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温度对桃花粉萌发、花粉管生长及柱头可授性的影响

The effect of temperature on pollen germination, pollen tube growth, and stigmatic receptivity in peach.

作者信息

Hedhly A, Hormaza J I, Herrero M

机构信息

Estación Experimental de Aula Dei, CSIC, Zaragoza, Spain.

出版信息

Plant Biol (Stuttg). 2005 Sep;7(5):476-83. doi: 10.1055/s-2005-865850.

Abstract

Temperature is a major climatic factor that limits geographical distribution of plant species, and the reproductive phase has proven to be one of the most temperature-vulnerable stages. Here, we have used peach to evaluate the effect of temperature on some processes of the progamic phase, from pollination to the arrival of pollen tubes in the ovary. Within the range of temperatures studied, 20 degrees C in the laboratory and, on average, 5.7 degrees C in the field, the results show an accelerating effect of increasing temperature on pollen germination and pollen tube growth kinetics, as well as an increase in the number of pollen tubes that reach the style base. For the last two parameters, although the range of temperature registered in the field was much lower, the results obtained in the laboratory paralleled those obtained in the field. Increasing temperatures drastically reduced stigmatic receptivity. Reduction was sequential, with stigmas first losing the capacity to sustain pollen tube penetration to the transmitting tissue, then their capacity to offer support for pollen germination and, finally, their capacity to support pollen grain adhesion. Within a species-specific range of temperature, this apparent opposite effect of temperature on the male and female side could provide plants with the plasticity to withstand changing environmental effects, ensuring a good level of fertilization.

摘要

温度是限制植物物种地理分布的主要气候因素,而生殖阶段已被证明是对温度最为敏感的阶段之一。在此,我们以桃子为材料,评估温度对从授粉到花粉管到达子房这一配子体阶段某些过程的影响。在所研究的温度范围内,实验室温度为20摄氏度,田间平均温度为5.7摄氏度,结果表明温度升高对花粉萌发和花粉管生长动力学具有促进作用,同时到达花柱基部的花粉管数量也有所增加。对于后两个参数,尽管田间记录的温度范围低得多,但实验室获得的结果与田间结果相似。温度升高会大幅降低柱头的可受性。这种降低是循序渐进的,柱头首先失去维持花粉管穿透至传递组织的能力,接着失去支持花粉萌发的能力,最后失去支持花粉粒附着的能力。在特定物种的温度范围内,温度对雄性和雌性方面的这种明显相反作用可为植物提供适应不断变化的环境影响的可塑性,确保良好的受精水平。

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