究性状出现轻度至重度下降,包括叶绿素含量。在轻度水分胁迫下,突变系MT58的产量损失较低(3%),而品种Neda的产量损失较高(14%)。有趣的是,在重度水分胁迫下,突变系MT58的产量损失较低(19%),而突变系MTA和品种Neda的产量损失较高(分别为33%和31%)。在重度胁迫下,突变体MT58的穗长、每穗总粒数、实粒数和叶绿素含量最高,而品种Neda的株高、分蘖数和植株产量最高,干旱胁迫条件下叶绿素含量的降低与产量损失相关(叶绿素a和叶绿素b分别为0.64和0.697)。本研究结果明显证实,突变系MT58尽管株型矮小,但因干旱胁迫导致的产量损失较低,因此是干旱条件下种植的一个有前景的品系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f67/5061651/3123fd4eef7f/13205_2016_542_Fig1_HTML.jpg

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