Namyslov Jiří, Bauriedlová Zuzana, Janoušková Jana, Soukup Aleš, Tylová Edita
Department of Experimental Plant Biology, Faculty of Science, Charles University, Vinicna 5, 128 44 Prague 2, Czech Republic.
Plants (Basel). 2020 Feb 6;9(2):201. doi: 10.3390/plants9020201.
The exodermis is a common apoplastic barrier of the outer root cortex, with high environmentally-driven plasticity and a protective function. This study focused on the trade-off between the protective advantages provided by the exodermis and its disadvantageous reduction of cortical membrane surface area accessible by apoplastic route, thus limiting nutrient acquisition from the rhizosphere. We analysed the effect of nutrient deficiency (N, P, K, Mg, Ca, K, Fe) on exodermal and endodermal differentiation in maize. To differentiate systemic and localized effects, nutrient deficiencies were applied in three different approaches: to the root system as a whole, locally to discrete parts, or on one side of a single root. Our study showed that the establishment of the exodermis was enhanced in low-N and low-P plants, but delayed in low-K plants. The split-root cultivation proved that the effect is non-systemic, but locally coordinated for individual roots. Within a single root, localized deficiencies didn't result in an evenly differentiated exodermis, in contrast to other stress factors. The maturation of the endodermis responded in a similar way. In conclusion, N, P, and K deficiencies strongly modulated exodermal differentiation. The response was nutrient specific and integrated local signals of current nutrient availability from the rhizosphere.
外皮层是根外部皮层常见的质外体屏障,具有高度的环境驱动可塑性和保护功能。本研究聚焦于外皮层提供的保护优势与其不利之处之间的权衡,即其减少了质外体途径可利用的皮层膜表面积,从而限制了从根际获取养分。我们分析了养分缺乏(氮、磷、钾、镁、钙、钾、铁)对玉米外皮层和内皮层分化的影响。为了区分系统性和局部性影响,采用了三种不同方法施加养分缺乏:对整个根系、对离散部分局部施加或对单根的一侧施加。我们的研究表明,低氮和低磷植株中外皮层的形成增强,但低钾植株中则延迟。分根栽培证明这种影响不是系统性的,而是单个根局部协调的。与其他胁迫因素不同,在单根内,局部缺乏不会导致外皮层均匀分化。内皮层的成熟也有类似的反应。总之,氮、磷和钾缺乏强烈调节外皮层分化。这种反应是养分特异性的,并整合了来自根际当前养分有效性的局部信号。