Department of Plant Science, School of Agriculture and Biology, Shanghai Jiaotong University, Shanghai 200240, China.
J Exp Bot. 2010 Oct;61(15):4291-302. doi: 10.1093/jxb/erq232. Epub 2010 Aug 16.
To clarify the relationship between pollen density and gametophytic competition in Pyrus pyrifolia, gametophytic performance, gibberellin metabolism, fruit set, and fruit quality were investigated by modifying P. pyrifolia pollen grain number and density with Lycopodium spores. Higher levels of pollen density improved seed viability, fruit set, and fruit quality. Treatments with the highest pollen density showed a significantly increased fruit growth rate and larger fruit at harvest. High pollen density increased germination rate and gave a faster pollen tube growth, both in vivo and in vitro. Endogenous gibberellin (GA) concentrations increased in pollen tubes soon after germination and the concentration of two growth-active GAs, GA(3), and GA(4), was positively correlated to final fruit size, cell numbers in the mesocarp, and pollen tube growth rate. These two GAs appear to be biosynthesized de novo in pollen tube and are the main pollen-derived bioactive GAs found after pollen germination. GA(1) levels in the pollen tube appear to be related to a pollen-style interaction that occurred after the pollen grains landed on the stigma.
为了阐明梨花粉密度与配子体竞争之间的关系,通过用石松孢子来改变梨花粉粒数量和密度,研究了配子体性能、赤霉素代谢、结实率和果实品质。较高的花粉密度可提高种子活力、结实率和果实品质。花粉密度最高的处理表现出显著增加的果实生长速率和更大的果实收获。高花粉密度增加了体内和体外的花粉管萌发率,并使花粉管生长更快。在萌发后不久,花粉管中内源赤霉素(GA)的浓度增加,两种生长活性 GA(GA3 和 GA4)的浓度与最终果实大小、中果皮细胞数量和花粉管生长速率呈正相关。这两种 GA 似乎是在花粉管中从头合成的,是花粉萌发后发现的主要花粉衍生的生物活性 GA。花粉管中的 GA1 水平似乎与花粉粒落在柱头后发生的花粉-花柱相互作用有关。