Department of Biological Sciences, Tokyo Metropolitan University, 1-1 Minami-osawa, Hachioji, Tokyo 192-0397, Japan.
Planta. 2010 Aug;232(3):579-92. doi: 10.1007/s00425-010-1197-7. Epub 2010 May 30.
To analyze fruit set and early fruit (caryopsis) development in rice, we established an in vitro spikelet culture system. The ovary of cultured pollinated spikelets grew rapidly and developed into fruits with an embryo and endosperm. When unpollinated spikelets were cultured on a medium containing 2,4-dichlorophenoxyacetic acid, parthenocarpic fruits lacking an embryo and endosperm developed. The number and size of the cells in the pericarp of parthenocarpic fruits were almost identical to those of fruits induced by pollination, and degeneration of nucellus tissue was observed in both pollinated and parthenocarpic fruits. These results suggested that ovary growth was induced through increased auxin content in the spikelets. Quantitative measurement of indole-3-acetic acid (IAA) content in the spikelets indicated that the IAA level increased after pollination. Further analysis of IAA contents in the ovary and rachilla-pedicel of cultured spikelets suggested that fruit development is associated with IAA synthesis in the ovary following pollination/fertilization and subsequent transport of IAA from the ovary to the rachilla-pedicel. Partial or complete removal of the rachilla and/or pedicel prior to spikelet culture greatly inhibited fruit development. These results indicated that the rachilla and pedicel are essential for rice fruit development. AUX/IAA and ARF genes that might be involved in rice fruit development were identified through transcriptome analysis.
为了分析水稻结实率和早期果实(颖果)的发育情况,我们建立了体外小穗培养体系。培养的授粉小穗的子房迅速生长并发育成具有胚和胚乳的果实。当未授粉的小穗在含有 2,4-二氯苯氧乙酸的培养基上培养时,会形成缺少胚和胚乳的单性结实果实。单性结实果实的果皮细胞数量和大小几乎与授粉诱导的果实相同,并且在授粉和单性结实果实中都观察到珠心组织退化。这些结果表明,子房的生长是通过小穗中生长素含量的增加而诱导的。对小穗中吲哚-3-乙酸(IAA)含量的定量测量表明,授粉后 IAA 水平增加。对培养小穗中子房和穗轴-小穗梗中 IAA 含量的进一步分析表明,授粉/受精后子房中 IAA 的合成以及随后 IAA 从子房向穗轴-小穗梗的运输与果实发育有关。在小穗培养之前部分或完全去除穗轴和/或小穗梗会极大地抑制果实发育。这些结果表明,穗轴和小穗梗是水稻果实发育所必需的。通过转录组分析鉴定了可能参与水稻果实发育的 AUX/IAA 和 ARF 基因。