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水稻(Oryza sativa)OryzaSNP 面板不同种质在渐进干旱胁迫下的水分吸收动态

Water uptake dynamics under progressive drought stress in diverse accessions of the OryzaSNP panel of rice (Oryza sativa).

作者信息

Gowda Veeresh R P, Henry Amelia, Vadez Vincent, Shashidhar H E, Serraj Rachid

机构信息

International Rice Research Institute, DAPO Box 7777, Metro Manila 1301, Philippines.

International Crops Research Institute for the Semiarid Tropics, Patancheru, Hyderabad, Andra Pradesh, India.

出版信息

Funct Plant Biol. 2012 Jun;39(5):402-411. doi: 10.1071/FP12015.

Abstract

In addition to characterising root architecture, evaluating root water uptake ability is important for understanding drought response. A series of three lysimeter studies were conducted using the OryzaSNP panel, which consists of 20 diverse rice (Oryza sativa L.) genotypes. Large genotypic differences in drought response were observed in this genotype panel in terms of plant growth and water uptake. Total water uptake and daily water uptake rates in the drought-stress treatment were correlated with root length density, especially at depths below 30cm. Patterns of water uptake among genotypes remained consistent throughout the stress treatments: genotypes that initially extracted more water were the same genotypes that extracted more water at the end of the study. These results suggest that response to drought by deep root growth, rather than a conservative soil water pattern, seems to be important for lowland rice. Genotypes in the O. sativa type aus group showed some of the greatest water uptake and root growth values. Since the OryzaSNP panel has been genotyped in detail with SNP markers, we expect that these results will be useful for understanding the genetics of rice root growth and function for water uptake in response to drought.

摘要

除了对根系结构进行表征外,评估根系吸水能力对于理解干旱响应也很重要。使用由20种不同水稻(Oryza sativa L.)基因型组成的水稻单核苷酸多态性(OryzaSNP)面板进行了一系列三项蒸渗仪研究。在该基因型面板中,观察到在植物生长和水分吸收方面干旱响应存在很大的基因型差异。干旱胁迫处理中的总吸水量和每日吸水率与根长密度相关,尤其是在30厘米以下的深度。在整个胁迫处理过程中,各基因型的水分吸收模式保持一致:最初吸水较多的基因型与研究结束时吸水较多的基因型相同。这些结果表明,通过深根生长对干旱作出响应,而不是保守的土壤水分模式,似乎对低地水稻很重要。稻属稻种奥氏组中的基因型表现出一些最大的吸水量和根系生长值。由于水稻单核苷酸多态性(OryzaSNP)面板已使用单核苷酸多态性(SNP)标记进行了详细的基因分型,我们预计这些结果将有助于理解水稻根系生长的遗传学以及响应干旱时的水分吸收功能。

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