AgriBio, Centre for Agribioscience, Department of Animal, Plant and Soil Sciences, La Trobe University, Bundoora, VIC, Australia.
Melbourne Polytechnic, Epping, VIC, Australia.
Planta. 2021 Jun 15;254(1):4. doi: 10.1007/s00425-021-03656-7.
Transcriptomic analyses identified anther-expressed genes in wheat likely to contribute to heat tolerance and hence provide useful genetic markers. The genes included those involved in hormone biosynthesis, signal transduction, the heat shock response and anther development. Pollen development is particularly sensitive to high temperature heat stress. In wheat, heat-tolerant and heat-sensitive cultivars have been identified, although the underlying genetic causes for these differences are largely unknown. The effects of heat stress on the developing anthers of two heat-tolerant and two heat-sensitive wheat cultivars were examined in this study. Heat stress (35 °C) was found to disrupt pollen development in the two heat-sensitive wheat cultivars but had no visible effect on pollen or anther development in the two heat-tolerant cultivars. The sensitive anthers exhibited a range of developmental abnormalities including an increase in unfilled and clumped pollen grains, abnormal pollen walls and a decrease in pollen viability. This subsequently led to a greater reduction in grain yield in the sensitive cultivars following heat stress. Transcriptomic analyses of heat-stressed developing wheat anthers of the four cultivars identified a number of key genes which may contribute to heat stress tolerance during pollen development. Orthologs of some of these genes in Arabidopsis and rice are involved in regulation of the heat stress response and the synthesis of auxin, ethylene and gibberellin. These genes constitute candidate molecular markers for the breeding of heat-tolerant wheat lines.
转录组分析鉴定了小麦花药中可能有助于耐热性的表达基因,从而提供了有用的遗传标记。这些基因包括参与激素生物合成、信号转导、热激反应和花药发育的基因。花粉发育对高温热应激特别敏感。在小麦中,已经鉴定出耐热和热敏品种,尽管这些差异的潜在遗传原因在很大程度上尚不清楚。本研究考察了高温胁迫对两个耐热和两个热敏小麦品种发育中花药的影响。研究发现,高温胁迫(35°C)破坏了两个热敏小麦品种的花粉发育,但对两个耐热小麦品种的花粉或花药发育没有明显影响。敏感的花药表现出一系列发育异常,包括未填充和团聚花粉粒的增加、花粉壁异常以及花粉活力下降。这随后导致热敏品种在受到热应激后产量下降更大。对四个品种受热处理的发育中的小麦花药进行转录组分析,鉴定出一些可能有助于花粉发育过程中耐热性的关键基因。这些基因在拟南芥和水稻中的同源基因参与热应激反应的调节以及生长素、乙烯和赤霉素的合成。这些基因构成了培育耐热小麦品系的候选分子标记。