Institut für Molekulare Physiologie, Johannes Gutenberg-Universität, Mainz, Germany.
Institut für Organismische und Molekulare Evolutionsbiologie, Johannes Gutenberg-Universität, Mainz, Germany.
J Exp Bot. 2019 Mar 11;70(5):1553-1565. doi: 10.1093/jxb/erz011.
Sesuvium sesuvioides (Sesuvioideae, Aizoaceae) is a perennial, salt-tolerant herb distributed in flats, depressions, or disturbed habitats of southern Africa and the Cape Verdes. Based on carbon isotope values, it is considered a C4 species, despite a relatively high ratio of mesophyll to bundle sheath cells (2.7:1) in the portulacelloid leaf anatomy. Using leaf anatomy, immunocytochemistry, gas exchange measurements, and enzyme activity assays, we sought to identify the biochemical subtype of C4 photosynthesis used by S. sesuvioides and to explore the anatomical, physiological, and biochemical traits of young, mature, and senescing leaves, with the aim to elucidate the plasticity and possible limitations of the photosynthetic efficiency in this species. Assays indicated that S. sesuvioides employs the NADP-malic enzyme as the major decarboxylating enzyme. The activity of C4 enzymes, however, declined as leaves aged, and the proportion of water storage tissue increased while air space decreased. These changes suggest a functional shift from photosynthesis to water storage in older leaves. Interestingly, S. sesuvioides demonstrated CO2 compensation points ranging between C4 and C3-C4 intermediate values, and immunocytochemistry revealed labeling of the Rubisco large subunit in mesophyll cells. We hypothesize that S. sesuvioides represents a young C4 lineage with C4-like photosynthesis in which C3 and C4 cycles are running simultaneously in the mesophyll.
海滨雀稗(番杏科粟米草亚科)是一种多年生、耐盐的草本植物,分布于非洲南部和佛得角的平原、洼地或受干扰的栖息地。基于碳同位素值,它被认为是一种 C4 物种,尽管其在马齿苋型叶解剖结构中,叶肉与束鞘细胞的比例相对较高(2.7:1)。我们使用叶解剖学、免疫细胞化学、气体交换测量和酶活性测定的方法,旨在确定海滨雀稗使用的 C4 光合作用的生化亚型,并探索幼叶、成熟叶和衰老叶的解剖学、生理学和生物化学特征,旨在阐明该物种光合作用效率的可塑性和可能的局限性。测定表明,海滨雀稗采用 NADP-苹果酸酶作为主要脱羧酶。然而,随着叶片衰老,C4 酶的活性下降,而储水组织的比例增加,气腔减少。这些变化表明,在较老的叶片中,功能从光合作用向水分储存转移。有趣的是,海滨雀稗表现出 CO2 补偿点介于 C4 和 C3-C4 中间值之间,免疫细胞化学显示 Rubisco 大亚基在叶肉细胞中标记。我们假设海滨雀稗代表一个具有 C4 样光合作用的年轻 C4 谱系,其中 C3 和 C4 循环在叶肉中同时运行。