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Effects of nitrogen and vapour pressure deficit on phytomer growth and development in a C4 grass

机译:氮和蒸气压亏缺对C4草生长的植物生长发育的影响

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摘要

Phytomers are basic morphological units of plants. Knowledge of phytomer development is essential for understanding morphological plasticity, functional–structural modelling of plant growth and the usage of leaf characteristics to indicate growth conditions at the time of production (e.g. stable isotope signals). Yet, systematic analysis on the process of phytomer development is unavailable for wild or perennial C4 grasses. Also, effects of environmental factors, such as nitrogen nutrition or vapour pressure deficit (VPD), on coordination events of developmental processes of C4 grasses have not been studied. This study investigates phytomer growth and development in Cleistogenes squarrosa, a predominant C4 grass in the Eurasian steppe, grown at low (0.63 kPa) or high (1.58 kPa) VPD with low or high nitrogen supply in controlled environments. Elongation of phytomers on marked tillers was measured daily for 13 days. Then lengths of immature and mature phytomer components (blade, sheath and internode) of all phytomers were measured following dissection. Nitrogen nutrition and VPD had no effects on coordination of growth within and between phytomers: phytomer tips emerged when phytomers reached 26 % of their final length, coincident with the acceleration phase of its elongation; blade elongation stopped when phytomers reached ∼75 % of their final length and elongation of the preceding phytomer was confined to the internode. The relationship between fraction of final phytomer length and days after tip emergence for all treatments was well described by a sigmoidal function: y = 1/{1 + exp[(1.82 − x)/1.81]}. C. squarrosa exhibited little morphological plasticity at phytomer-level in response to nitrogen supply and VPD, but a clear increase in tillering under high N supply. Also, the invariant coordination of elongation within and between phytomers was a stable developmental feature, thus the quantitative coordination rules are applicable for predicting morphological development of C. squarrosa under contrasting levels of nitrogen nutrition or VPD.
机译:假体是植物的基本形态单位。 phytomer发育的知识对于理解形态可塑性,植物生长的功能结构模型以及使用叶片特征来指示生产时的生长条件(例如稳定的同位素信号)至关重要。但是,对于野生或多年生的C4草无法进行有关phytomer发育过程的系统分析。另外,还没有研究诸如氮营养或蒸气压亏缺(VPD)等环境因素对C4草发育过程的协调作用的影响。这项研究调查了Cleistogenes squarrosa(一种在欧亚草原中占主导地位的C4草)在低(0.63 kPa)或高(1.58 kPa)VPD且在受控环境中供氮量低或高的条件下生长的植物。每天测量植daily在显着分ers上的伸长,持续13天。然后在解剖后测量所有植体的未成熟和成熟的植体组件(叶片,鞘和节间)的长度。氮素营养和VPD对植体内部和植体之间的生长协调没有影响:当植体达到其最终长度的26%时,与植体的伸长加速阶段一致,植体尖端出现。当phyphyers达到其最终长度的〜75%时,叶片伸长停止,并且先前phyphyer的伸长被限制在节间。所有处理的最终phyphyer长度分数与尖端出现后天数之间的关系已通过S型函数很好地描述:y = 1 / {1 + exp [(1.82-x)/1.81]}。 C. squarrosa对氮供应和VPD的响应在phytomer级几乎没有形态可塑性,但在高氮供应下分er明显增加。另外,在植物个体内部和之间的伸长协调一致是一个稳定的发展特征,因此定量协调规则适用于在氮营养或VPD水平不同的情况下预测角鳞的形态发育。

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