Shao Jian-Wen, Wang Hui-Feng, Fang Su-Ping, Conti Elena, Chen Ya-Jing, Zhu Hu-Ming
College of Life Sciences, Anhui Normal University, Wuhu, P.R. China.
The Key Laboratory of Conservation and Employment of Biological Resources of Anhui, Wuhu, P.R. China.
AoB Plants. 2019 May 16;11(3):plz030. doi: 10.1093/aobpla/plz030. eCollection 2019 Jun.
Heteromorphic self-incompatibility can prevent self- and intramorph fertilization while favouring intermorph mating and the maintenance of morph-ratio stability in heterostylous populations. However, variation in the expression of self-incompatibility intraspecies has seldom been assessed. Through hand pollinations and microsatellite markers, the variation in the expression of self-incompatibility and genetic diversity were studied in distylous plant . We discovered that the strength of self-incompatibility varied extensively among individuals and populations, from pronounced to weaker self-incompatibility in distylous populations, all the way to strong self-compatibility in homostylous populations. Each distylous population included self-incompatible (SI), partly self-compatible (PSC) and self-compatible (SC) individuals, with the index of self-compatibility (ISC) ranging from 0.07 to 0.68 across populations. Self-compatible populations (ISC > 0.25) were not genetically clustered but were more closely related to populations with high SI and SC individuals were mixed with SI individuals within populations. The ISC and the proportions of SC and PSC individuals were higher in peripheral than in central populations, but no decrease of genetic diversity and no deviations of floral morph ratio from isoplethy were detected in peripheral populations. Additionally, the expression of self-incompatibility was stronger in long-styled flowers than in short-styled flowers. The variation in the strength of self-incompatibility documented in cautions against the estimation of ISC from a few individuals or populations in distylous species and provides a more complex and nuanced understanding of the role of self-incompatibility in heterostyly.
异型自交不亲和性能够阻止自花授粉和同型授粉,同时有利于异型间的交配,并维持异型花柱植物种群中形态比例的稳定性。然而,种内自交不亲和性表达的变异很少得到评估。通过人工授粉和微卫星标记,研究了异型花柱植物自交不亲和性表达的变异和遗传多样性。我们发现,自交不亲和性的强度在个体和种群之间差异很大,从异型花柱种群中明显的自交不亲和到较弱的自交不亲和,一直到同型花柱种群中的强自交亲和。每个异型花柱种群都包括自交不亲和(SI)、部分自交亲和(PSC)和自交亲和(SC)个体,种群间的自交亲和指数(ISC)范围为0.07至0.68。自交亲和种群(ISC>0.25)在遗传上没有聚类,但与具有高比例SI个体的种群关系更密切,并且SC个体在种群中与SI个体混合存在。ISC以及SC和PSC个体的比例在外围种群中高于中心种群,但在外围种群中未检测到遗传多样性的降低以及花形态比例与理论值的偏差。此外,长花柱花中的自交不亲和性表达比短花柱花更强。本文记录的自交不亲和性强度的变异提醒我们,不要仅根据少数个体或种群来估计异型花柱物种的ISC,并且为理解自交不亲和性在异型花柱中的作用提供了更复杂和细致入微的认识。