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一种用于量化水稻(Oryza sativa L.)小孢子发生过程中热应激影响的表型标记。

A phenotypic marker for quantifying heat stress impact during microsporogenesis in rice (Oryza sativa L.).

作者信息

Jagadish Krishna S V, Craufurd Peter, Shi Wanju, Oane Rowena

机构信息

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

Plant Environment Laboratory, University of Reading, Cutbush Lane, Shinfield, Reading, RG2 9AF, UK.

出版信息

Funct Plant Biol. 2013 Feb;41(1):48-55. doi: 10.1071/FP13086.

Abstract

Gametogenesis in rice (Oryza sativa L.), and particularly male gametogenesis, is a critical developmental stage affected by different abiotic stresses. Research on this stage is limited, as flowering stage has been the major focus for research to date. Our main objective was to identify a phenotypic marker for male gametogenesis and the duration of exposure needed to quantify the impact of heat stress at this stage. Spikelet size coinciding with microsporogenesis was identified using parafilm sectioning, and the panicle (spikelet) growth rate was established. The environmental stability of the marker was ascertained with different nitrogen (75 and 125kg ha-1) and night temperature (22°C and 28°C) combinations under field conditions. A distance of -8 to -9cm between the collar of the last fully opened leaf and the flag leaf collar, which was yet to emerge was identified as the environmentally stable phenotypic marker. Heat stress (38°C) imposed using the identified marker induced 8-63% spikelet sterility across seven genetically diverse rice genotypes. Identifying the right stage based on the marker information and imposing 6 consecutive days of heat stress ensures that >95% of the spikelets in a panicle are stressed spanning across the entire microsporogenesis stage.

摘要

水稻(Oryza sativa L.)的配子发生,尤其是雄配子发生,是受不同非生物胁迫影响的关键发育阶段。由于迄今为止开花期一直是主要研究重点,因此对这一阶段的研究有限。我们的主要目标是确定雄配子发生的表型标记以及量化该阶段热胁迫影响所需的暴露持续时间。通过石蜡膜切片确定了与小孢子发生同时期的颖花大小,并确定了穗(颖花)生长速率。在田间条件下,用不同的氮(75和125kg·ha-1)和夜间温度(22°C和28°C)组合确定了该标记的环境稳定性。最后一片完全展开叶的叶枕与尚未抽出的旗叶叶枕之间-8至-9厘米的距离被确定为环境稳定的表型标记。使用该确定的标记施加热胁迫(38°C),在七种遗传多样的水稻基因型中诱导了8%-63%的颖花不育。根据标记信息确定正确阶段并施加连续6天的热胁迫可确保穗中>95%的颖花在整个小孢子发生阶段受到胁迫。

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