Gong Han, Chang Yihong, Xu Jinming, Yu Xinran, Gong Wenfang
Key Laboratory of Cultivation and Protection for Non-Wood Forest Trees of Ministry of Education, Central South University of Forestry and Technology, Changsha, China.
Front Plant Sci. 2023 Jul 3;14:1182745. doi: 10.3389/fpls.2023.1182745. eCollection 2023.
was used to cross with to improve the resistance of oil camellia anthracnose. However, unilateral cross-incompatibility (UCI) between and was found during the breeding process. Five cultivars and four materials were tested to confirm the UCI between and . 'Huashuo' (HS) and 'Youza 2' (YZ2) were used to represent these two species to characterize the UCI, including pollen tube growth, fertilization and fruit development. The results demonstrated that UCI was prevalent between and . The asynchronous flowering period was a pre-pollination barrier that limited mating between these two species under natural conditions. Interspecific pollen tubes were observed through the styles of these two plants, though the growth rates differed considerably. At 96 hours after pollination, the pollen tube of YZ2 barely entered the ovule, but remained at the base of the style and became swollen. However, the HS pollen tube entered the ovule 48 hours after pollination, double fertilization was observed, and the fruit and seeds developed commonly. Relative to compatible combinations, most unfertilized ovules in incompatible combinations failed to grow, turned brown 150 days after pollination, and the fruits were smaller than expected with uneven enlargement. Investigations on both semi- and pollen tubes gave us new idea for thought: the HS style has a stronger inhibitory effect on the interspecific pollen tubes, while calcium alleviates the inhibitory of styles but failed to prevent the appearance of abnormal pollen tube morphology. This study provides useful information on interspecific hybridization between and for understanding reproductive isolation mechanisms and breeding programs in genus .
被用于与[未提及的物种名称1]杂交以提高油茶炭疽病抗性。然而,在育种过程中发现了[未提及的物种名称1]与[未提及的物种名称2]之间的单向杂交不亲和性(UCI)。对5个[未提及的物种名称1]品种和4个[未提及的物种名称2]材料进行了测试,以确认[未提及的物种名称1]与[未提及的物种名称2]之间的UCI。‘华硕’(HS)和‘油杂2号’(YZ2)被用来代表这两个物种来表征UCI,包括花粉管生长、受精和果实发育。结果表明,[未提及的物种名称1]与[未提及的物种名称2]之间普遍存在UCI。花期不同步是一种授粉前障碍,限制了这两个物种在自然条件下的交配。观察到种间花粉管穿过这两种植物的花柱,尽管生长速率差异很大。授粉后96小时,YZ2的花粉管几乎没有进入胚珠,而是停留在花柱基部并肿胀。然而,HS花粉管在授粉后48小时进入胚珠,观察到双受精,果实和种子正常发育。相对于亲和组合,不亲和组合中的大多数未受精胚珠未能生长,授粉150天后变成褐色,果实比预期小且膨大不均匀。对半亲和及不亲和花粉管的研究给我们提供了新的思考方向:HS花柱对种间花粉管的抑制作用更强,而钙减轻了花柱的抑制作用,但未能阻止异常花粉管形态的出现。本研究为[未提及的物种名称1]与[未提及的物种名称2]的种间杂交提供了有用信息,有助于理解[未提及的属名称]的生殖隔离机制和育种计划。