Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Institute of Functional Nano & Soft Materials (FUNSOM), Soochow University, 199 Ren'ai Road, Suzhou, 215123, Jiangsu, PR China.
Nanoscale. 2018 Jul 9;10(26):12734-12742. doi: 10.1039/c8nr01644e.
Chiral compounds/materials have important effects on the growth of plants. Chiral carbon dots (CDs), as an emerging chiral carbon nanomaterial, have great potential in bio-application and bio-nanotechnology. Herein, we report a hydrothermal method to synthesize chiral CDs from cysteine (cys) and citric acid. These chiral CDs were further demonstrated to have systemic effects on the growth of mung bean plants, in which case both l- and d-CDs can promote the growth of the root in mung bean plants, stem length of mung bean sprouts and water absorption of bean seeds. The elongation of mung bean sprouts presented an increasing trend with the treatment of chiral CDs of increasing concentration (below 500 μg mL-1). Furthermore, in the optimal concentration (100 μg mL-1), the l-CDs can improve root vigor and the activity of the Rubisco enzyme of bean sprouts by 8.4% and 20.5%, while the d-CDs increased by 28.9% and 67.5%. Due to more superior properties in improving root vigor and the activity of the Rubisco enzyme of mung bean sprouts, d-CDs are able to enhance photosynthesis better and accumulate more carbohydrate in mung bean plants.
手性化合物/材料对植物的生长有重要影响。手性碳点(CDs)作为一种新兴的手性碳纳米材料,在手性生物应用和生物纳米技术中有巨大的潜力。在此,我们报道了一种由半胱氨酸(cys)和柠檬酸通过水热法合成手性 CDs 的方法。这些手性 CDs 进一步被证明在手性碳点对绿豆植物生长的整体影响中具有重要作用,在这种情况下,l-和 d-CDs 都可以促进绿豆植物的根生长、绿豆芽的茎长和种子的吸水。随着手性 CDs 浓度(低于 500μg mL-1)的增加,绿豆芽的伸长呈现出增加的趋势。此外,在最佳浓度(100μg mL-1)下,l-CDs 可以使豆芽的根活力和 Rubisco 酶活性分别提高 8.4%和 20.5%,而 d-CDs 则分别提高了 28.9%和 67.5%。由于 d-CDs 在提高绿豆芽根活力和 Rubisco 酶活性方面具有更优越的性能,因此它能够更好地促进光合作用,并在手性碳点在绿豆植物中积累更多的碳水化合物。