Paya Alex M, Grams Thorsten E E, Bauerle Taryn L
Cornell University, Plant Science Building, Ithaca, NY, 14853, USA.
Technische Universität München, Von-Carlowitz-Platz 2, Freising, 85354, Germany.
Plant Cell Environ. 2016 Sep;39(9):2004-13. doi: 10.1111/pce.12765. Epub 2016 Jun 25.
The (13/12) C ratio in plant roots is likely dynamic depending on root function (storage versus uptake), but to date, little is known about the effect of season and root order (an indicator of root function) on the isotopic composition of C-rich fractions in roots. To address this, we monitored the stable isotopic composition of one evergreen (Picea abies) and one deciduous (Fagus sylvatica), tree species' roots by measuring δ(13) C of bulk, respired and labile C, and starch from first/second and third/fourth order roots during spring and fall root production periods. In both species, root order differences in δ(13) C were observed in bulk organic matter, labile, and respired C fractions. Beech exhibited distinct seasonal trends in δ(13) C of respired C, while spruce did not. In fall, first/second order beech roots were significantly depleted in (13) C, whereas spruce roots were enriched compared to higher order roots. Species variation in δ (13) C of respired C may be partially explained by seasonal shifts from enriched to depleted C substrates in deciduous beech roots. Regardless of species identity, differences in stable C isotopic composition of at least two root order groupings (first/second, third/fourth) were apparent, and should hereafter be separated in belowground C-supply-chain inquiry.
植物根系中的(13/12)C 比值可能因根系功能(储存与吸收)而动态变化,但迄今为止,关于季节和根系顺序(根系功能的一个指标)对根系中富含碳组分同位素组成的影响知之甚少。为了解决这个问题,我们通过测量春季和秋季根系生长期间整株、呼吸和不稳定碳以及来自一级/二级和三级/四级根系的淀粉的δ(13)C,监测了一种常绿树种(欧洲云杉)和一种落叶树种(欧洲山毛榉)根系的稳定同位素组成。在这两个树种中,整株有机质、不稳定碳和呼吸碳组分的δ(13)C 存在根系顺序差异。山毛榉呼吸碳的δ(13)C 呈现出明显的季节性趋势,而云杉则没有。在秋季,山毛榉的一级/二级根系(13)C 显著贫化,而云杉根系与高级根系相比则富集。落叶山毛榉根系中呼吸碳的δ(13)C 的物种差异可能部分由从富集碳底物到贫化碳底物的季节性转变来解释。无论物种身份如何,至少两个根系顺序分组(一级/二级、三级/四级)的稳定碳同位素组成差异明显,此后在地下碳供应链研究中应加以区分。